[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"notifications-list":3,"reference-medical-conditions-{}":5},{"data":4},[],{"data":6,"meta":1383},[7,38,59,85,143,164,197,223,244,262,294,349,367,402,446,467,495,529,573,595,673,700,736,757,777,784,790,829,850,888,923,945,952,974,1000,1017,1023,1040,1091,1120,1145,1166,1182,1215,1226,1243,1260,1300,1339,1355],{"id":8,"documentId":9,"slug":10,"title":11,"associated_anatomy":12,"is_zoonotic":13,"citations":14,"drugs":32},209,"ljsm5t4inb48rqnpvqel49lv","acute-moist-dermatitis","Acute moist dermatitis","Skin (surface), hair coat, ears, cheeks, back and tail base, hindquarters, anal sacs",null,[15,22,27],{"claims":16,"source":17,"licence":18,"source_url":19,"harvested_by":20,"retrieved_at":21},"definition, triggers, breed and coat predisposition, seasonality, lesion features and sites, itch-scratch cycle, early versus infected lesions, prevention","Cornell University College of Veterinary Medicine, Riney Canine Health Center - Hot spots","not stated on source page (reprinted from Cornell DogWatch newsletter, Belvoir Media Group)","https:\u002F\u002Fwww.vet.cornell.edu\u002Fdepartments-centers-and-institutes\u002Friney-canine-health-center\u002Fcanine-health-topics\u002Fhot-spots","load-reference-corpus.cjs","2026-09-17",{"claims":23,"source":24,"licence":25,"source_url":26,"harvested_by":20,"retrieved_at":21},"pyotraumatic dermatitis definition, primary causes, spring\u002Fsummer seasonality, rapid enlargement, lesion location by cause, bacterial colonisation cycle, differential from pyotraumatic folliculitis and furunculosis, control of underlying cause","Virginia Tech Veterinary Teaching Hospital - That itches! A guide to canine hot spots","(c) 2026 Virginia Polytechnic Institute and State University","https:\u002F\u002Fvth.vetmed.vt.edu\u002Fanimal-care-tips\u002Fvetmed-pet-canine-hot-spots.html",{"claims":28,"source":29,"licence":30,"source_url":31,"harvested_by":20,"retrieved_at":21},"confirms acute moist dermatitis as a surface pyoderma following a triggering event, warm moist skin with higher bacterial counts, topical therapy for surface pyoderma","MSD Veterinary Manual - Pyoderma in Dogs and Cats (confirmation only)","not stated on source page","https:\u002F\u002Fwww.merckvetmanual.com\u002Fintegumentary-system\u002Fpyoderma\u002Fpyoderma-in-dogs-and-cats",[33],{"id":34,"documentId":35,"slug":36,"name":37},1700,"edsi8cmiqv51loxkf9irwbr8","fluocinolone-acetonide","fluocinolone acetonide",{"id":39,"documentId":40,"slug":41,"title":42,"associated_anatomy":13,"is_zoonotic":13,"citations":13,"drugs":43},46,"fg9yvdmnv8wmhn45af7ulxie","addisons-disease-hypoadrenocorticism","Addison's Disease (Hypoadrenocorticism)",[44,49,54],{"id":45,"documentId":46,"slug":47,"name":48},148,"yxc6yfb8cr7jhxoamj7nsqfy","fludrocortisone","Fludrocortisone",{"id":50,"documentId":51,"slug":52,"name":53},1606,"xc3gj9by23k6xtfnafik3pcd","prednisone","Prednisone",{"id":55,"documentId":56,"slug":57,"name":58},1604,"fep2yq0dwved60ame2ape4rb","dexamethasone","Dexamethasone",{"id":60,"documentId":61,"slug":62,"title":63,"associated_anatomy":64,"is_zoonotic":13,"citations":65,"drugs":79},221,"ysftufgwd3uubehah4jweiqo","allergic-dermatitis","Allergic dermatitis","Skin (epidermis, stratum corneum), ear pinnae and ear canals, paws, face, lumbosacral region, conjunctiva; gastrointestinal tract in food reactions",[66,71,75],{"claims":67,"source":68,"licence":69,"source_url":70,"harvested_by":20,"retrieved_at":21},"definition, IgE to environmental allergens, differential diagnosis table and work-up, flea distribution and climate, concurrent FAD, pyoderma and Malassezia, food reactions and elimination diets, Favrot criteria (onset under 3 years, front feet, pinnae, spared margins and dorsolumbar area), allergy testing for immunotherapy","BMC Veterinary Research (2015) - Canine atopic dermatitis: detailed guidelines for diagnosis and allergen identification (ICADA) (PMC4531508)","CC BY 4.0","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC4531508\u002F",{"claims":72,"source":73,"licence":69,"source_url":74,"harvested_by":20,"retrieved_at":21},"prevalence 20-30%, lesions, secondary infections, otitis externa, incurable waxing-waning course, lifelong treatment, rising prevalence, barrier dysfunction, lipid and ceramide defects, TEWL, dysbiosis, type 2 immune response, primary prevention unproven in dogs","Veterinary Sciences (2023) - Primary Prevention of Canine Atopic Dermatitis: Breaking the Cycle - A Narrative Review (PMC10674681)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC10674681\u002F",{"claims":76,"source":77,"licence":69,"source_url":78,"harvested_by":20,"retrieved_at":21},"feline reaction patterns, differentials in cats, unproven IgE role, FAD as most frequent feline hypersensitivity, type I\u002FIV reaction, flea control of all in-contact animals and environment, mosquito bite hypersensitivity and indoor housing, food reactions with gastrointestinal signs","Veterinary Sciences (2017) - Cutaneous Hypersensitivity Dermatoses in the Feline Patient: A Review of Allergic Skin Disease in Cats (PMC5606602)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC5606602\u002F",[80],{"id":81,"documentId":82,"slug":83,"name":84},1833,"govmdbg7sbn80pewb1cn0xlo","triamcinolone-acetonide","triamcinolone acetonide",{"id":86,"documentId":87,"slug":88,"title":89,"associated_anatomy":90,"is_zoonotic":91,"citations":92,"drugs":128},123,"cjkmjqu2zevxweofeb9inwzc","anaplasmosis","Anaplasmosis","Blood (red blood cells, platelets, neutrophils), spleen, liver, gallbladder, lymph nodes, mucous membranes, reproductive tract",true,[93,98,103,107,111,115,119,124],{"claims":94,"source":95,"licence":96,"source_url":97,"harvested_by":20,"retrieved_at":21},"genus taxonomy, A. marginale in red cells, tick and mechanical vectors, no human infection with A. marginale, distinction from babesiosis, A. centrale vaccine","WOAH Terrestrial Manual 2024 - Chapter 3.4.1 Bovine anaplasmosis","(c) WOAH, free to consult","https:\u002F\u002Fwww.woah.org\u002Ffileadmin\u002FHome\u002Feng\u002FHealth_standards\u002Ftahm\u002F3.04.01_BOVINE_ANAPLASMOSIS.pdf",{"claims":99,"source":100,"licence":101,"source_url":102,"harvested_by":20,"retrieved_at":21},"A. phagocytophilum as human pathogen carried by Ixodes ticks, tick prevention, doxycycline as treatment of choice in people","CDC - About Anaplasmosis","not stated on source page (US federal government work)","https:\u002F\u002Fwww.cdc.gov\u002Fanaplasmosis\u002Fabout\u002Findex.html",{"claims":104,"source":105,"licence":69,"source_url":106,"harvested_by":20,"retrieved_at":21},"A. platys and A. phagocytophilum target cells, vectors, host range, clinical signs in dogs, co-infections, tetracyclines, acaricides, zoonotic status","Epidemiology, Diagnosis, and Control of Canine Infectious Cyclic Thrombocytopenia and Granulocytic Anaplasmosis - Europe PMC full text","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC8705095\u002FfullTextXML",{"claims":108,"source":109,"licence":69,"source_url":110,"harvested_by":20,"retrieved_at":21},"A. ovis in red cells, signs in small ruminants, Tunisian prevalence and vectors, seasonality","Anaplasma ovis Prevalence Assessment and Cross Validation Using Multiparametric Screening Approach in Sheep from Central Tunisia - Europe PMC full text","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC9693597\u002FfullTextXML",{"claims":112,"source":113,"licence":69,"source_url":114,"harvested_by":20,"retrieved_at":21},"A. marginale prevalence and July peak in northern Algeria","Bovine piroplasmosis-anaplasmosis and clinical signs of tropical theileriosis in the plains of Djurdjura (north Algeria) - Europe PMC full text","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC7738714\u002FfullTextXML",{"claims":116,"source":117,"licence":30,"source_url":118,"harvested_by":20,"retrieved_at":21},"adult cattle mortality, early tetracycline treatment, clinical signs","University of Illinois Extension - Anaplasmosis (Beef Cattle)","https:\u002F\u002Fextension.illinois.edu\u002Fbeef-cattle\u002Fanaplasmosis",{"claims":120,"source":121,"licence":122,"source_url":123,"harvested_by":20,"retrieved_at":21},"age-related severity, needle transmission, transplacental carriers, herd-addition testing","Alabama Cooperative Extension System - Bovine Anaplasmosis","(c) 2026 Alabama Cooperative Extension System","https:\u002F\u002Fwww.aces.edu\u002Fblog\u002Ftopics\u002Fbeef\u002Fbovine-anaplasmosis\u002F",{"claims":125,"source":126,"licence":30,"source_url":127,"harvested_by":20,"retrieved_at":21},"confirms A. ovis in sheep and goats, extravascular red-cell destruction, necropsy lesions, ruminant differentials","MSD Veterinary Manual - Anaplasmosis in Ruminants (confirmation only)","https:\u002F\u002Fwww.merckvetmanual.com\u002Fcirculatory-system\u002Fblood-parasites\u002Fanaplasmosis-in-ruminants",[129,133,138],{"id":130,"documentId":131,"slug":132,"name":132},1663,"it07okh9q018mzk26lcmwctw","chlortetracycline",{"id":134,"documentId":135,"slug":136,"name":137},1568,"ffmipbw0zab57q6fzpuqjz4s","enrofloxacin","Enrofloxacin",{"id":139,"documentId":140,"slug":141,"name":142},1566,"mobwje6owluqel8b1iwtnnj6","oxytetracycline","Oxytetracycline",{"id":144,"documentId":145,"slug":146,"title":147,"associated_anatomy":148,"is_zoonotic":13,"citations":149,"drugs":163},192,"qq5jnjusd9g94oai5ixdfqn0","anthrax","Anthrax","Blood and vascular system, spleen, lymph nodes, gastrointestinal tract, respiratory tract, throat and subcutaneous tissues, skin",[150,154,158],{"claims":151,"source":152,"licence":96,"source_url":153,"harvested_by":20,"retrieved_at":21},"agent, spore persistence, host range, ingestion route, worldwide distribution, species signs, carcass signs, diagnosis, vaccination, antibiotics, carcass control, zoonosis, WOAH-listed","WOAH - Anthrax disease page","https:\u002F\u002Fwww.woah.org\u002Fen\u002Fdisease\u002Fanthrax\u002F",{"claims":155,"source":156,"licence":69,"source_url":157,"harvested_by":20,"retrieved_at":21},"pathogenesis and toxins, susceptibility order, endemic regions and weather triggers, clinical signs, necropsy findings, differentials, field antibiotics, poor prognosis, Sterne vaccine, carcass disposal","Review of anthrax: A disease of farm animals (open-access review, PMC9298093)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC9298093\u002F",{"claims":159,"source":160,"licence":161,"source_url":162,"harvested_by":20,"retrieved_at":21},"soil reservoir worldwide, affected livestock and wildlife, animal infection routes, human exposure routes","CDC - About Anthrax","US government public domain (not stated on page)","https:\u002F\u002Fwww.cdc.gov\u002Fanthrax\u002Fabout\u002Findex.html",[],{"id":165,"documentId":166,"slug":167,"title":168,"associated_anatomy":169,"is_zoonotic":13,"citations":170,"drugs":182},116,"gx0rf6pbk00x5p9rlai2h5p7","atopic-dermatitis","Atopic dermatitis","Skin and epidermal barrier, ear canals and pinnae, feet and distal limbs, face and periocular skin, axillae, groin, perineum; in cats also respiratory tract, conjunctiva and gut",[171,174,178],{"claims":172,"source":173,"licence":69,"source_url":70,"harvested_by":20,"retrieved_at":21},"definition, seasonality, clinical signs and distribution, Favrot criteria age \u003C3 years, differential diagnoses and how each is excluded, allergen testing","Hensel P, Santoro D, Favrot C, Hill P, Griffin C. Canine atopic dermatitis: detailed guidelines for diagnosis and allergen identification. BMC Veterinary Research, 2015",{"claims":175,"source":176,"licence":69,"source_url":177,"harvested_by":20,"retrieved_at":21},"flare factors, flea control, elimination diets, bathing and skin care, flare prevention with immunotherapy and proactive topical therapy","Olivry T et al. Treatment of canine atopic dermatitis: 2015 updated guidelines from the International Committee on Allergic Diseases of Animals (ICADA). BMC Veterinary Research, 2015","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC4537558\u002F",{"claims":179,"source":180,"licence":69,"source_url":181,"harvested_by":20,"retrieved_at":21},"prevalence, genetics, Th2 and IL-31, skin barrier, dust mite proteases, breeds in dogs and cats, age of onset, lesion distribution, otitis, feline reaction patterns, differentials, lifelong disease, immunotherapy as possibly curative","Gedon NKY, Mueller RS. Atopic dermatitis in cats and dogs: a difficult disease for animals and owners. Clinical and Translational Allergy, 2018","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC6172809\u002FfullTextXML",[183,187,192],{"id":184,"documentId":185,"slug":186,"name":186},1867,"zn4ozmqt343xgw12ho76tr84","ilunocitinib",{"id":188,"documentId":189,"slug":190,"name":191},1621,"nzd2z5mt8ee17drn6tdylfgx","cyclosporine","Cyclosporine",{"id":193,"documentId":194,"slug":195,"name":196},1620,"k22vgyyuitiqz8oi3ogpk3xs","oclacitinib","Oclacitinib",{"id":198,"documentId":199,"slug":200,"title":201,"associated_anatomy":202,"is_zoonotic":13,"citations":203,"drugs":222},211,"s484gixoc9jygk20ipqro9ou","avian-infectious-bronchitis","Avian infectious bronchitis","Upper respiratory tract, trachea (cilia), lungs, air sacs, sinuses, kidneys and ureters, oviduct, caecal tonsils",[204,208,213,218],{"claims":205,"source":206,"licence":96,"source_url":207,"harvested_by":20,"retrieved_at":21},"pathophysiology (agent, routes, nephritis, oviduct damage, caecal tonsil persistence, ciliostasis), epidemiology (hosts, transmission, worldwide, not zoonotic), diagnosis and vaccine interference, adenovirus embryo lesions, vaccine types","WOAH Terrestrial Manual 2018, Chapter 3.3.2 Avian infectious bronchitis","https:\u002F\u002Fwww.woah.org\u002Ffileadmin\u002FHome\u002Feng\u002FHealth_standards\u002Ftahm\u002F3.03.02_AIB.pdf",{"claims":209,"source":210,"licence":211,"source_url":212,"harvested_by":20,"retrieved_at":21},"confirms incubation, signs by age, egg drop to 70%, false layer syndrome, lesions, morbidity and mortality 5-60%, differentials needing lab confirmation, vaccination and no cross-protection, supportive treatment","MSD Veterinary Manual - Infectious Bronchitis in Poultry","not stated on source page (confirmation only)","https:\u002F\u002Fwww.merckvetmanual.com\u002Fpoultry\u002Finfectious-bronchitis\u002Finfectious-bronchitis-in-poultry",{"claims":214,"source":215,"licence":216,"source_url":217,"harvested_by":20,"retrieved_at":21},"epidemiology (GI-23 Middle East origin and spread by country and year, vaccine challenge), prognosis (up to 30% mortality in young birds)","Global transmission pathways and adaptive molecular evolution of avian infectious bronchitis GI-23 (Variant 2), Scientific Reports 2026, via PubMed Central","Creative Commons Attribution 4.0 International","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC13542247\u002F",{"claims":219,"source":220,"licence":211,"source_url":221,"harvested_by":20,"retrieved_at":21},"confirms infectious bronchitis and Newcastle disease sit in the same differential list as avian influenza","MSD Veterinary Manual - Avian Influenza","https:\u002F\u002Fwww.merckvetmanual.com\u002Fpoultry\u002Favian-influenza\u002Favian-influenza",[],{"id":224,"documentId":225,"slug":226,"title":227,"associated_anatomy":228,"is_zoonotic":13,"citations":229,"drugs":243},219,"jemt2t2xr8nprgzje24uoqzp","avian-infectious-laryngotracheitis","Avian infectious laryngotracheitis","Larynx, trachea, nasal cavity, conjunctiva, trigeminal ganglion (latency)",[230,234,239],{"claims":231,"source":232,"licence":96,"source_url":233,"harvested_by":20,"retrieved_at":21},"agent, host species, clinical forms with morbidity and mortality, necropsy lesions, differential diagnosis (Newcastle disease, wet fowlpox), close-contact transmission and latent carriers, cage vs loose housing, strain tropism, recombination, no human risk, histopathology and PCR diagnosis, vaccine types","WOAH Terrestrial Manual 2021, Chapter 3.3.3 Avian infectious laryngotracheitis","https:\u002F\u002Fwww.woah.org\u002Ffileadmin\u002FHome\u002Feng\u002FHealth_standards\u002Ftahm\u002F3.03.03_AVIAN_INF_LARYNGO.pdf",{"claims":235,"source":236,"licence":237,"source_url":238,"harvested_by":20,"retrieved_at":21},"taxonomy, turkeys as hosts, no vertical transmission, age of outbreaks, incubation 1-2 weeks, tracheal epithelium target, latency in trigeminal ganglion and trachea, mortality 5-70%, vaccine types and reversion\u002Frecombination risks, cellular immunity, biosafety, culling of infected flocks, spread from vaccinated birds to naive flocks","Journal of Animal Science (2020) - Infectious laryngotracheitis: an update on current approaches for prevention of an old disease (PMC7531229)","Oxford University Press Standard Journals Publication Model (as stated on source page; all rights reserved)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC7531229\u002F",{"claims":240,"source":241,"licence":69,"source_url":242,"harvested_by":20,"retrieved_at":21},"Egypt outbreaks 2007-2010 with CEO-related strains, CEO-like and recombinant strains dominant 2018-2019, dyspnoea, syncytia and haemorrhagic tracheal lesions","BMC Veterinary Research (2022) - Pathogenicity and vaccine efficacy of two virulent infectious laryngotracheitis virus strains in Egypt (PMC9511729)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC9511729\u002F",[],{"id":245,"documentId":246,"slug":247,"title":248,"associated_anatomy":249,"is_zoonotic":13,"citations":250,"drugs":261},238,"rj7wat5i19qjysl5zlo9b70z","avian-influenza","Avian Influenza","Respiratory tract, digestive tract, skin of head, comb, wattles, shanks and feet, reproductive tract (egg production), central nervous system, lungs, spleen, kidney, liver, heart, mammary gland (cattle)",[251,255,257],{"claims":252,"source":253,"licence":96,"source_url":254,"harvested_by":20,"retrieved_at":21},"epidemiology (transmission, mammal hosts, zoonotic rarity, notifiable status), expected_prognosis (often around 50% mortality), primary_prevention (culling, biosecurity, vaccination as part of a strategy)","WOAH - Avian influenza disease page","https:\u002F\u002Fwww.woah.org\u002Fen\u002Fdisease\u002Favian-influenza\u002F",{"claims":256,"source":220,"licence":211,"source_url":221,"harvested_by":20,"retrieved_at":21},"confirms pathophysiology (H5\u002FH7 mutation from LPAI), sign_or_symptom and lesions, differential_diagnosis list, mortality up to 100%, depopulation",{"claims":258,"source":259,"licence":211,"source_url":260,"harvested_by":20,"retrieved_at":21},"confirms pathophysiology (HA cleavage site, systemic illness, drift and reassortment), epidemiology (endemic in Asia and Middle East, colder months, mammal hosts), clinical signs, necropsy lesions, diagnosis, 90-100% mortality, prevention","Center for Food Security and Public Health, Iowa State University - Highly Pathogenic Avian Influenza technical factsheet (2022, minor updates 2024)","https:\u002F\u002Fwww.cfsph.iastate.edu\u002FFactsheets\u002Fpdfs\u002Fhighly_pathogenic_avian_influenza.pdf",[],{"id":263,"documentId":264,"slug":265,"title":266,"associated_anatomy":267,"is_zoonotic":13,"citations":268,"drugs":289},233,"g1ob7a3660vpyypqrmz1eoa0","bacterial-conjunctivitis","Bacterial conjunctivitis","Conjunctiva, eyelids, tear film and nasolacrimal apparatus (tear sac), cornea",[269,273,277,281,285],{"claims":270,"source":271,"licence":69,"source_url":272,"harvested_by":20,"retrieved_at":21},"dog aetiology, predisposing breed and environmental factors, signs, main isolates, culture and susceptibility guidance","Isolation, Identification, and Antimicrobial Susceptibilities of Bacteria from the Conjunctival Sacs of Dogs with Bacterial Conjunctivitis in Different Regions of Wuhan, China (PMC11769483)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC11769483\u002F",{"claims":274,"source":275,"licence":30,"source_url":276,"harvested_by":20,"retrieved_at":21},"feline causes, signs, spread in multi-cat settings, self-resolution, herpesvirus relapse, allergic and irritant differentials","Cornell University College of Veterinary Medicine, Cornell Feline Health Center - Conjunctivitis","https:\u002F\u002Fwww.vet.cornell.edu\u002Fdepartments-centers-and-institutes\u002Fcornell-feline-health-center\u002Fhealth-information\u002Ffeline-health-topics\u002Fconjunctivitis",{"claims":278,"source":279,"licence":30,"source_url":280,"harvested_by":20,"retrieved_at":21},"C. felis in conjunctival epithelium, transmission via ocular secretions and equipment, age under one year, 12-20% vs 3% prevalence, carrier state, chronic course","The Emergence Potential of Chlamydia psittaci and Chlamydia felis as Zoonotic Agents Causing Ocular and Respiratory Infections in Humans and Animals (PMC12004038), Archives of Razi Institute","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC12004038\u002F",{"claims":282,"source":283,"licence":30,"source_url":284,"harvested_by":20,"retrieved_at":21},"confirmation: feline causes, chemosis, unilateral vs bilateral pattern, diagnostic tests, neonatal kitten conjunctivitis, risk of blindness","Merck Veterinary Manual - Disorders of the Conjunctiva in Cats","https:\u002F\u002Fwww.merckvetmanual.com\u002Fcat-owners\u002Feye-disorders-of-cats\u002Fdisorders-of-the-conjunctiva-in-cats",{"claims":286,"source":287,"licence":30,"source_url":288,"harvested_by":20,"retrieved_at":21},"confirmation: canine underlying causes (dry eye, tear sac, eyelid defects, irritants, parasites), diagnostic tests, antibiotics alone may fail","Merck Veterinary Manual - Disorders of the Conjunctiva in Dogs","https:\u002F\u002Fwww.merckvetmanual.com\u002Fdog-owners\u002Feye-disorders-of-dogs\u002Fdisorders-of-the-conjunctiva-in-dogs",[290],{"id":291,"documentId":292,"slug":293,"name":293},1659,"mwwwqryf0hwpovm4p5ndp5j2","chloramphenicol",{"id":295,"documentId":296,"slug":297,"title":298,"associated_anatomy":299,"is_zoonotic":13,"citations":300,"drugs":315},230,"ry078eqkbu3ah48fl0jeys8d","bacterial-pneumonia","Bacterial pneumonia","Lungs, bronchi and bronchioles, alveoli, pleura, trachea, upper respiratory tract",[301,306,311],{"claims":302,"source":303,"licence":304,"source_url":305,"harvested_by":20,"retrieved_at":21},"cattle pathophysiology, defence impairment, leukotoxin and LPS, lesion types, timing after stress, affected groups, differential lesion patterns","Pathogenesis and Pathology of Bovine Pneumonia, Vet Clin North Am Food Anim Pract 2010 (PMC7185769)","Copyright 2010 Elsevier Inc. All rights reserved (PMC free access)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC7185769\u002F",{"claims":307,"source":308,"licence":309,"source_url":310,"harvested_by":20,"retrieved_at":21},"dog and cat causes, isolates, signs, radiography, diagnosis, differentials, 77-94% discharge, aspiration management","Bacterial Pneumonia in Dogs and Cats, Vet Clin North Am Small Anim Pract (PMC7114586)","Copyright 2014 Elsevier Inc. All rights reserved (PMC free access)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC7114586\u002F",{"claims":312,"source":313,"licence":30,"source_url":314,"harvested_by":20,"retrieved_at":21},"confirmation: cattle agents, stressors, early signs and fever, lesions, prognosis for H. somni and Bibersteinia, early antimicrobials, preconditioning, vaccination, metaphylaxis","Merck Veterinary Manual - Bacterial Pneumonia in Cattle with Bovine Respiratory Disease Complex","https:\u002F\u002Fwww.merckvetmanual.com\u002Frespiratory-system\u002Fbovine-respiratory-disease-complex\u002Fbacterial-pneumonia-in-cattle-with-bovine-respiratory-disease-complex",[316,321,322,327,328,333,337,341,345],{"id":317,"documentId":318,"slug":319,"name":320},1565,"d02pmms11myfi4zivvd8zp6t","ampicillin","Ampicillin",{"id":130,"documentId":131,"slug":132,"name":132},{"id":323,"documentId":324,"slug":325,"name":326},1580,"wjanoxggjve411i0xbpdef6k","erythromycin","Erythromycin",{"id":139,"documentId":140,"slug":141,"name":142},{"id":329,"documentId":330,"slug":331,"name":332},1762,"y0tgzdbbrz7imizicaywhnai","penicillin-g","penicillin g",{"id":334,"documentId":335,"slug":336,"name":336},1811,"rdytkkdoyygm1b9x0vhzx8vr","sulfadimethoxine",{"id":338,"documentId":339,"slug":340,"name":340},1812,"fpmxum4xpqrlgidd7ob6tsug","sulfamethazine",{"id":342,"documentId":343,"slug":344,"name":344},1814,"vofh56qik76ntlhay999ri15","sulfisoxazole",{"id":346,"documentId":347,"slug":348,"name":348},1819,"caokmdlctsumv3pue1d5tlea","tetracycline",{"id":350,"documentId":351,"slug":352,"title":353,"associated_anatomy":354,"is_zoonotic":13,"citations":355,"drugs":366},120,"q225am7ruy203o7rjgq507pa","bovine-anaplasmosis","Bovine anaplasmosis","Blood (red blood cells), spleen, liver, gallbladder, lungs, mucous membranes, reproductive tract (abortion)",[356,358,360,362,364],{"claims":357,"source":95,"licence":96,"source_url":97,"harvested_by":20,"retrieved_at":21},"agent and taxonomy, signs, carriers, distribution, tick and mechanical transmission, no human infection, smear diagnosis, distinction from babesiosis, live A. centrale vaccine",{"claims":359,"source":121,"licence":122,"source_url":123,"harvested_by":20,"retrieved_at":21},"age-related severity, breed susceptibility, needle and equipment transmission, transplacental carriers, clinical signs incl. aggression and abortion, ELISA screening",{"claims":361,"source":117,"licence":30,"source_url":118,"harvested_by":20,"retrieved_at":21},"immune destruction of red cells, dead cows as first sign, 30-50% mortality in untreated adults, oxytetracycline approach, slow recovery, vector control",{"claims":363,"source":126,"licence":30,"source_url":127,"harvested_by":20,"retrieved_at":21},"confirms extravascular red-cell destruction, necropsy lesions, differentials (babesiosis, leptospirosis, theileriosis)",{"claims":365,"source":113,"licence":69,"source_url":114,"harvested_by":20,"retrieved_at":21},"A. marginale prevalence and July peak in northern Algeria, co-infection with Theileria annulata",[],{"id":368,"documentId":369,"slug":370,"title":371,"associated_anatomy":372,"is_zoonotic":13,"citations":373,"drugs":401},218,"c99dx7js0n5kety3tqvff943","bovine-babesiosis","Bovine babesiosis","Red blood cells and blood vessels, spleen, liver, kidneys, brain (cerebral capillaries), lungs, mucous membranes",[374,378,383,388,392,397],{"claims":375,"source":376,"licence":96,"source_url":377,"harvested_by":20,"retrieved_at":21},"agents, taxonomy, tick vectors, distribution, relative pathogenicity, parasitaemia levels, cerebral sequestration, lifelong immunity, calves rarely ill, carriers, blood film and PCR diagnosis, live vaccines in calves under one year; vaccine immunity in 3-4 weeks, single dose usually lifelong (contradicts Anipedia figure)","WOAH Terrestrial Manual 2021, Chapter 3.4.2 Bovine babesiosis","https:\u002F\u002Fwww.woah.org\u002Ffileadmin\u002FHome\u002Feng\u002FHealth_standards\u002Ftahm\u002F3.04.02_BABESIOSIS.pdf",{"claims":379,"source":380,"licence":381,"source_url":382,"harvested_by":20,"retrieved_at":21},"pathogenesis of B. bovis vs B. bigemina, incubation 8-15 days, clinical and cerebral signs, necropsy lesions, differential diagnoses, treatment approach, fatal cerebral form, recovery, vaccine immunity onset 4-6 weeks and duration (contradicts WOAH figure)","University of Pretoria Anipedia - Bovine babesiosis","CC BY-NC (as stated on source page)","https:\u002F\u002Fanipedia.up.ac.za\u002Fresources\u002Fbovine-babesiosis\u002F1133.html",{"claims":384,"source":385,"licence":386,"source_url":387,"harvested_by":20,"retrieved_at":21},"Egypt: R. annulatus and R. microplus vectors, cattle and buffalo, most endemic blood parasite","Open Veterinary Journal (2024) - Sero epidemiological study on bovine babesiosis in cattle and buffaloes in Sharkia Governorate, Egypt (PMC11338614)","CC BY-NC","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC11338614\u002F",{"claims":389,"source":390,"licence":69,"source_url":391,"harvested_by":20,"retrieved_at":21},"B. bovis and B. bigemina in north Algerian cattle, July peak, co-circulation with Theileria annulata","Veterinary Medicine and Science (2020) - Bovine piroplasmosis-anaplasmosis and clinical signs of tropical theileriosis in the plains of Djurdjura (north Algeria) (PMC7738714)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC7738714\u002F",{"claims":393,"source":394,"licence":395,"source_url":396,"harvested_by":20,"retrieved_at":21},"red urine late or absent with B. bovis, jaundice, nervous signs, Bos taurus more susceptible than Bos indicus, blood smear diagnosis","Business Queensland (State of Queensland) - Tick fever in Australia","(c) The State of Queensland; no open licence stated","https:\u002F\u002Fwww.business.qld.gov.au\u002Findustries\u002Ffarms-fishing-forestry\u002Fagriculture\u002Fbiosecurity\u002Fanimals\u002Fdiseases\u002Fcattle-tick-fever\u002Fmanage\u002Faustralia",{"claims":398,"source":399,"licence":211,"source_url":400,"harvested_by":20,"retrieved_at":21},"confirms clinical picture, capillary sampling for B. bovis, water buffalo subclinical, resistance of young and Bos indicus cattle, guarded prognosis with CNS signs, vaccination and tick control","Center for Food Security and Public Health (Iowa State) - Bovine Babesiosis factsheet","https:\u002F\u002Fwww.cfsph.iastate.edu\u002FFactsheets\u002Fpdfs\u002Fbovine_babesiosis.pdf",[],{"id":403,"documentId":404,"slug":405,"title":406,"associated_anatomy":407,"is_zoonotic":13,"citations":408,"drugs":417},92,"ab5om2g7zthwuaj9vfd7l72u","bovine-respiratory-disease-complex-brd","Bovine Respiratory Disease Complex (BRD)","Upper respiratory tract, trachea, bronchi and bronchioles, lungs (alveoli), pleura; bloodstream, brain and heart in Histophilus somni septicaemia",[409,413],{"claims":410,"source":411,"licence":69,"source_url":412,"harvested_by":20,"retrieved_at":21},"definition, leading cause of pre-weaned calf death, US cost, prevalence and risk factors, viral and bacterial agents, BVDV immunosuppression, shipping fever stressors, clinical signs, auscultation and ultrasound, lungworms, vaccination reducing morbidity and mortality","A Comprehensive Review: Bovine Respiratory Disease, Current Insights into Epidemiology, Diagnostic Challenges, and Vaccination (Animals, MDPI) - Europe PMC full text","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC12390213\u002FfullTextXML",{"claims":414,"source":415,"licence":69,"source_url":416,"harvested_by":20,"retrieved_at":21},"viral priming then bacterial superinfection, commensal bacteria, M. haemolytica leukotoxin and fibrinous pleuropneumonia, H. somni septicaemia, necropsy findings, transport and handling stress, environmental risk factors, Aspergillus and lungworms, antibiotics as first choice, colostrum, biosecurity and vaccination","Understanding the mechanisms of viral and bacterial coinfections in bovine respiratory disease (Veterinary Research, BMC) - Europe PMC full text","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC9449274\u002FfullTextXML",[418,419,420,425,430,431,436,441],{"id":334,"documentId":335,"slug":336,"name":336},{"id":338,"documentId":339,"slug":340,"name":340},{"id":421,"documentId":422,"slug":423,"name":424},1578,"n8p488a0dy25iee2uwyd8k4c","tulathromycin","Tulathromycin",{"id":426,"documentId":427,"slug":428,"name":429},1579,"bk9ofc0uev0wh5nouedqypoc","tilmicosin","Tilmicosin",{"id":134,"documentId":135,"slug":136,"name":137},{"id":432,"documentId":433,"slug":434,"name":435},1576,"a0az89mj38wbq00g41lxm6fp","florfenicol","Florfenicol",{"id":437,"documentId":438,"slug":439,"name":440},50,"g77jcvm2n9m2ttny703q6mdp","flunixin-meglumine","Flunixin Meglumine",{"id":442,"documentId":443,"slug":444,"name":445},1583,"rdw9hjrcoc9mdm6nw02c3d3z","meloxicam","Meloxicam",{"id":447,"documentId":448,"slug":449,"title":450,"associated_anatomy":451,"is_zoonotic":13,"citations":452,"drugs":466},242,"b8ppzokxqpnur6bh3allr5wi","bovine-viral-diarrhea-bvd","Bovine Viral Diarrhea (BVD)","Gastrointestinal tract, oral mucosa, Peyer's patches and lymphoid tissue, respiratory tract, immune system, platelets, reproductive tract, fetus, testes and semen, brain (cerebellum), eyes, skeleton",[453,457,461],{"claims":454,"source":455,"licence":96,"source_url":456,"harvested_by":20,"retrieved_at":21},"pathophysiology (species, biotypes, viraemia, gestation-stage outcomes, PI, mucosal disease), epidemiology (reservoir, shedding, 1-2% PI, other species, camelids, type distribution, respiratory complex), diagnosis intervals, vaccine safety, PI life expectancy, mucosal disease fatal","WOAH Terrestrial Manual 2024, Chapter 3.4.7 Bovine viral diarrhoea","https:\u002F\u002Fwww.woah.org\u002Ffileadmin\u002FHome\u002Feng\u002FHealth_standards\u002Ftahm\u002F3.04.07_BVD.pdf",{"claims":458,"source":459,"licence":211,"source_url":460,"harvested_by":20,"retrieved_at":21},"confirms acute signs and onset, type 2 haemorrhagic form, necropsy lesions, differentials (MCF sporadic in mature cattle, bluetongue, EHD, rinderpest), mortality 25% or more in severe acute form, supportive treatment, quarantine and testing","MSD Veterinary Manual - Bovine Viral Diarrhea and Mucosal Disease Complex","https:\u002F\u002Fwww.merckvetmanual.com\u002Finfectious-diseases\u002Fbovine-viral-diarrhea\u002Fbovine-viral-diarrhea-and-mucosal-disease-complex",{"claims":462,"source":463,"licence":464,"source_url":465,"harvested_by":20,"retrieved_at":21},"differential_diagnosis list (vesicular diseases, salmonellosis, coccidiosis, IBR, papular stomatitis) and use of history and herd rates; mucosal disease signs and oral erosions; seronegative PI animals","Heuschele WP (1981) Preventive Medicine for Some Economically Important Bovine Viral Diseases, Veterinary Clinics of North America: Large Animal Practice, via PubMed Central","(c) 1981 W.B. Saunders Company (made available on PMC)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC7132706\u002F",[],{"id":468,"documentId":469,"slug":470,"title":471,"associated_anatomy":472,"is_zoonotic":13,"citations":473,"drugs":484},99,"o8nvi9iz336cfbrt74i75waf","canine-distemper","Canine Distemper","Lymphoid tissue and white blood cells, respiratory tract and lungs, eyes and conjunctiva, gastrointestinal tract, urinary tract, skin, central nervous system, developing teeth",[474,479],{"claims":475,"source":476,"licence":477,"source_url":478,"harvested_by":20,"retrieved_at":21},"pathophysiology (classification, receptors, spread, leukopenia, demyelination), epidemiology (Carnivora host range, aerosol and contact transmission)","Virology Journal (2019): Tropism and molecular pathogenesis of canine distemper virus, Rendon-Marin et al. (via Europe PMC, PMC6407191)","Creative Commons Attribution 4.0 International License","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC6407191\u002FfullTextXML",{"claims":480,"source":481,"licence":482,"source_url":483,"harvested_by":20,"retrieved_at":21},"epidemiology (ages, wildlife, shedding, group settings, not zoonotic), sign_or_symptom, differential_diagnosis, expected_prognosis, primary_prevention","The Ohio State University College of Veterinary Medicine and AKC Canine Health Foundation: Canine Distemper - Information for Dog Owners (Evason and Stull, 2016)","Material may not be reproduced without prior permission of the AKC Canine Health Foundation (facts only used, own wording)","https:\u002F\u002Fvet.osu.edu\u002Fsites\u002Fdefault\u002Ffiles\u002Fdocuments\u002FCanine%20Distemper%20Fact%20Sheet%2020200123.pdf",[485,490],{"id":486,"documentId":487,"slug":488,"name":489},1572,"o734t179yrgn73e444e7xrwy","cefovecin","Cefovecin",{"id":491,"documentId":492,"slug":493,"name":494},1597,"r9hv9ixtktq9cmkyz7v4pduw","diazepam","Diazepam",{"id":496,"documentId":497,"slug":498,"title":499,"associated_anatomy":500,"is_zoonotic":13,"citations":501,"drugs":528},195,"sqo79krjkkoqkqf9sn4edmzq","caprine-arthritis-encephalitis","Caprine arthritis\u002Fencephalitis","Joints, mammary gland, lungs, central nervous system (brain and spinal cord), monocyte\u002Fmacrophage system",[502,506,511,515,519,523],{"claims":503,"source":504,"licence":96,"source_url":505,"harvested_by":20,"retrieved_at":21},"lentivirus related to maedi-visna, colostrum\u002Fmilk and respiratory transmission, distribution with European dairy breeds, clinical forms, mostly asymptomatic, no vaccine, not zoonotic, WOAH-listed","WOAH - Caprine arthritis\u002Fencephalitis disease page","https:\u002F\u002Fwww.woah.org\u002Fen\u002Fdisease\u002Fcaprine-arthritis-encephalitis\u002F",{"claims":507,"source":508,"licence":509,"source_url":510,"harvested_by":20,"retrieved_at":21},"monocyte\u002Fmacrophage tropism, maturation-dependent expression, mononuclear infiltration, lifelong integrated infection, organs affected, progression over months to years, fatal outcome, test and cull","Retroviral Infections in Sheep and Goats: Small Ruminant Lentiviruses and Host Interaction (PMC3761241)","not captured from source page","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC3761241\u002F",{"claims":512,"source":513,"licence":509,"source_url":514,"harvested_by":20,"retrieved_at":21},"long eclipse phase, four clinical forms, Iranian PCR prevalence and herd figures, year-round transmission, no treatment or vaccine","First molecular prevalence study of caprine arthritis encephalitis virus in goats from Western Iran (PMC13314359)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC13314359\u002F",{"claims":516,"source":517,"licence":30,"source_url":518,"harvested_by":20,"retrieved_at":21},"age-based forms, kid and adult signs, transmission routes incl. instruments and in utero, no recovery once clinical, quarantine and testing protocol","Washington Animal Disease Diagnostic Laboratory, Washington State University - CAE (caprine arthritis encephalitis)","https:\u002F\u002Fwaddl.vetmed.wsu.edu\u002F2023\u002F02\u002F07\u002Fcae-caprine-arthritis-encephalitis\u002F",{"claims":520,"source":521,"licence":509,"source_url":522,"harvested_by":20,"retrieved_at":21},"sheep and goats affected, perinatal, venereal and iatrogenic transmission, asymptomatic carriers, control by pasteurisation, AI, equipment sterilisation","Further Insights Into Caprine Arthritis Encephalitis: seroprevalence among small ruminants in Peninsular Malaysia (PMC8300945)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC8300945\u002F",{"claims":524,"source":525,"licence":526,"source_url":527,"harvested_by":20,"retrieved_at":21},"confirms kid neurological form age, arthritis and hard udder signs, interstitial pneumonia, no vaccine, heat-treated colostrum and test-and-cull control","MSD Veterinary Manual - Caprine Arthritis and Encephalitis","not stated on source page; confirmation only","https:\u002F\u002Fwww.msdvetmanual.com\u002Fgeneralized-conditions\u002Fcaprine-arthritis-and-encephalitis\u002Fcaprine-arthritis-and-encephalitis",[],{"id":530,"documentId":531,"slug":532,"title":533,"associated_anatomy":534,"is_zoonotic":13,"citations":535,"drugs":548},95,"jjdlvbfrxh850tibm4vz4t5w","chronic-kidney-disease","Chronic Kidney Disease","Kidneys (glomeruli, tubules, interstitium), urinary system, parathyroid glands, cardiovascular system, bone marrow (erythropoiesis)",[536,540,544],{"claims":537,"source":538,"licence":69,"source_url":539,"harvested_by":20,"retrieved_at":21},"definition, prevalence, causes, pathogenesis, anaemia and hypertension rates, signs, diagnosis, IRIS staging, prognostic factors","Veterinary Sciences (2026) - Understanding the Progression of Chronic Kidney Disease in Cats: From Pathophysiology to Emerging Biomarkers (PMC12945120, Europe PMC full text)","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC12945120\u002FfullTextXML",{"claims":541,"source":542,"licence":69,"source_url":543,"harvested_by":20,"retrieved_at":21},"canine definition, IRIS criteria, ultrasound findings, normal-looking kidneys possible","Veterinary Sciences (2020) - How Ultrasound Can Be Useful for Staging Chronic Kidney Disease in Dogs: 855 cases (PMC7712280, Europe PMC full text)","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC7712280\u002FfullTextXML",{"claims":545,"source":546,"licence":526,"source_url":547,"harvested_by":20,"retrieved_at":21},"confirms irreversibility, azotaemia after about 75% nephron loss, clinical signs, high prevalence in geriatric cats","MSD Veterinary Manual - Renal Dysfunction in Dogs and Cats","https:\u002F\u002Fwww.merckvetmanual.com\u002Furinary-system\u002Fnoninfectious-diseases-of-the-urinary-system-in-small-animals\u002Frenal-dysfunction-in-dogs-and-cats",[549,553,558,563,568],{"id":550,"documentId":551,"slug":552,"name":552},1853,"blje9fnx5ihg8h16y7kk51x7","capromorelin",{"id":554,"documentId":555,"slug":556,"name":557},1603,"kkutlv4pph1fgww8d7ofg78h","amlodipine","Amlodipine",{"id":559,"documentId":560,"slug":561,"name":562},90,"pdxto9xdh5ivhqoqn0c9yflb","enalapril","Enalapril",{"id":564,"documentId":565,"slug":566,"name":567},124,"heynxa0va10gzel3li53rd4y","famotidine","Famotidine",{"id":569,"documentId":570,"slug":571,"name":572},1617,"z3qj7dn7uar9os0ns7yis06c","omeprazole","Omeprazole",{"id":574,"documentId":575,"slug":576,"title":577,"associated_anatomy":578,"is_zoonotic":13,"citations":579,"drugs":590},108,"xpbsvrxyrdwbyn40hesgvzol","chronic-obstructive-pulmonary-disease","Chronic obstructive pulmonary disease","Lower airways (bronchi and bronchioles), airway smooth muscle and mucus glands, lungs, abdominal respiratory muscles",[580,585],{"claims":581,"source":582,"licence":583,"source_url":584,"harvested_by":20,"retrieved_at":21},"terminology incl. COPD, triggers, pathophysiology, heave line, onset age, heritability, barn and pasture forms, signs, diagnosis, transtracheal wash, management, lifelong prognosis","University of Florida IFAS Extension (EDIS VM142, DeNotta and House) - Understanding Equine Asthma (Heaves)","(c) 2024 University of Florida","https:\u002F\u002Fask.ifas.ufl.edu\u002Fpublication\u002FVM142",{"claims":586,"source":587,"licence":588,"source_url":589,"harvested_by":20,"retrieved_at":21},"age over 7 years, 14-17% prevalence, neutrophilic inflammation, hyper-responsiveness, remodelling reversibility, mild vs severe distinction, pasture asthma, relapse on re-exposure","Frontiers in Veterinary Science (2020) - Equine Asthma: Current Understanding and Future Directions (PMC7438831, Europe PMC full text)","CC BY","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC7438831\u002FfullTextXML",[591],{"id":592,"documentId":593,"slug":594,"name":594},1885,"i2cfrfuu84n9n84aq1rripjr","clenbuterol",{"id":596,"documentId":597,"slug":598,"title":599,"associated_anatomy":600,"is_zoonotic":13,"citations":601,"drugs":616},240,"pqc2vvukzzr9qznu8mv8wc0t","coccidiosis","Coccidiosis","Small intestine, caeca, large intestine and colon, intestinal epithelium and villi",[602,606,611],{"claims":603,"source":604,"licence":211,"source_url":605,"harvested_by":20,"retrieved_at":21},"confirms agents and host specificity, life cycle and damage, large versus small intestine severity, oocyst survival, risk factors, signs, lesions, oocyst count interpretation, differentials, low mortality and self-limiting course, management, poultry-only vaccines","MSD Veterinary Manual - Overview of Coccidiosis in Animals","https:\u002F\u002Fwww.merckvetmanual.com\u002Fdigestive-system\u002Fcoccidiosis\u002Foverview-of-coccidiosis-in-animals",{"claims":607,"source":608,"licence":609,"source_url":610,"harvested_by":20,"retrieved_at":21},"epidemiology (young animals around weaning, adult immunity, faecal-oral route, oocyst survival up to a year), sign_or_symptom in sheep and goats, prevention (sanitation, coccidiostat supplements)","Mississippi State University Extension Service - Educational Tips for Farmers: Coccidia (Eimeria spp.) in Sheep and Goats","not stated on source page (educational use notice)","https:\u002F\u002Fextension.msstate.edu\u002Fpublications\u002Feducational-tips-for-farmers-coccidia-eimeria-spp-sheep-and-goats",{"claims":612,"source":613,"licence":614,"source_url":615,"harvested_by":20,"retrieved_at":21},"poultry pathophysiology (seven Eimeria species by gut section, mucosal destruction and leakage), 24-48 h sporulation, risk factors, signs and mortality, subclinical losses, lesion scoring, differentials, anticoccidial resistance, vaccines, litter management","Ahmad R et al. (2024) Management and control of coccidiosis in poultry - A review, Animal Bioscience, via PubMed Central","Creative Commons Attribution 4.0","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC10766461\u002F",[617,621,622,623,627,631,635,639,643,647,651,655,659,664,668],{"id":618,"documentId":619,"slug":620,"name":620},1754,"ukrcetiakgmj79kjz7hapte6","narasin",{"id":338,"documentId":339,"slug":340,"name":340},{"id":334,"documentId":335,"slug":336,"name":336},{"id":624,"documentId":625,"slug":626,"name":626},1797,"ctr6haixi9ym34h5sx8tylkj","semduramicin",{"id":628,"documentId":629,"slug":630,"name":630},1793,"ccy56tdso78lf2w4vbq1d10t","salinomycin",{"id":632,"documentId":633,"slug":634,"name":634},1790,"qtptqdg4mgq3stzt28emc7is","robenidine",{"id":636,"documentId":637,"slug":638,"name":638},1736,"c42wgymv3bch7n19vd2jwlox","maduramicin",{"id":640,"documentId":641,"slug":642,"name":642},1729,"oncckw3kfbbkr0qxkdfvkjlc","lasalocid",{"id":644,"documentId":645,"slug":646,"name":646},1712,"gack73i1osk8keyie3nxoc3x","halofuginone",{"id":648,"documentId":649,"slug":650,"name":650},1685,"g7a0hhpb3fpwd4h6d5zox90l","diclazuril",{"id":652,"documentId":653,"slug":654,"name":654},1679,"wupwru8c19x07snk3wfw8tog","decoquinate",{"id":656,"documentId":657,"slug":658,"name":658},1669,"bvphlyso2ctltkof15fli8v2","clopidol",{"id":660,"documentId":661,"slug":662,"name":663},1615,"h8qnb1zard7o7habzqxgtdo2","amprolium","Amprolium",{"id":350,"documentId":665,"slug":666,"name":667},"k8uteimqynpxcj7djd68ua32","tolturazuril","Tolturazuril",{"id":669,"documentId":670,"slug":671,"name":672},1616,"iuzy3nezqu1dihzlmhgxw546","monensin","Monensin",{"id":674,"documentId":675,"slug":676,"title":677,"associated_anatomy":678,"is_zoonotic":13,"citations":679,"drugs":699},128,"ztqfotu3wp30psx3f6n5qgf2","colibacillosis","Colibacillosis","Air sacs, lungs, pericardium, liver capsule, yolk sac, oviduct, peritoneum, skin, joints and bone, blood; small intestine in calves",[680,685,689,694],{"claims":681,"source":682,"licence":683,"source_url":684,"harvested_by":20,"retrieved_at":21},"pathophysiology (APEC virulence factors, routes), epidemiology (hosts, predisposing infections, resistance, zoonotic potential), sign_or_symptom (disease forms), expected_prognosis (20%, 53.5%), primary_prevention (vaccines, litter and air quality)","Pathogens (2021): Avian Pathogenic Escherichia coli (APEC): An Overview of Virulence and Pathogenesis Factors, Zoonotic Potential, and Control Strategies, Kathayat et al. (via Europe PMC, PMC8069529)","Creative Commons Attribution (CC BY) 4.0","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC8069529\u002FfullTextXML",{"claims":686,"source":687,"licence":477,"source_url":688,"harvested_by":20,"retrieved_at":21},"epidemiology (ammonia, faecal dust, eggs, vertical transmission), sign_or_symptom (salpingitis, coligranuloma), differential_diagnosis (leukosis-like lesions), expected_prognosis (coligranuloma up to 75%), primary_prevention (ventilation, chlorination, egg fumigation)","Veterinary World (2024): Avian pathogenic Escherichia coli: Epidemiology, virulence and pathogenesis, diagnosis, pathophysiology, transmission, vaccination, and control, Khairullah et al.","https:\u002F\u002Fwww.veterinaryworld.org\u002FVol.17\u002FDecember-2024\u002F6.pdf",{"claims":690,"source":691,"licence":692,"source_url":693,"harvested_by":20,"retrieved_at":21},"epidemiology and differential_diagnosis (four enteropathogens and their ages), sign_or_symptom (calves, septicaemia), expected_prognosis (4.9%), primary_prevention (colostrum, dam vaccination)","Acta Veterinaria Scandinavica (2014): Advances in prevention and therapy of neonatal dairy calf diarrhoea, Meganck et al. (via Europe PMC, PMC4246539)","Creative Commons Attribution License (CC BY 4.0)","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC4246539\u002FfullTextXML",{"claims":695,"source":696,"licence":697,"source_url":698,"harvested_by":20,"retrieved_at":21},"pathophysiology (K99 adhesion to mucosa, enterotoxin, watery diarrhoea, dehydration, electrolyte imbalance)","The Veterinary Quarterly (2026): Microbiota-bile acid-host axis dysregulation drives enteropathogenesis in Escherichia coli K99-induced neonatal calf diarrhea (via Europe PMC, PMC12862847)","CC BY-NC 4.0","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC12862847\u002FfullTextXML",[],{"id":701,"documentId":702,"slug":703,"title":704,"associated_anatomy":705,"is_zoonotic":13,"citations":706,"drugs":722},213,"jwcwz5i3hi5407uh69f4n68u","congestive-heart-failure","Congestive heart failure","Heart (mitral valve, left atrium, left ventricle, myocardium), lungs and pulmonary veins, pleural space, peritoneal cavity (ascites), kidneys and RAAS, systemic arteries (thromboembolism)",[707,712,717],{"claims":708,"source":709,"licence":710,"source_url":711,"harvested_by":20,"retrieved_at":21},"definition of heart failure and backward congestion, MMVD pathophysiology, prevalence, breed and sex predisposition, staging, signs and resting respiratory rate, diagnostics, tracheobronchial differential, drug classes, surgical repair, large-breed prognosis","Keene BW et al. (2019) ACVIM consensus guidelines for the diagnosis and treatment of myxomatous mitral valve disease in dogs, Journal of Veterinary Internal Medicine, via PubMed Central","Creative Commons BY-NC 4.0","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC6524084\u002F",{"claims":713,"source":714,"licence":715,"source_url":716,"harvested_by":20,"retrieved_at":21},"feline CHF signs, pleural effusion, thromboembolism, POCUS and NT-proBNP to separate respiratory disease, subclinical HCM majority, shorter survival after CHF or ATE, thromboprophylaxis","Luis Fuentes V et al. (2020) ACVIM consensus statement guidelines for the classification, diagnosis, and management of cardiomyopathies in cats, Journal of Veterinary Internal Medicine, via PubMed Central","Creative Commons BY 4.0","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC7255676\u002F",{"claims":718,"source":719,"licence":720,"source_url":721,"harvested_by":20,"retrieved_at":21},"corroborates pathophysiology (volume overload, RAAS and sympathetic activation, sodium and water retention), signs incl. ascites, resting respiratory rate monitoring, treatment classes, sodium restriction","Bagardi M et al. (2022) Management of Chronic Congestive Heart Failure Caused by Myxomatous Mitral Valve Disease in Dogs: A Narrative Review, Animals (MDPI), via PubMed Central","Creative Commons Attribution (CC BY 4.0)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC8773235\u002F",[723,727,732],{"id":724,"documentId":725,"slug":726,"name":726},1627,"xp8qucbj9jr785s18j0gdac4","acetazolamide",{"id":728,"documentId":729,"slug":730,"name":731},1602,"m588ydnron1rd03ydjtql133","pimobendan","Pimobendan",{"id":733,"documentId":734,"slug":735,"name":735},1832,"fhd0e8l740tidqcp9xhe8vkh","torsemide",{"id":737,"documentId":738,"slug":739,"title":740,"associated_anatomy":741,"is_zoonotic":13,"citations":742,"drugs":756},111,"wpernqlza2zov5wdokmxboho","contagious-agalactia","Contagious agalactia","Mammary gland, joints and synovial membranes, eyes (conjunctiva, cornea), lungs and pleura, reproductive tract, bloodstream",[743,747,752],{"claims":744,"source":745,"licence":96,"source_url":746,"harvested_by":20,"retrieved_at":21},"agents, hosts, distribution incl. North Africa and Iran, clinical signs and proportions, kid mortality, bulk milk testing, putrid milk with M. putrefaciens, vaccines","WOAH Terrestrial Manual, Chapter 3.8.3 Contagious agalactia (2018)","https:\u002F\u002Fwww.woah.org\u002Ffileadmin\u002FHome\u002Feng\u002FHealth_standards\u002Ftahm\u002F3.08.03_CONT_AGALACT.pdf",{"claims":748,"source":749,"licence":750,"source_url":751,"harvested_by":20,"retrieved_at":21},"pathogenesis, MENA countries, transmission routes, carrier shedding, seasonality, incubation, clinical signs, vaccines, culling","Kumar A et al. Mycoplasma agalactiae, an Etiological Agent of Contagious Agalactia in Small Ruminants: A Review. Veterinary Medicine International, 2014","Creative Commons Attribution License","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC4109668\u002F",{"claims":753,"source":754,"licence":30,"source_url":755,"harvested_by":20,"retrieved_at":21},"confirms distribution, transmission, lesions, differential diagnoses, carrier status after treatment, prevention measures","MSD\u002FMerck Veterinary Manual: Contagious Agalactia in Small Ruminants","https:\u002F\u002Fwww.merckvetmanual.com\u002Freproductive-system\u002Fcontagious-agalactia\u002Fcontagious-agalactia-in-small-ruminants",[],{"id":758,"documentId":759,"slug":760,"title":761,"associated_anatomy":762,"is_zoonotic":13,"citations":763,"drugs":776},102,"fhwiskky1abevahs9elbiaue","contagious-caprine-pleuropneumonia","Contagious caprine pleuropneumonia","Lungs, pleura and pleural cavity, bronchi and bronchioles, respiratory epithelium, thoracic lymph nodes",[764,768,772],{"claims":765,"source":766,"licence":96,"source_url":767,"harvested_by":20,"retrieved_at":21},"agent, lesions, host range incl. wildlife in Qatar and UAE, isolation countries, differentials, vaccine type, not zoonotic","WOAH Terrestrial Manual 2021, Chapter 3.8.4 Contagious caprine pleuropneumonia","https:\u002F\u002Fwww.woah.org\u002Ffileadmin\u002FHome\u002Feng\u002FHealth_standards\u002Ftahm\u002F3.08.04_CCPP.pdf",{"claims":769,"source":770,"licence":96,"source_url":771,"harvested_by":20,"retrieved_at":21},"listed status, species, unilateral pleuropneumonia, vaccines, not zoonotic","WOAH - Contagious caprine pleuropneumonia disease page","https:\u002F\u002Fwww.woah.org\u002Fen\u002Fdisease\u002Fcontagious-caprine-pleuropneumonia\u002F",{"claims":773,"source":774,"licence":69,"source_url":775,"harvested_by":20,"retrieved_at":21},"pathogenesis, aerosol transmission, clinical forms, fever range, morbidity and mortality, necropsy findings, carriers","The Veterinary Quarterly (2019) - Contagious caprine pleuropneumonia: a comprehensive review (PMC6830973)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC6830973\u002F",[],{"id":437,"documentId":778,"slug":779,"title":780,"associated_anatomy":13,"is_zoonotic":13,"citations":13,"drugs":781},"w95aah7q45c33ljnnjv25mw3","corneal-ulcer","Corneal Ulcer",[782,783],{"id":442,"documentId":443,"slug":444,"name":445},{"id":55,"documentId":56,"slug":57,"name":58},{"id":785,"documentId":786,"slug":787,"title":788,"associated_anatomy":13,"is_zoonotic":13,"citations":13,"drugs":789},44,"bmrxo4cvs3n6mnel9r2ajmy6","cushings-disease-hyperadrenocorticism","Cushing's Disease (Hyperadrenocorticism)",[],{"id":791,"documentId":792,"slug":793,"title":794,"associated_anatomy":795,"is_zoonotic":13,"citations":796,"drugs":805},115,"qsinaxvmzakywujz5lx1hjzp","cystitis","Cystitis","Urinary bladder, urothelium, urethra; kidneys and upper urinary tract when infection ascends",[797,801],{"claims":798,"source":799,"licence":697,"source_url":800,"harvested_by":20,"retrieved_at":21},"definitions, ascending pathogenesis, host defences, E. coli virulence, isolates, prevalence and risk factors in cats, clinical signs, culture threshold, differential diagnoses, subclinical bacteriuria survival, no recommended prevention","Dorsch R, Teichmann-Knorrn S, Lund HS. Urinary tract infection and subclinical bacteriuria in cats: A clinical update. Journal of Feline Medicine and Surgery, 2019","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC6826873\u002F",{"claims":802,"source":803,"licence":30,"source_url":804,"harvested_by":20,"retrieved_at":21},"confirms definition, ascending infection, E. coli, female and age risk, clinical signs, culture threshold, differentials, sporadic vs recurrent definitions, follow-up, hooded vulva correction","MSD\u002FMerck Veterinary Manual: Bacterial Cystitis in Small Animals","https:\u002F\u002Fwww.merckvetmanual.com\u002Furinary-system\u002Finfectious-diseases-of-the-urinary-system-in-small-animals\u002Fbacterial-cystitis-in-small-animals",[806,810,814,819,820,824],{"id":807,"documentId":808,"slug":809,"name":809},1871,"b2eikasc3sutxqaj056939kv","orbifloxacin",{"id":811,"documentId":812,"slug":813,"name":813},1630,"os01su5kbg4lm7w02rgqblrl","amikacin",{"id":815,"documentId":816,"slug":817,"name":818},1564,"g9i9kikubhghq3lnvllckule","amoxicillin","Amoxicillin",{"id":317,"documentId":318,"slug":319,"name":320},{"id":821,"documentId":822,"slug":823,"name":823},1654,"pv42w1el5mpbohneybfed9ib","cefadroxil",{"id":825,"documentId":826,"slug":827,"name":828},1574,"nqfxsr4fu8sgjqu61jdrk5pf","gentamicin","Gentamicin",{"id":830,"documentId":831,"slug":832,"title":833,"associated_anatomy":13,"is_zoonotic":13,"citations":13,"drugs":834},28,"jk95gm1b944or58vb1ja16sa","demodicosis","Demodicosis",[835,840,845],{"id":836,"documentId":837,"slug":838,"name":839},1609,"f4vc8qvmmko7g8p8td6lr8z0","ivermectin","Ivermectin",{"id":841,"documentId":842,"slug":843,"name":844},1613,"g0m8bo5cly2m4u0llzhrhjpf","fluralaner","Fluralaner",{"id":846,"documentId":847,"slug":848,"name":849},1614,"fy3gw0y4bc5b7xupiuw2lujf","afoxolaner","Afoxolaner",{"id":851,"documentId":852,"slug":853,"title":854,"associated_anatomy":855,"is_zoonotic":13,"citations":856,"drugs":877},97,"ot4bt8rh74mcu3hh5radrqph","dermatophytosis-ringworm","Dermatophytosis (Ringworm)","Skin (stratum corneum, epidermis), hair and hair follicles, nails and claws",[857,861,865,869,873],{"claims":858,"source":859,"licence":69,"source_url":860,"harvested_by":20,"retrieved_at":21},"genera, M. canis share in cats, attachment and invasion of stratum corneum, keratolytic enzymes, immune recognition, cortisol, clinical signs in dogs, cats and cattle, prevalence in Egypt farm animals, Saudi camels and Jordan cattle","Dermatophytosis in companion animals: A review (Veterinary World) - Europe PMC full text","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC7396343\u002FfullTextXML",{"claims":862,"source":863,"licence":69,"source_url":864,"harvested_by":20,"retrieved_at":21},"T. verrucosum in cattle, zoonotic spread, calf lesions and distribution, ectothrix arthroconidia, Egyptian prevalence and risk factors, cure within 14-28 days on topical treatment","Ringworm in calves: risk factors, improved molecular diagnosis, and therapeutic efficacy of an Aloe vera gel extract (BMC Veterinary Research) - Europe PMC full text","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC7640396\u002FfullTextXML",{"claims":866,"source":867,"licence":69,"source_url":868,"harvested_by":20,"retrieved_at":21},"worldwide zoonosis, veterinary staff infection surveys, host species, environmental spores sustaining herd infection for years, young animals at risk, asymptomatic cats, spontaneous resolution used in cattle, disinfection advice","A comparison of the existing recommendations for human and veterinary clinicians on the management and prevention of the zoonotic aspects of dermatophytosis (PLoS One) - Europe PMC full text","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC12981445\u002FfullTextXML",{"claims":870,"source":871,"licence":588,"source_url":872,"harvested_by":20,"retrieved_at":21},"T. verrucosum as principal cattle agent, persistence of arthroconidia in housing, asbestos-like crusts and lesion sites, pruritus and reduced intake, zinc and skin barrier","Serum Macro- and Trace-Element Alterations and Redox Imbalance in Cattle with Naturally Occurring Dermatophytosis (Animals, MDPI) - Europe PMC full text","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC13359616\u002FfullTextXML",{"claims":874,"source":875,"licence":101,"source_url":876,"harvested_by":20,"retrieved_at":21},"fungal genera, spread by contact with infected animals, hand washing after touching pets","CDC - About Ringworm","https:\u002F\u002Fwww.cdc.gov\u002Fringworm\u002Fabout\u002Findex.html",[878,883],{"id":879,"documentId":880,"slug":881,"name":882},1581,"qbx84ldo1uoc46l9sj7m129b","ketoconazole","Ketoconazole",{"id":884,"documentId":885,"slug":886,"name":887},1582,"lajk1pbqxkppno24055pu4al","itraconazole","Itraconazole",{"id":889,"documentId":890,"slug":891,"title":892,"associated_anatomy":893,"is_zoonotic":13,"citations":894,"drugs":908},130,"uuncwnduwpl74ffi4sz3o14n","endometritis","Endometritis","Uterus (endometrium), cervix, vagina, ovaries, hypothalamic-pituitary axis",[895,899,904],{"claims":896,"source":897,"licence":683,"source_url":898,"harvested_by":20,"retrieved_at":21},"pathophysiology (bacteria, LH suppression), sign_or_symptom (more than 21 days, diagnostic tests), differential_diagnosis (metritis), expected_prognosis (prostaglandin), epidemiology (risk factors)","Animals (2025): From Infection to Infertility: Diagnostic, Therapeutic, and Molecular Perspectives on Postpartum Metritis and Endometritis in Dairy Cows, Kasimanickam et al. (via Europe PMC, PMC12523507)","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC12523507\u002FfullTextXML",{"claims":900,"source":901,"licence":902,"source_url":903,"harvested_by":20,"retrieved_at":21},"pathophysiology (TLR4, cytokines, HPO axis), epidemiology (prevalence, risk factors), sign_or_symptom (28 days or more, cytology thresholds), differential_diagnosis (pyometra), expected_prognosis (conception figures), primary_prevention","Microorganisms (2026): Postpartum Uterine Diseases in Dairy Cattle: Integrating Microbiology, Immunology, and Reproductive Physiology, Kasimanickam et al. (via Europe PMC, PMC13515222)","Creative Commons Attribution (CC BY) license","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC13515222\u002FfullTextXML",{"claims":905,"source":906,"licence":30,"source_url":907,"harvested_by":20,"retrieved_at":21},"confirms clinical and subclinical endometritis categories, more than 200 postpartum bacterial species, E. coli and T. pyogenes as pathogens","Animal Reproduction (2018): Pathogenesis of uterine diseases in dairy cattle and implications for fertility, Drillich and Wagener","https:\u002F\u002Fwww.animal-reproduction.org\u002Farticle\u002Fdoi\u002F10.21451\u002F1984-3143-AR2018-0023",[909,913,918,919],{"id":910,"documentId":911,"slug":912,"name":912},1857,"aeu2i2yvxizaj0vi2u38rwtz","dinoprost",{"id":914,"documentId":915,"slug":916,"name":917},1624,"ex5r3o19nuxke19kyyx955gr","cloprostenol","Cloprostenol",{"id":323,"documentId":324,"slug":325,"name":326},{"id":920,"documentId":921,"slug":922,"name":922},1826,"hgfh896kdwb14wj4nhg9bblj","ticarcillin",{"id":924,"documentId":925,"slug":926,"title":927,"associated_anatomy":13,"is_zoonotic":13,"citations":13,"drugs":928},20,"whlj19034yfpz6b92okga0jk","equine-colic","Equine Colic",[929,930,935,940],{"id":437,"documentId":438,"slug":439,"name":440},{"id":931,"documentId":932,"slug":933,"name":934},1589,"tpkb6xm6mcpdesuhzsdkmae6","xylazine","Xylazine",{"id":936,"documentId":937,"slug":938,"name":939},1590,"rz89xhl4guj135pg64a8dcxn","detomidine","Detomidine",{"id":941,"documentId":942,"slug":943,"name":944},1599,"thxhnapb1uy8c1bfk5hziy4a","butorphanol","Butorphanol",{"id":946,"documentId":947,"slug":948,"title":949,"associated_anatomy":13,"is_zoonotic":13,"citations":13,"drugs":950},22,"vqjypzly6agi010iuzpzs8gi","equine-gastric-ulcer-syndrome-egus","Equine Gastric Ulcer Syndrome (EGUS)",[951],{"id":569,"documentId":570,"slug":571,"name":572},{"id":953,"documentId":954,"slug":955,"title":956,"associated_anatomy":957,"is_zoonotic":13,"citations":958,"drugs":973},241,"tbxp6e5fqqoonnsrxotuoxwb","equine-infectious-anemia-eia","Equine Infectious Anemia (EIA)","Blood (red cells, platelets), macrophages, spleen, liver, lymph nodes, lower limbs and ventral body (oedema)",[959,963,968],{"claims":960,"source":961,"licence":96,"source_url":962,"harvested_by":20,"retrieved_at":21},"agent, lifelong carriers, transmission incl. tabanids, iatrogenic and in utero, worldwide, clinical picture, incubation, lesions, differentials, serological diagnosis, no vaccine, no human risk","WOAH Terrestrial Manual 2019, Chapter 3.6.6 Equine infectious anaemia","https:\u002F\u002Fwww.woah.org\u002Ffileadmin\u002FHome\u002Feng\u002FHealth_standards\u002Ftahm\u002F3.06.06_EIA.pdf",{"claims":964,"source":965,"licence":966,"source_url":967,"harvested_by":20,"retrieved_at":21},"species, fly and human-facilitated transmission, clinical signs, no treatment or vaccine, lifelong carriers, quarantine distance, fly control, US prevalence figures","USDA APHIS - Equine Infectious Anemia","US government work, public domain (not stated on source page)","https:\u002F\u002Fwww.aphis.usda.gov\u002Flivestock-poultry-disease\u002Fequine\u002Finfectious-anemia",{"claims":969,"source":970,"licence":971,"source_url":972,"harvested_by":20,"retrieved_at":21},"pathophysiology: macrophage reservoir, restricted replication in subclinical phase, antigenic variants, thrombocytopenia as production deficit, waning episodes over a year","Equine infectious anemia virus is found in tissue macrophages during subclinical infection. J Virol 1998;72(9):7263-7269 (PMC109949)","(c) 1998 American Society for Microbiology","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC109949\u002F",[],{"id":975,"documentId":976,"slug":977,"title":978,"associated_anatomy":979,"is_zoonotic":13,"citations":980,"drugs":999},196,"p9o3jhwqdc2ugjq4pn9u8as6","exudative-epidermitis","Exudative epidermitis","Skin (epidermis, stratum spinosum, sebaceous glands), whole body surface, fluid and electrolyte balance",[981,985,990,995],{"claims":982,"source":983,"licence":509,"source_url":984,"harvested_by":20,"retrieved_at":21},"S. hyicus with S. aureus\u002FMRSA co-infection, toxin mechanism on desmoglein-1, lesion progression and sites, histopathology, early death from dehydration, susceptibility-guided treatment, hygiene and mycotoxin control, human MRSA concern","Exudative Epidermitis in Combination with Staphylococcal Pyoderma in Suckling Piglets (Antibiotics 2021, PMC8300706)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC8300706\u002F",{"claims":986,"source":987,"licence":988,"source_url":989,"harvested_by":20,"retrieved_at":21},"six exfoliative toxins, age range 3-32 days, maternal carriers and contact spread, predisposing factors, greasy exudate and crust patterns, histology, other host species and zoonotic risk, multidrug resistance, autogenous vaccines","Characterization and antimicrobial resistance of Staphylococcus hyicus from swine exudative epidermitis in South Korea (BMC Veterinary Research 2024, PMC11603994)","CC BY-NC-ND 4.0","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC11603994\u002F",{"claims":991,"source":992,"licence":993,"source_url":994,"harvested_by":20,"retrieved_at":21},"virulent toxigenic strains, lesion sequence, ages up to six weeks, dehydration and wasting, morbidity up to 90%, resistance, sow autogenous vaccine mortality 5.02% to 2.59%","Autogenous vaccination reduces antimicrobial usage and mortality rates in a herd facing severe exudative epidermitis outbreaks in weaned pigs (Veterinary Record 2018, PMC6047161)","(c) British Veterinary Association 2018, all rights reserved, no commercial use","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC6047161\u002F",{"claims":996,"source":997,"licence":526,"source_url":998,"harvested_by":20,"retrieved_at":21},"confirms agent, toxin-mediated keratinocyte damage, acute form in sucklers and chronic in weaners, greasy exudate and crusts, susceptibility-guided antimicrobials, hygiene","MSD Veterinary Manual - Exudative Epidermitis in Pigs","https:\u002F\u002Fwww.msdvetmanual.com\u002Fintegumentary-system\u002Fexudative-epidermitis\u002Fexudative-epidermitis-in-pigs",[],{"id":1001,"documentId":1002,"slug":1003,"title":1004,"associated_anatomy":1005,"is_zoonotic":13,"citations":1006,"drugs":1016},224,"s1zbm60yky5b1cr0ojqbm5c8","feline-infectious-peritonitis","Feline infectious peritonitis","Blood vessels (perivascular phlebitis), peritoneum, pleura, pericardium, mesenteric lymph nodes, liver, kidneys, spleen, intestine, pancreas, eyes (uvea), central nervous system",[1007,1011],{"claims":1008,"source":1009,"licence":69,"source_url":1010,"harvested_by":20,"retrieved_at":21},"virus classification, faecal-oral transmission and household reinfection, intestinal replication, monocyte\u002Fmacrophage replication and mutations, phlebitis and vascular leakage, pyogranulomas, risk factors (age, pedigree, males, multi-cat, stress), FIP transmission unlikely, antibody surveys in Iran and Israel, clinical signs by form, laboratory and effusion findings, definitive diagnosis, prognosis without antivirals, GS-441524 success rates, vaccine not recommended, hygiene and litter tray measures","Viruses (2023) - Feline Infectious Peritonitis: European Advisory Board on Cat Diseases Guidelines (PMC10535984)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC10535984\u002F",{"claims":1012,"source":1013,"licence":1014,"source_url":1015,"harvested_by":20,"retrieved_at":21},"up to 12% of FCoV-infected cats in multi-cat environments develop FIP, stress as a risk factor, differential diagnosis table (septic effusion, lymphoma, toxoplasmosis, pancreatitis, lymphocytic cholangitis, congestive heart failure, mycobacteriosis, trauma) with distinguishing features, neurological and cardiac signs","Journal of Feline Medicine and Surgery (2022) - 2022 AAFP\u002FEveryCat Feline Infectious Peritonitis Diagnosis Guidelines (PMC10812230)","(c) The Author(s) 2022; licence terms not captured beyond copyright line","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC10812230\u002F",[],{"id":1018,"documentId":1019,"slug":1020,"title":1021,"associated_anatomy":13,"is_zoonotic":13,"citations":13,"drugs":1022},42,"hpkfrmanp8skd1qp7f56utop","feline-leukemia-virus-felv-infection","Feline Leukemia Virus (FeLV) Infection",[],{"id":1024,"documentId":1025,"slug":1026,"title":1027,"associated_anatomy":13,"is_zoonotic":13,"citations":13,"drugs":1028},14,"jgf91cc3778qed1vx0gevtvq","feline-lower-urinary-tract-disease-flutd","Feline Lower Urinary Tract Disease (FLUTD)",[1029,1034,1035],{"id":1030,"documentId":1031,"slug":1032,"name":1033},1598,"ndpkigsyxqpo210tzoh59ex9","buprenorphine","Buprenorphine",{"id":442,"documentId":443,"slug":444,"name":445},{"id":1036,"documentId":1037,"slug":1038,"name":1039},146,"ce6wsi6x6gw1o4r1r07g1v26","prazosin","Prazosin",{"id":1041,"documentId":1042,"slug":1043,"title":1044,"associated_anatomy":1045,"is_zoonotic":13,"citations":1046,"drugs":1064},188,"xzg7actze4xw6lc9kyh513m6","flea-infestation","Flea infestation","Skin and hair coat (lumbosacral area, tail base, thighs), blood (anaemia), gastrointestinal tract (tapeworm)",[1047,1052,1057,1061],{"claims":1048,"source":1049,"licence":1050,"source_url":1051,"harvested_by":20,"retrieved_at":21},"species, life cycle and durations, larval habitat, host range, flea rickettsiosis, tapeworm, plague, bite appearance, allergic itch, control methods","University of California Statewide IPM Program - Pest Notes: Fleas","(c) 1996-2026 Regents of the University of California","https:\u002F\u002Fipm.ucanr.edu\u002FPMG\u002FPESTNOTES\u002Fpn7419.html",{"claims":1053,"source":1054,"licence":1055,"source_url":1056,"harvested_by":20,"retrieved_at":21},"species, anaemia, FAD mechanism and signs in dogs and cats, pathogens transmitted, integrated control incl. adulticides and IGRs, year-round prevention","Fleas infesting pets in the era of emerging extra-intestinal nematodes. Parasit Vectors 2013 (PMC3631128)","CC BY 2.0","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC3631128\u002F",{"claims":1058,"source":1059,"licence":69,"source_url":1060,"harvested_by":20,"retrieved_at":21},"prevalence, seasonality, age and deprivation risk factors, zoonotic Bartonella and Rickettsia felis","Seasonality and other risk factors for flea infestations in domestic dogs and cats. Med Vet Entomol 2023 (PMC10946788)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC10946788\u002F",{"claims":1062,"source":1063,"licence":69,"source_url":70,"harvested_by":20,"retrieved_at":21},"differential diagnosis: FAD lesion distribution vs atopic dermatitis, flea combing and control trial, mange, cheyletiellosis, lice, food reaction","Canine atopic dermatitis: detailed guidelines for diagnosis and allergen identification. BMC Vet Res 2015 (PMC4531508)",[1065,1069,1073,1074,1075,1079,1083,1087],{"id":1066,"documentId":1067,"slug":1068,"name":1068},1876,"dwkdl2k0sanaxfzy1hi7jibb","sarolaner",{"id":1070,"documentId":1071,"slug":1072,"name":1072},1877,"zpnnja10hmounc1ahp5n998e","selamectin",{"id":846,"documentId":847,"slug":848,"name":849},{"id":841,"documentId":842,"slug":843,"name":844},{"id":1076,"documentId":1077,"slug":1078,"name":1078},1718,"i5db8ue20r6g0dpuvxt8pkpq","imidacloprid",{"id":1080,"documentId":1081,"slug":1082,"name":1082},1734,"tuucyup4tpuevj4wt9dyomm2","lotilaner",{"id":1084,"documentId":1085,"slug":1086,"name":1086},1757,"rgnkd9re6e4ksgwj76jvvsh9","nitenpyram",{"id":1088,"documentId":1089,"slug":1090,"name":1090},1807,"kwwddah1n7nra9gjng1kw9ss","spinosad",{"id":1092,"documentId":1093,"slug":1094,"title":1095,"associated_anatomy":1096,"is_zoonotic":13,"citations":1097,"drugs":1110},129,"rr60w0pjlijbwchazmoe67qs","foot-rot","Foot Rot","Interdigital skin and subcutis, coronary band, hoof horn, coffin joint and bone, navicular bone, tendons and tendon sheaths",[1098,1102,1106],{"claims":1099,"source":1100,"licence":30,"source_url":1101,"harvested_by":20,"retrieved_at":21},"pathophysiology (F. necrophorum, trauma and wetness, deep extension), epidemiology (all ages, wet conditions), sign_or_symptom, differential_diagnosis (cattle), expected_prognosis, primary_prevention","University of Tennessee Beef and Forage Center: Livestock Health: Foot Rot - Prevention and Treatment (Strickland, 2021)","https:\u002F\u002Futbeef.tennessee.edu\u002Flivestock-health-foot-rot-prevention-and-treatment\u002F",{"claims":1103,"source":1104,"licence":683,"source_url":1105,"harvested_by":20,"retrieved_at":21},"pathophysiology (bacterial isolates), epidemiology (incidence below 5%, outbreaks 32%), sign_or_symptom (early symmetric swelling, septic complications), expected_prognosis (early vs delayed treatment)","Animals (2023): Clinical Efficacy of a Single Intravenous Regional Limb Perfusion with Marbofloxacin versus Ceftiofur Sodium to Treat Acute Interdigital Phlegmon in Dairy Cows (via Europe PMC, PMC10215901)","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC10215901\u002FfullTextXML",{"claims":1107,"source":1108,"licence":683,"source_url":1109,"harvested_by":20,"retrieved_at":21},"pathophysiology, epidemiology, sign_or_symptom and differential_diagnosis for ovine footrot","Animals (2021): Prevalence of Dichelobacter nodosus and Ovine Footrot in German Sheep Flocks, Storms et al. (via Europe PMC, PMC8069605)","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC8069605\u002FfullTextXML",[1111,1116,1117,1118,1119],{"id":1112,"documentId":1113,"slug":1114,"name":1115},1571,"ol3t9izccd7ldu0y6p8q4xwp","ceftiofur","Ceftiofur",{"id":432,"documentId":433,"slug":434,"name":435},{"id":139,"documentId":140,"slug":141,"name":142},{"id":334,"documentId":335,"slug":336,"name":336},{"id":338,"documentId":339,"slug":340,"name":340},{"id":1121,"documentId":1122,"slug":1123,"title":1124,"associated_anatomy":1125,"is_zoonotic":13,"citations":1126,"drugs":1144},106,"jwewhy9qfbgasicd3459tmwv","fowl-cholera","Fowl cholera","Blood, liver, spleen, lungs and air sacs, heart and pericardium, joints and tendon sheaths, foot pads, wattles, conjunctiva, middle ear, meninges",[1127,1131,1136,1140],{"claims":1128,"source":1129,"licence":96,"source_url":1130,"harvested_by":20,"retrieved_at":21},"agent, acute and chronic forms, age over 16 weeks, signs, lesions, differentials, diagnosis, vaccines, not zoonotic","WOAH Terrestrial Manual 2021, Chapter 3.3.9 Fowl cholera","https:\u002F\u002Fwww.woah.org\u002Ffileadmin\u002FHome\u002Ffr\u002FHealth_standards\u002Ftahm\u002F3.03.09_FOWL_CHOLERA.pdf",{"claims":1132,"source":1133,"licence":1134,"source_url":1135,"harvested_by":20,"retrieved_at":21},"all poultry susceptible, age over six weeks, shedding and carriers, dark wattles, antibiotic treatment, sanitation, rodent control, vaccination advice","Small and Backyard Poultry Extension (University of Kentucky, J. Jacob) - Fowl Cholera in Poultry","(c) all rights reserved","https:\u002F\u002Fpoultry.extension.org\u002Farticles\u002Fpoultry-health\u002Fcommon-poultry-diseases\u002Ffowl-cholera-in-poultry\u002F",{"claims":1137,"source":1138,"licence":69,"source_url":1139,"harvested_by":20,"retrieved_at":21},"capsule and LPS as virulence factors, liver and spleen multiplication, bacterin vs live vaccine protection","Toxins (2017) - The Myriad Properties of Pasteurella multocida Lipopolysaccharide (PMC5577588, Europe PMC full text)","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC5577588\u002FfullTextXML",{"claims":1141,"source":1142,"licence":69,"source_url":1143,"harvested_by":20,"retrieved_at":21},"commensal carriage and stress, clinical signs, chick mortality estimate, antimicrobial resistance","International Journal of Microbiology (2025) - P. multocida from breeder chickens suspected of fowl cholera, Gondar, Ethiopia (PMC12037256, Europe PMC full text)","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC12037256\u002FfullTextXML",[],{"id":1146,"documentId":1147,"slug":1148,"title":1149,"associated_anatomy":1150,"is_zoonotic":13,"citations":1151,"drugs":1165},127,"il3514s7lr53qm33qzxnozhz","fowl-typhoid","Fowl typhoid","Liver, spleen, bone marrow, intestines, heart and pericardium, ovary and oviduct, blood",[1152,1156,1160],{"claims":1153,"source":1154,"licence":96,"source_url":1155,"harvested_by":20,"retrieved_at":21},"pathophysiology (agent, carrier sites), epidemiology (distribution, red mites, zoonotic risk), sign_or_symptom (lesions), differential_diagnosis (pullorum, other septicaemias, serology), primary_prevention (9R vaccine limits, biosecurity)","WOAH Terrestrial Manual 2018, Chapter 3.3.11: Fowl typhoid and Pullorum disease","https:\u002F\u002Fwww.woah.org\u002Ffileadmin\u002FHome\u002Feng\u002FHealth_standards\u002Ftahm\u002F3.03.11_FOWL_TYPHOID.pdf",{"claims":1157,"source":1158,"licence":902,"source_url":1159,"harvested_by":20,"retrieved_at":21},"pathophysiology (oral route, lack of flagella, survival in liver and spleen macrophages), expected_prognosis (multidrug resistance)","Antibiotics (2023): Salmonella enterica Serovar Gallinarum Biovars Pullorum and Gallinarum in Poultry: Review of Pathogenesis, Antibiotic Resistance, Diagnosis and Control in the Genomic Era, Farhat et al. (PMC10812584)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC10812584\u002F",{"claims":1161,"source":1162,"licence":1163,"source_url":1164,"harvested_by":20,"retrieved_at":21},"confirms host range, transmission, breed susceptibility, signs, lesions, mortality range, treatment limits and prevention","Center for Food Security and Public Health, Iowa State University: Fowl Typhoid and Pullorum Disease factsheet (January 2019)","(c) 2003-2019 CFSPH; no reuse grant, used for confirmation only","https:\u002F\u002Fwww.cfsph.iastate.edu\u002FFactsheets\u002Fpdfs\u002Ffowl_typhoid.pdf",[],{"id":1167,"documentId":1168,"slug":1169,"title":1170,"associated_anatomy":1171,"is_zoonotic":13,"citations":1172,"drugs":1181},214,"j1tpz2ahyggy38gxnfg60lnp","furunculosis","Furunculosis","Skin (boils, ulcers, darkening)",[1173,1177],{"claims":1174,"source":1175,"licence":30,"source_url":1176,"harvested_by":20,"retrieved_at":21},"epidemiology (susceptible species, hatchery disease, stress, bird spread, atypical strains in other fish, no human risk), acute and chronic signs, carriers and relapse, antibiotic treatment, prevention (biosecurity, disinfection, vaccination, resistant strains, testing before stocking)","New Jersey Department of Environmental Protection, Division of Fish and Wildlife - Questions and Answers Concerning Furunculosis (2014)","https:\u002F\u002Fwww.nj.gov\u002Fdep\u002Ffgw\u002Fpdf\u002F2014\u002Ffurunculosis_q-a.pdf",{"claims":1178,"source":1179,"licence":683,"source_url":1180,"harvested_by":20,"retrieved_at":21},"agent and subspecies, typical versus atypical definition, first isolation, furuncle-like swelling becoming ulcerative, host range and reservoirs, species susceptibility, 37 C growth limit, human septicaemia and endocarditis reports, laboratory differentiation, 100% to 10% mortality in phage study, antimicrobial resistance, vaccination failure","Park SY et al. (2020) Recent Insights into Aeromonas salmonicida and Its Bacteriophages in Aquaculture: A Comprehensive Review, Journal of Microbiology and Biotechnology, via PubMed Central","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC9728264\u002F",[],{"id":1183,"documentId":1184,"slug":1185,"title":1186,"associated_anatomy":1187,"is_zoonotic":13,"citations":1188,"drugs":1210},215,"r8wy6h23fql7lsyikt12hn9k","generalized-demodicosis","Generalized demodicosis","Skin, hair follicles, sebaceous glands, stratum corneum, feet (pododermatitis), ear canals (cats), cell-mediated immune system",[1189,1193,1198,1202,1206],{"claims":1190,"source":1191,"licence":614,"source_url":1192,"harvested_by":20,"retrieved_at":21},"commensal status, transmission from dam, juvenile genetic immune dysfunction versus adult acquired compromise, prevalence, age definitions, breed associations","O'Neill DG et al. (2020) Juvenile-onset and adult-onset demodicosis in dogs in the UK: prevalence and breed associations, Journal of Small Animal Practice, via PubMed Central","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC7003809\u002F",{"claims":1194,"source":1195,"licence":1196,"source_url":1197,"harvested_by":20,"retrieved_at":21},"excess proliferation of commensal mites, generalized form life-threatening if untreated, clinical signs, deep skin scrapings, secondary infection, treatment classes","Perego R et al. (2019) Critically appraised topic for the most effective and safe treatment for canine generalised demodicosis, BMC Veterinary Research, via PubMed Central","not stated on source page (BMC open access article)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC6323682\u002F",{"claims":1199,"source":1200,"licence":30,"source_url":1201,"harvested_by":20,"retrieved_at":21},"D. canis versus D. cornei location and detection method, signs incl. cellulitis, cytology-confirmed pyoderma","Sivajothi S, Sudhakara Reddy B, Rayulu VC (2015) Demodicosis caused by Demodex canis and Demodex cornei in dogs, Journal of Parasitic Diseases, via PubMed Central","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC4675583\u002F",{"claims":1203,"source":1204,"licence":30,"source_url":1205,"harvested_by":20,"retrieved_at":21},"isoxazoline efficacy, D. injai, endocrine disease association","Defalque VE (2022) Isoxazolines for treating canine demodicosis, sarcoptic mange (scabies), and lice infestation, Canadian Veterinary Journal, via PubMed Central","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC9558591\u002F",{"claims":1207,"source":1208,"licence":211,"source_url":1209,"harvested_by":20,"retrieved_at":21},"confirms transmission while nursing, non-contagious in dogs, hereditary predisposition, generalized signs and pododermatitis, adult-onset associations, diagnosis, treatment classes and negative-scraping endpoint, no corticosteroids, no breeding; feline species, signs, associations, dermatophyte culture","MSD Veterinary Manual - Mange in Dogs and Cats","https:\u002F\u002Fwww.merckvetmanual.com\u002Fintegumentary-system\u002Fmange\u002Fmange-in-dogs-and-cats",[1211],{"id":1212,"documentId":1213,"slug":1214,"name":1214},1631,"bo5fbgdry9sdy8zss47kh8zj","amitraz",{"id":1216,"documentId":1217,"slug":1218,"title":1219,"associated_anatomy":13,"is_zoonotic":13,"citations":13,"drugs":1220},52,"st5ne35j3i1uykvq3pgh1qxj","glaucoma","Glaucoma",[1221],{"id":1222,"documentId":1223,"slug":1224,"name":1225},152,"nzsskm76yffussb56xuuf9m9","latanoprost","Latanoprost",{"id":1227,"documentId":1228,"slug":1229,"title":1230,"associated_anatomy":1231,"is_zoonotic":13,"citations":1232,"drugs":1242},185,"xg8qxlf8s3h1ym0ycw7d9w8n","haemorrhagic-septicaemia-pasteurella-multocida-serotypes-6b-and","Haemorrhagic septicaemia (Pasteurella multocida serotypes 6:b and 6:e)","Blood and vascular system (septicaemia), subcutaneous tissue of throat, neck and brisket, pharyngeal and cervical lymph nodes, respiratory tract and lungs, serosal surfaces, heart, gastrointestinal tract",[1233,1237],{"claims":1234,"source":1235,"licence":96,"source_url":1236,"harvested_by":20,"retrieved_at":21},"aetiology and serotypes, hosts, MENA serotype distribution, transmission, carriers, seasonality, incubation, clinical course, lesions, endotoxic shock, differentials, fatality, treatment timing, vaccines, public health","WOAH - Technical Disease Card: Haemorrhagic septicaemia (updated January 2021)","https:\u002F\u002Fwww.woah.org\u002Ffileadmin\u002FHome\u002Feng\u002FAnimal_Health_in_the_World\u002Fdocs\u002Fpdf\u002FDisease_cards\u002FHAEMORRHAGIC_SEPTICEMIA.pdf",{"claims":1238,"source":1239,"licence":1240,"source_url":1241,"harvested_by":20,"retrieved_at":21},"confirms agent, host range incl. camels and saiga, carriage in tonsils and stress shedding, clinical signs, necropsy lesions, early antibiotics, fatality, vaccination, stamping out, no human B:2\u002FE:2 cases","Center for Food Security and Public Health (Iowa State) - Hemorrhagic Septicemia factsheet (2019)","(c) 2005-2019 CFSPH; no reuse grant - used for confirmation only","https:\u002F\u002Fwww.cfsph.iastate.edu\u002FFactsheets\u002Fpdfs\u002Fhemorrhagic_septicemia.pdf",[],{"id":1244,"documentId":1245,"slug":1246,"title":1247,"associated_anatomy":1248,"is_zoonotic":13,"citations":1249,"drugs":1259},220,"u2uuu0xzrwn53fvukuawockq","heartwater","Heartwater","Vascular endothelium, brain, pericardium and heart, pleural cavity and lungs, mediastinal and bronchial lymph nodes, spleen, intestine",[1250,1254],{"claims":1251,"source":1252,"licence":96,"source_url":1253,"harvested_by":20,"retrieved_at":21},"agent and taxonomy, Amblyomma vectors, distribution, host susceptibility, mortality up to 90%, carriers, suspected human cases, incubation, clinical signs, necropsy lesions, differential diagnosis, brain smear and PCR diagnosis, serology limits, vaccine status, import precautions; human infection only suspected (contradicts review)","WOAH Terrestrial Manual 2018, Chapter 3.1.9 Heartwater","https:\u002F\u002Fwww.woah.org\u002Ffileadmin\u002FHome\u002Feng\u002FHealth_standards\u002Ftahm\u002F3.01.09_HEARTWATER.pdf",{"claims":1255,"source":1256,"licence":1257,"source_url":1258,"harvested_by":20,"retrieved_at":21},"biphasic developmental cycle, endothelial damage causing congestion, hydrothorax and hydropericardium, vectors incl. R. microplus in West Africa, threat to American mainland, mortality up to 90% in naive animals, early treatment with sulfonamides and tetracyclines, experimental vaccines limited by diversity; states human cases reported (contradicts WOAH)","Microbiology (2023) - Microbe Profile: Ehrlichia ruminantium - stealthy as it goes (PMC10710844)","Creative Commons Attribution License (open access)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC10710844\u002F",[],{"id":1261,"documentId":1262,"slug":1263,"title":1264,"associated_anatomy":1265,"is_zoonotic":13,"citations":1266,"drugs":1283},98,"qcou4qqwyb4oj4anf83tfj1o","heartworm-disease","Heartworm Disease","Pulmonary arteries, lungs, right ventricle and right atrium, vena cava, heart",[1267,1271,1275,1279],{"claims":1268,"source":1269,"licence":30,"source_url":1270,"harvested_by":20,"retrieved_at":21},"agent, hosts, mosquito development time, maturation, worm size, caval syndrome, signs in dogs and cats, tests, no approved cat treatment, prevention, not transmissible from pets","US FDA - Keep the Worms Out of Your Pet's Heart! The Facts about Heartworm Disease","https:\u002F\u002Fwww.fda.gov\u002Fanimal-veterinary\u002Fanimal-health-literacy\u002Fkeep-worms-out-your-pets-heart-facts-about-heartworm-disease",{"claims":1272,"source":1273,"licence":988,"source_url":1274,"harvested_by":20,"retrieved_at":21},"pathology, Wolbachia, cats, antigen test timing, treatment approach, macrocyclic lactone prevention, resistance, human nodules, feline asthma differential, other filariae","International Journal for Parasitology: Drugs and Drug Resistance (2021) - Heartworm disease: overview, intervention, and industry perspective (PMC8163879, Europe PMC full text)","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC8163879\u002FfullTextXML",{"claims":1276,"source":1277,"licence":69,"source_url":1278,"harvested_by":20,"retrieved_at":21},"pulmonary hypertension and right ventricular change in dogs vs cats, HARD","Parasites and Vectors (2017) - Effect of heartworm disease and HARD on the right ventricle of cats (PMC5688429, Europe PMC full text)","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC5688429\u002FfullTextXML",{"claims":1280,"source":1281,"licence":69,"source_url":1282,"harvested_by":20,"retrieved_at":21},"regional prevalence, countries, vectors, zoonotic status, D. repens distinction","Parasitology (2025) - A meta-analysis on Dirofilaria immitis and D. repens in countries of North Africa and the Middle East (PMC12186096, Europe PMC full text)","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC12186096\u002FfullTextXML",[1284,1285,1289,1294,1299],{"id":1070,"documentId":1071,"slug":1072,"name":1072},{"id":1286,"documentId":1287,"slug":1288,"name":1288},1688,"tqh96aplfn3qrhr4l2y4enrp","diethylcarbamazine",{"id":1290,"documentId":1291,"slug":1292,"name":1293},1610,"vt5y5l73bvbptwr7sdb4a8oz","moxidectin","Moxidectin",{"id":1295,"documentId":1296,"slug":1297,"name":1298},1567,"qz64jsk6gakygq5c26u8crhn","doxycycline","Doxycycline",{"id":50,"documentId":51,"slug":52,"name":53},{"id":1301,"documentId":1302,"slug":1303,"title":1304,"associated_anatomy":1305,"is_zoonotic":13,"citations":1306,"drugs":1338},223,"j53rvl3a27hkh3nr08rnu9lt","hemophilia-a","Hemophilia A","Blood coagulation system (intrinsic pathway, factor VIII), joints, subcutaneous and muscle tissue, oral cavity and gums, nasal cavity, thoracic cavity, gastrointestinal tract",[1307,1312,1317,1321,1325,1330,1334],{"claims":1308,"source":1309,"licence":1310,"source_url":1311,"harvested_by":20,"retrieved_at":21},"factor VIII cofactor role and defective thrombin formation, X-linked inheritance, most common inherited bleeding disorders in dogs, Chapel Hill Irish Setter colony since 1947, severity below 1% and inverse relation to factor VIII level, replacement with plasma-derived and recombinant products","ILAR Journal (2009) - Protein Replacement Therapy and Gene Transfer in Canine Models of Hemophilia A, Hemophilia B, von Willebrand Disease, and Factor VII Deficiency (PMC3101868, author manuscript)","not stated on source page (author manuscript in PMC)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC3101868\u002F",{"claims":1313,"source":1314,"licence":1315,"source_url":1316,"harvested_by":20,"retrieved_at":21},"intron 22 inversion and nonsense mutation, joint and soft-tissue bleeding unresponsive to vitamin K, prolonged aPTT with normal PT and normal von Willebrand factor, carrier daughters, PCR genotyping of offspring, cost of treatment","Comparative Medicine (2016) - Severe Hemophilia A in a Male Old English Sheep Dog with a C to T Transition that Created a Premature Stop Codon in Factor VIII (PMC5073066)","(c) American Association for Laboratory Animal Science; no open licence stated","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC5073066\u002F",{"claims":1318,"source":1319,"licence":750,"source_url":1320,"harvested_by":20,"retrieved_at":21},"clinical indistinguishability from haemophilia B, bleeding episodes in two owned dogs (haematomas, haemarthrosis, suspected haemothorax, oral bleeding, epistaxis, melaena, post-surgical bleeding, anaemia), littermates euthanised at 7 weeks, no family history, cryoprecipitate and plasma support, normal FIX and raised vWF","PLoS One (2016) - Successful Phenotype Improvement following Gene Therapy for Severe Hemophilia A in Privately Owned Dogs (PMC4807047)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC4807047\u002F",{"claims":1322,"source":1323,"licence":1310,"source_url":1324,"harvested_by":20,"retrieved_at":21},"untreated bleeding severe, debilitating and can be fatal; 4-6 spontaneous bleeds per year; prophylaxis and gene transfer reduce bleeding frequency without complete correction","Haemophilia (2010) - Prevention of spontaneous bleeding in dogs with haemophilia A and haemophilia B (PMC3101869, author manuscript)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC3101869\u002F",{"claims":1326,"source":1327,"licence":1328,"source_url":1329,"harvested_by":20,"retrieved_at":21},"inherited disorders most common in dogs, rare in horses and cattle, cats show signs mainly after surgery; vWD and haemophilia A most common inherited; acquired disorders (IMTP, rodenticide, liver disease, DIC) most common in practice and in older animals","eClinpath (Cornell University College of Veterinary Medicine) - Hemostasis: Disorders","(c) eClinpath; no open licence stated","https:\u002F\u002Feclinpath.com\u002Fhemostasis\u002Fdisorders\u002F",{"claims":1331,"source":1332,"licence":1328,"source_url":1333,"harvested_by":20,"retrieved_at":21},"secondary haemostatic defects cause ecchymoses, haematomas and bleeding into body cavities and joints; primary defects cause mucosal bleeding and petechiae","eClinpath (Cornell University College of Veterinary Medicine) - Hemostasis: Clinical signs","https:\u002F\u002Feclinpath.com\u002Fhemostasis\u002Fclinical-signs\u002F",{"claims":1335,"source":1336,"licence":30,"source_url":1337,"harvested_by":20,"retrieved_at":21},"species: factor VIII deficiency reported in a cat (title), with cited reports of haemophilia A in cats","Canadian Veterinary Journal (1987) - Factor VIII Deficiency in a Cat (PMC1680506; bibliographic record and reference list only, full text is a scanned PDF)","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC1680506\u002F",[],{"id":1340,"documentId":1341,"slug":1342,"title":1343,"associated_anatomy":1344,"is_zoonotic":13,"citations":1345,"drugs":1354},131,"d83vi4uvk7l6n9bu82ab49vu","hemorrhagic-enteritis","Hemorrhagic enteritis","Spleen, small intestine and lamina propria, macrophages and B lymphocytes, immune system",[1346,1350],{"claims":1347,"source":1348,"licence":902,"source_url":1349,"harvested_by":20,"retrieved_at":21},"pathophysiology, epidemiology (ages, maternal antibody, virus survival, distribution), sign_or_symptom, differential_diagnosis, expected_prognosis (5-15%, up to 60%), primary_prevention (live vaccines)","Pathogens (2024): Turkey Hemorrhagic Enteritis (THE): A Short Overview, Musa et al. (via Europe PMC, PMC11356975)","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC11356975\u002FfullTextXML",{"claims":1351,"source":1352,"licence":30,"source_url":1353,"harvested_by":20,"retrieved_at":21},"epidemiology (introduction on clothing and equipment), sign_or_symptom (depression, bloody droppings), expected_prognosis (no treatment), primary_prevention (vaccine, sanitation, biosecurity)","Small and Backyard Poultry (poultry.extension.org), University of Kentucky: Hemorrhagic Enteritis and Marble Spleen Disease in Poultry (Jacob)","https:\u002F\u002Fpoultry.extension.org\u002Farticles\u002Fpoultry-health\u002Fcommon-poultry-diseases\u002Fhemorrhagic-enteritis-and-marble-spleen-disease-in-poultry\u002F",[],{"id":1356,"documentId":1357,"slug":1358,"title":1359,"associated_anatomy":1360,"is_zoonotic":13,"citations":1361,"drugs":1376},96,"hmt4qgnggo33ma2lny55rkmq","hyperthyroidism","Hyperthyroidism","Thyroid glands, heart (left ventricle and atrium), blood vessels and blood pressure, kidneys, gastrointestinal tract, skin and coat, whole-body metabolism",[1362,1367,1371],{"claims":1363,"source":1364,"licence":1365,"source_url":1366,"harvested_by":20,"retrieved_at":21},"pathophysiology (adenoma, rare carcinoma, possible dietary and chemical contributors), epidemiology (age), sign_or_symptom, expected_prognosis (generally good)","Cornell Feline Health Center, Cornell University College of Veterinary Medicine: Hyperthyroidism in Cats","Cornell University (c)2026; not otherwise stated","https:\u002F\u002Fwww.vet.cornell.edu\u002Fdepartments-centers-and-institutes\u002Fcornell-feline-health-center\u002Fhealth-information\u002Ffeline-health-topics\u002Fhyperthyroidism-cats",{"claims":1368,"source":1369,"licence":902,"source_url":1370,"harvested_by":20,"retrieved_at":21},"pathophysiology (cardiac mechanisms, reversibility), epidemiology (most common endocrine disorder, 10%), sign_or_symptom, differential_diagnosis, expected_prognosis (86% to 12%, survival by treatment)","Veterinary Sciences (2025): Cardiac Abnormalities in Feline Hyperthyroidism, van Zuiden et al. (via Europe PMC, PMC12737610)","https:\u002F\u002Fwww.ebi.ac.uk\u002Feuropepmc\u002Fwebservices\u002Frest\u002FPMC12737610\u002FfullTextXML",{"claims":1372,"source":1373,"licence":1374,"source_url":1375,"harvested_by":20,"retrieved_at":21},"epidemiology (emergence, T4 screening, early diagnosis, comorbidities)","Journal of Feline Medicine and Surgery (2016): Dispelling myths and providing a way forward for the hyperthyroid cat, Carney and Ward (PMC11132201)","(c) The Author(s) 2016","https:\u002F\u002Fpmc.ncbi.nlm.nih.gov\u002Farticles\u002FPMC11132201\u002F",[1377,1382],{"id":1378,"documentId":1379,"slug":1380,"name":1381},1622,"lh2cq47h6jfdn465rds72mq1","methimazole","Methimazole",{"id":554,"documentId":555,"slug":556,"name":557},{"pagination":1384,"applied":1388,"facets":1390},{"page":1385,"pageSize":437,"pageCount":1386,"total":1387},1,3,112,{"sort":1389},"alpha",{"species":1391,"zoonotic":1398},[1392,1395],{"slug":1393,"label":1394,"label_ar":13,"count":1385},"african-buffalo","African buffalo",{"slug":1396,"label":1397,"label_ar":13,"count":1385},"alpaca","Alpaca",[1399],{"slug":1400,"label":1400,"count":1401},"true",6]