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An index of diabetic control, Clinical Chemistry Acta, 127, 87, 10.1016\u002F0009-8981(83)90078-5\nKaneko, 1997\nImamura, 1989, An enzymatic method using 1,2-diglyceride for pancreatic lipase test in serum, Clinical Chemistry, 35, 1126\nLadenson, 1974, Serum versus heparinized plasma for 18 common chemistry tests. Is serum the appropriate specimen?, American Journal of Clinical Pathology, 62, 545, 10.1093\u002Fajcp\u002F62.4.545\nMashige, 1976, A simple and sensitive assay of total serum bile acids, Clinical Chimica Acta, 70, 79, 10.1016\u002F0009-8981(76)90007-3\nMathieu, 1982, Societ francaise de Biologie Clinique. Comisin enzymologie. Recommandations pour la mesure de la concentration catalytique des phosphatases alcalines dans le srum humain a 30 °C, Annales de Biologie Clinique, 40, 111\nMc Geachin, 1957, The effect of blood anticoagulants on serum and plasma activities, Clinica Chimica Acta, 2, 75, 10.1016\u002F0009-8981(57)90028-1\nMyers, 1972, The effect of EDTA-anticoagulant on enzyme activity and pH of blood, Southwestern Veterinarian, 287\nNCCLS document H21-A3. 1998. Collection, Transport and Processing of Blood Specimens for Coagulation Testing and General Performance of Coagulation Assays: Approved Guidelines. 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Oncol., 1, 200, 10.1111\u002Fj.1476-5810.2003.00025.x\nEkstrom-Smedby, 2006, Epidemiology and etiology of non-Hodgkin lymphoma—a review, Acta Oncol., 45, 258, 10.1080\u002F02841860500531682\nErnst, 2016, Multicentric lymphoma in 411 dogs — an epidemiological study, Tierarztl Prax Ausg K Kleintiere Heimtiere, 44, 245\nFerlay, 2015, Cancer incidence and mortality worldwide: sources, methods and major patterns in GLOBOCAN 2012, Int. J. Cancer, 136, 359, 10.1002\u002Fijc.29210\nFisher, 2004, The epidemiology of non-Hodgkin's lymphoma, Oncogene, 23, 6524, 10.1038\u002Fsj.onc.1207843\nFitzmaurice, 2017, Global, regional, and national cancer incidence, mortality, years of life lost, years lived with disability, and disability-adjusted life-years for 32 cancer groups, 1990 to 2015: a systematic analysis for the global burden of disease study, JAMA Oncol., 3, 524, 10.1001\u002Fjamaoncol.2016.5688\nGavazza, 2001, Association between canine malignant lymphoma, living in industrial areas, and use of chemicals by dog owners, J. Vet. Intern. Med., 15, 190, 10.1111\u002Fj.1939-1676.2001.tb02310.x\nHayes, 1981, Bladder cancer in pet dogs: a sentinel for environmental cancer?, Am. J. Epidemiol., 114, 229, 10.1093\u002Foxfordjournals.aje.a113186\nIto, 2014, Canine lymphoma as a comparative model for human non-Hodgkin lymphoma: recent progress and applications, Vet. Immunol. Immunopathol., 159, 192, 10.1016\u002Fj.vetimm.2014.02.016\nKane, 2012, Menstrual and reproductive factors, and hormonal contraception use: associations with non-Hodgkin lymphoma in a pooled analysis of InterLymph case-control studies, Ann. Oncol., 23, 2362, 10.1093\u002Fannonc\u002Fmds171\nKelsey, 1998, Epidemiologic studies of risk factors for cancer in pet dogs, Epidemiol. Rev., 20, 204, 10.1093\u002Foxfordjournals.epirev.a017981\nKimura, 2011, Morphology and immunophenotypes of canine lymphomas: a survey from the Service of Animal Pathology, School of Veterinary Medicine and Animal Science, University of São Paulo, Brazil, Braz. J. Vet. Pathol., 4, 199\nMarconato, 2013, The dog as a possible animal model for human non-Hodgkin lymphoma: a review, Hematol. Oncol., 31, 1, 10.1002\u002Fhon.2017\nMomanyi, 2016, One Health and cancer: a comparative study of human and canine cancers in Nairobi, Int. J. One Health, 2, 42, 10.14202\u002FIJOH.2016.42-57\nMuller, 2005, Epidemiology of non-Hodgkin’s lymphoma (NHL): trends, geographic distribution, and etiology, Ann. Hematol., 84, 1, 10.1007\u002Fs00277-004-0939-7\nPawlak, 2016, Immunophenotypic characterization of canine malignant lymphoma: a retrospective study of cases diagnosed in Poland Lower Silesia, over the period 2011–2013, Vet. Comp. Oncol., 14, 52, 10.1111\u002Fvco.12112\nPoggi, 2015, Flow cytometric evaluation of ki67 for the determination of malignancy grade in canine lymphoma, Vet. Comp. Oncol., 13, 475, 10.1111\u002Fvco.12078\nPonce, 2004, Prognostic significance of morphological subtypes in canine malignant lymphomas during chemotherapy, Vet. J., 167, 158, 10.1016\u002Fj.tvjl.2003.10.009\nPonce, 2010, A morphological study of 608 cases of canine malignant lymphoma in France with a focus on comparative similarities between canine and human lymphoma morphology, Vet. Pathol., 47, 414, 10.1177\u002F0300985810363902\nPriester, 1967, Canine lymphoma: relative risk in the boxer breed, J. Natl. Cancer Inst., 39, 833\nReif, 2011, Animal sentinels for environmental and public health, Public Health Rep., 126, 50, 10.1177\u002F00333549111260S108\nReif, 1971, The environmental distribution of canine respiratory tract neoplasms, Arch. Environ. Health, 22, 136, 10.1080\u002F00039896.1971.10665823\nRichards, 2015, Man’s best friend: what can pet dogs teach us about non-Hodgkin’s lymphoma?, Immunol. Rev., 263, 173, 10.1111\u002Fimr.12238\nRuple, 2016, Differences in the geographic distribution of lymphoma subtypes in Golden retrievers in the USA, Vet. Comp. Oncol., 15, 1590, 10.1111\u002Fvco.12258\nSapierzyński, 2010, Pratical aspects of immunocytochemistry in canine lymphomas, Pol. J. Vet. Sci., 13, 661, 10.2478\u002Fv10181-010-0016-1\nSchiffman, 2015, Comparative oncology: what dogs and other species can teach us about humans with cancer, Philos. Trans. R. 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10.1074\u002Fjbc.R113.451211\nHartl, 2011, Inoculation of young horses with bovine papillomavirus type 1 virions leads to early infection of PBMCs prior to pseudo-sarcoid formation, Journal of General Virology, 92, 2437, 10.1099\u002Fvir.0.033670-0\nKähäri, 1997, Matrix metalloproteinases in skin, Experimental Dermatology, 6, 199, 10.1111\u002Fj.1600-0625.1997.tb00164.x\nKipar, 1995, Round cell sarcomas of possible myelomonocytic origin localized at the lip of aged dogs, Journal of Veterinary Medicine Series A, 42, 185, 10.1111\u002Fj.1439-0442.1995.tb00370.x\nKipar, 2005, Morphological features and development of granulomatous vasculitis in feline infectious peritonitis, Veterinary Pathology, 42, 321, 10.1354\u002Fvp.42-3-321\nKnottenbelt, 2005, A suggested clinical classification for the equine sarcoid, Clinical Techniques in Equine Practice, 4, 278, 10.1053\u002Fj.ctep.2005.10.008\nKnottenbelt, 2000, The diagnosis and treatment of periorbital sarcoid in the horse: 445 cases from 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Dairy Cattle Vets Newsletter, New Zealand Veterinary Association, 35, 41\nCompton, 2014, Randomised controlled trials demonstrate efficacy of a novel internal teat sealant to prevent new intramammary infections in dairy cows and heifers, New Zealand Veterinary Journal, 62, 258, 10.1080\u002F00480169.2014.898201\nCompton, 2007, Risk Factors for Peripartum Mastitis in Pasture-Grazed Dairy Heifers, Journal of Dairy Science, 90, 4171, 10.3168\u002Fjds.2006-882\nDabdoub, 1984, Phenotypic relations among milk yield, somatic cell count and clinical mastitis, Journal of Dairy Science, 67, 163\nDe Vliegher, 2012, Invited review: Mastitis in dairy heifers: Nature of the disease, potential impact, prevention, and control, Journal of Dairy Science, 95, 1025, 10.3168\u002Fjds.2010-4074\nDown, 2017, Factors affecting the cost-effectiveness of on-farm culture prior to the treatment of clinical mastitis in dairy cows, Preventive Veterinary Medicine, 145, 91, 10.1016\u002Fj.prevetmed.2017.07.006\nDubuc, 2010, Definitions and diagnosis of postpartum endometritis in dairy cows, Journal of Dairy Science, 93, 5225, 10.3168\u002Fjds.2010-3428\nGoff, 1997, Physiological Changes at Parturition and Their Relationship to Metabolic Disorders, Journal of Dairy Science, 80, 1260, 10.3168\u002Fjds.S0022-0302(97)76055-7\nGooneratne, 1989, Review of copper deficiency and metabolism in ruminants, Canadian Journal of Animal Science, 69, 819, 10.4141\u002Fcjas89-096\nGreenland, 1999, Causal Diagrams for Epidemiologic Research, Epidemiology, 10, 37, 10.1097\u002F00001648-199901000-00008\nHarris, S.L., Clark, D.A., Auldist, M.J., Waugh, C.D., & Laboyrie, P.G., 1997. Optimum white clover content for dairy pastures. Proceedings of the New Zealand Grassland Association 59, 41–42.\nHeinze, 2018, Variable selection – A review and recommendations for the practicing statistician, Biometrical Journal, 60, 431, 10.1002\u002Fbimj.201700067\nHendriks, 2020, Selenium requirements in grazing dairy cows: a review, New Zealand Veterinary Journal, 68, 13, 10.1080\u002F00480169.2019.1673256\nHillerton, 2017, Use of antimicrobials for animals in New Zealand and in comparison, with other countries, New Zealand Veterinary Journal, 65, 71, 10.1080\u002F00480169.2016.1171736\nHorst, 2021, Invited review: The influence of immune activation on transition cow health and performance - A critical evaluation of traditional dogmas, Journal of Dairy Science, 104, 8380, 10.3168\u002Fjds.2021-20330\nKruschke, 2018, Rejecting or accepting parameter values in Bayesian estimation, Advances in Methods and Practices in Psychological Science, 1, 270, 10.1177\u002F2515245918771304\nKusaka, 2020, Comparison of diagnostic methods for uterine health in dairy cattle on different days postpartum, Veterinary Record, 186, 91, 10.1136\u002Fvr.105300\nLacetera, 2005, Lymphocyte functions in over conditioned cows around parturition, Journal of Dairy Science, 88, 2010, 10.3168\u002Fjds.S0022-0302(05)72877-0\nLago, 2011, The selective treatment of clinical mastitis based on on-farm culture results: I. Effects on antibiotic use, milk withholding time, and short-term clinical and bacteriological outcomes, Journal of Dairy Science, 94, 4441, 10.3168\u002Fjds.2010-4046\nLaven, 2013, Diagnosis of the Cu and Se status of dairy cattle in New Zealand: how many samples are needed?, New Zealand Veterinary Journal, 61, 269, 10.1080\u002F00480169.2012.753568\nLaven, 2014, Effect of dry period length on the effect of an intramammary teat sealant on the risk of mastitis in cattle treated with antibiotics at drying off, New Zealand Veterinary Journal, 62, 214, 10.1080\u002F00480169.2013.879689\nLavon, 2011, Association of conception rate with pattern and level of somatic cell count elevation relative to time of insemination in dairy cows, Journal of Dairy Science, 94, 4538, 10.3168\u002Fjds.2011-4293\nMachado, 2013, Effect of an injectable trace mineral supplement containing selenium, copper, zinc, and manganese on the health and production of lactating Holstein cows, Veterinary Journal, 197, 451, 10.1016\u002Fj.tvjl.2013.02.022\nMadoz, 2017, Application of a bacteriological on-farm test to reduce antimicrobial usage in dairy cows with purulent vaginal discharge, Journal of Dairy Science, 100, 3875, 10.3168\u002Fjds.2016-11931\nMakowski, 2019, bayestestR: Describing effects and their uncertainty, existence, and significance within the Bayesian framework, Journal of Open-Source Software, 4, 1541, 10.21105\u002Fjoss.01541\nMalcolm, D., Hook, I., Montgomerie, B., Winkleman, A., Sim, S., Brennan, G., 2006. 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Hamilton, New Zealand.\nMcDougall, 1999, Prevalence of clinical mastitis in 38 Waikato dairy herds in early lactation, New Zealand Veterinary Journal, 47, 143, 10.1080\u002F00480169.1999.36131\nMcDougall, 2003, Management factors associated with the incidence of clinical mastitis over the non-lactation period and bulk tank somatic cell count during the subsequent lactation, New Zealand Veterinary Journal, 51, 63, 10.1080\u002F00480169.2003.36342\nMcDougall, 2007, Association between endometritis diagnosis using a novel intravaginal device and reproductive performance in dairy cattle, Animal Reproduction Science, 99, 9, 10.1016\u002Fj.anireprosci.2006.03.017\nMcDougall, 2013, Clinical trial of treatment programs for purulent vaginal discharge in lactating dairy cattle in New Zealand, Theriogenology, 79, 1139, 10.1016\u002Fj.theriogenology.2013.02.002\nMcDougall, 2020, Prevalence of endometritis diagnosed by vaginal discharge scoring or uterine cytology in dairy cows and herds, Journal of Dairy Science, 103, 6511, 10.3168\u002Fjds.2019-18048\nMcDougall, 2022, Risk factors for clinical or subclinical mastitis following infusion of internal teat sealant alone at the end of lactation in cows with low somatic cell counts, New Zealand Veterinary Journal, 70, 79, 10.1080\u002F00480169.2021.1977200\nMcDougall, 2011, Relationships between cytology, bacteriology and vaginal discharge scores and reproductive performance in dairy cattle, Theriogenology, 76, 229, 10.1016\u002Fj.theriogenology.2010.12.024\nMee, 2011, Risk factors for calving assistance and dystocia in pasture-based Holstein–Friesian heifers and cows in Ireland, The Veterinary Journal, 187, 189, 10.1016\u002Fj.tvjl.2009.11.018\nNational Research Council. 2001. 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Washington, DC: The National Academies Press.\nOsborne, 2002, Effect of supplementing glucose in drinking water on the energy and nitrogen status of the transition dairy cow, Canadian Journal of Animal Science, 82, 427, 10.4141\u002FA01-094\nPalomares, 2016, Effects of injectable trace minerals on humoral and cell-mediated immune responses to bovine viral diarrhea virus, bovine herpes virus 1and bovine respiratory syncytial virus following administration of a modified-live virus vaccine in dairy calves, Veterinary Immunology and Immunopathology, 178, 88, 10.1016\u002Fj.vetimm.2016.07.003\nPetrovski, 2009, The incidence and aetiology of clinical bovine mastitis on 14 farms in Northland, New Zealand, New Zealand Veterinary Journal, 57, 109, 10.1080\u002F00480169.2009.36887\n2021\nRunciman, 2010, The use of an internal teat sealant in combination with cloxacillin dry cow therapy for the prevention of clinical and subclinical mastitis in seasonal calving dairy cows, Journal of Dairy Science, 93, 4582, 10.3168\u002Fjds.2009-2956\nRunciman, 2008, Effect of intrauterine treatment with cephapirin on the reproductive performance of seasonally calving dairy cows at risk of endometritis following periparturient disease, Australian Veterinary Journal, 86, 250, 10.1111\u002Fj.1751-0813.2008.00302.x\nSalman, 2009, The role of dietary selenium in bovine mammary gland health and immune function, Animal Health Research Reviews, 10, 21, 10.1017\u002FS1466252308001588\nSenevirathne, 2016, Effect of water treatment on drinking preferences of dairy heifers, Journal of Animal Science, 94, 10.2527\u002Fmsasas2016-007\nSheldon, 2020, Diagnosing postpartum endometritis in dairy cattle, Veterinary Record, 186, 88, 10.1136\u002Fvr.m222\nSheldon, 2006, Defining postpartum uterine disease in cattle, Theriogenology, 65, 1516, 10.1016\u002Fj.theriogenology.2005.08.021\nSheldon, 2009, Defining postpartum uterine disease and the mechanisms of infection and immunity in the female reproductive tract in cattle, Biology of Reproduction, 81, 1025, 10.1095\u002Fbiolreprod.109.077370\nSouthwood, 1974, Goodman and Kruskal’s tau-b as correlation ratio: some implications, Sociological Methods and Research, 3, 82, 10.1177\u002F004912417400300104\nSpears, 2008, Role of antioxidants and trace elements in health and immunity of transition dairy cows, The Veterinary Journal, 176, 70, 10.1016\u002Fj.tvjl.2007.12.015\nStake, 1977, Trace element absorption factors in animals [Nutrition], Feedstuffs, 49, 137\nStine, 1995, Graphical interpretation of variance inflation factors, The American Statistician, 49, 53\nSun, 1996, Inappropriate use of bivariable analysis to screen risk factors for use in multivariable analysis, Journal of Clinical Epidemiology, 49, 907, 10.1016\u002F0895-4356(96)00025-X\nSuttle, 1986, Problems in the diagnosis and anticipation of trace element deficiencies in grazing livestock, The Veterinary Record, 119, 148, 10.1136\u002Fvr.119.7.148\nTeixeira, 2014, effect of an injectable trace mineral supplement containing selenium, copper, zinc, and manganese on immunity, health, and growth of dairy calves, Journal of Dairy Science, 97, 4217, 10.3168\u002Fjds.2013-7625\nThomas, 2007, Use of flavored drinking water in calves and lactating dairy cattle, Journal of Dairy Science, 90, 3831, 10.3168\u002Fjds.2007-0085\nThompson, 1998, Selenium reference ranges in New Zealand cattle, New Zealand Veterinary Journal, 46, 65, 10.1080\u002F00480169.1998.36058\nThompson-Crispi, 2012, Type 1 and type 2 immune response profiles of commercial dairy cows in 4 regions across Canada, Canadian Journal of Veterinary Research, 76, 120\nWagener, 2017, A review of the ongoing discussion about definition, diagnosis and pathomechanism of subclinical endometritis in dairy cows, Theriogenology, 94, 21, 10.1016\u002Fj.theriogenology.2017.02.005\nWatanabe, 2010, Asymptotic equivalence of Bayes cross validation and widely applicable information criterion in singular learning theory, Journal of Machine Learning Research, 11, 3571",{"VOID":2393},"10.1016\u002Fj.tvjl.2022.105867","2024-05-10T20:36:23.386+00:00","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS109002332200082X",[2397,2412,2427],{"id":2398,"sortIndex":19,"researcher":18,"roles":2399,"affiliations":2400,"properties":2409,"displayName":2411,"givenName":18,"familyName":18},"1859da35-8f1c-4dc1-8019-653df7423964",[112],[2401],{"id":2402,"sortIndex":19,"affiliation":2403,"properties":18},"53aa09b1-6320-4b0e-a6a9-ba899024c149",{"id":2402,"createTime":18,"updateTime":18,"relativeEntities":2404,"slug":18,"properties":2405,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":2408,"statistic":18},[],{"title":2406},{"VI":2407},"Vetlife NZ, Vetlife Scientific, 1, Waitohi-Temuka Road, Temuka 7920, New Zealand",[],{"title":2410},{"VI":2411},"A.J. 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