Pedersen NC: A review of feline infectious peritonitis virus infection: 1963-2008. J Feline Med Surg 2009, 11:225-258.10.1016/j.jfms.2008.09.008712980219254859Search in Google Scholar
Kipar A, Meli ML: Feline infectious peritonitis: Still an enigma? Vet Pathol 2014, 51:505–526.10.1177/030098581452207724569616Search in Google Scholar
Hartmann K: Feline infectious peritonitis. Vet Clin N Am Small Anim Pract 2005, 35:39–79.10.1016/j.cvsm.2004.10.011711491915627627Search in Google Scholar
Pedersen NC: An update on feline infectious peritonitis: Diagnostics and therapeutics. Vet J 2014, 201:133–141.10.1016/j.tvjl.2014.04.016711061924857253Search in Google Scholar
Pedersen NC, Boyle JF, Floyd K: Infection studies in kittens, using feline infectious peritonitis virus propagated in cell culture. Am J Vet Res 1981, 42:363–367.Search in Google Scholar
Pedersen NC, Eckstrand C, Liu H, Leutenegger C, Murphy B: Levels of feline infectious peritonitis virus in blood, effusions, and various tissues and the role of lymphopenia in disease outcome following experimental infection. Vet Microbiol 2015, 175:157-166.10.1016/j.vetmic.2014.10.025711744425532961Search in Google Scholar
Rush JE, Keene BW, Fox PR: Pericardial disease in the cat: a retrospective evaluation of 66 cases. J Am Anim Hosp Assoc 1990, 26:39-46.Search in Google Scholar
Gülersoy E, Maden M: Effects of GS-441524 on clinical and hematochemical parameters of cats with effusive FIP over 60 days follow-up. Assiut Vet Med J 2021, 67:40-51.10.21608/avmj.2021.205169Search in Google Scholar
Tasker S: Diagnosis of feline infectious peritonitis: Update on evidence supporting available tests. J Feline Med Surg 2018, 20:228-243.10.1177/1098612X1875859229478397Search in Google Scholar
Addie DD, Jarrett O: Control of feline coronavirus infection in kittens. Vet Rec 1990, 126:164.Search in Google Scholar
Addie DD, Diane D: “Feline Coronavirus and Feline Infectious Peritonitis Diagnosis and Prevention. [Availabe from: https://www.biogal.com/wp-content/uploads/2020/06/Addie-FCoV-FIP-diagnosis-prevention-2020.pdf], 2020.Search in Google Scholar
Paltrinieri S, Grieco V, Comazzi S, Parodi MC: Laboratory profiles in cats with different pathological and immunohistochemical findings due to feline infectious peritonitis (FIP). J Feline Med Surg 2001, 3:149-159.10.1053/jfms.2001.0126717315811876632Search in Google Scholar
Paltrinieri S, Ponti W, Comazzi S, Giordano A, Poli G: Shifts in circulating lymphocyte subsets with feline infectious peritonitis (FIP): pathogenic role and diagnostic relevance. Vet Immunol Immunopathol 2003, 96:141–148.10.1016/S0165-2427(03)00156-9711965514592727Search in Google Scholar
Held D, König M, Hamann HP, Senge R, Hüllermeier E, Neiger R: Accuracy of diagnostic tests for feline infectious peritonitis (FIP) in cats with bodycavity effusion. In: ECVIM Forum. J Vet Intern Med. Seville, Spain, 2011, p. 1505.Search in Google Scholar
Hartmann K, Binder C, Hirschberger J, Cole D, Reinacher M, Schroo S, Frost J, Egberink H, Lutz H, Hermanns W: Comparison of different tests to diagnose feline infectious peritonitis. J Vet Intern Med 2003, 17:781-790.10.1111/j.1939-1676.2003.tb02515.x719751514658713Search in Google Scholar
Kipar A, Meli ML, Baptiste KE, Bowker LJ, Lutz H: Sites of feline coronavirus persistence in healthy cats. J. Gen. Virol 2010, 91:1698-1705.10.1099/vir.0.020214-020237226Search in Google Scholar
Tsai HY, Chueh LL, Lin CN, Su BL: Clinicopathological findings and disease staging of feline infectious peritonitis: 51 cases from 2003 to 2009 in Taiwan. J Feline Med Surg 2011, 13:74-80.10.1016/j.jfms.2010.09.014712920221216644Search in Google Scholar
Addie DD, Jarrett O: Use of a reverse-trans-criptase polymerase chain reaction for monitoring the shedding of feline coronavirus by healthy cats. Vet Rec 2001, 148:649–653.10.1136/vr.148.21.64911400984Search in Google Scholar
Saverio P, Alessia G, Vito T, Stefano G: critical assessment of the diagnostic value of feline α1-acid glycoprotein for feline infectious peritonitis using the likelihood ratios approach. J Vet Diag Invest 2007, 19:266–272.10.1177/10406387070190030617459855Search in Google Scholar
Cooper ES, Owens TJ, Chew DJ, Buffington CAT: A protocol for managing urethral obstruction in male cats without urethral catheterization. J Am Vet Med Assoc 2010, 237:1261-1266.10.2460/javma.237.11.1261451170121118011Search in Google Scholar
Nibblett BM, Ketzis JK, Grigg EK: Comparison of stress exhibited by cats examined in a clinic versus a home setting. Appl Anim Behav Sci 2015, 173:68-75.10.1016/j.applanim.2014.10.005Search in Google Scholar
Toussaint JF, Sailleau C, Breard E, Zientara S, De Clercq K: Bluetongue virus detection by two real-time RT-qPCRs targeting two different genomic segments. J Virol Methods 2007, 140:115–123.10.1016/j.jviromet.2006.11.00717196266Search in Google Scholar
Dye C, Helps CR, Siddell SG: Evaluation of real-time RT-PCR for the quantification of FCoV shedding in the faeces of domestic cats. J Feline Med Surg 2008, 10:167–174.10.1016/j.jfms.2007.10.010258215418243744Search in Google Scholar
Tobler K, Bridgen A, Ackermann M: Sequence analysis of the nucleocapsid protein gene of porcine epidemic diarrhoea virus. Adv Exp Med Biol 1993, 342:49-54.10.1007/978-1-4615-2996-5_88209770Search in Google Scholar
Vogel L, Van der Lubben M, te Lintelo EG, Bekker CP, Geerts T, Schuijff LS, Grinwis GC, Egberink HF, Rottier PJ: Pathogenic characteristics of persistent feline enteric coronavirus infection in cats. Vet Res 2010, 41:71.10.1051/vetres/2010043293969620663472Search in Google Scholar
Poland AM, Vennema H, Foley JE, Pedersen NC: Two related strains of feline infectious peritonitis virus isolated from immunocompromised cats infected with a feline enteric coronavirus. J Clin Microbiol 1996, 34:3180–3184.10.1128/jcm.34.12.3180-3184.19962294798940468Search in Google Scholar
Addie DD, Toth S, Murray GD, Jarrett O: Risk of feline infectious peritonitis in cats naturally infected with feline coronavirus. Am J Vet Res 1995, 56:429-434.Search in Google Scholar
Felten S, Hartmann K: Diagnosis of feline infectious peritonitis: a review of the current literature. Viruses 2019, 11:1068.10.3390/v11111068689370431731711Search in Google Scholar
Pedersen NC, Liu H, Scarlett J, Leutenegger CM, Golovko L, Kennedy H, Kamal FM: Feline infectious peritonitis: Role of the feline coronavirus 3c gene in intestinal tropism and pathogenicity based upon isolates from resident and adopted shelter cats. Virus Res 2012, 165:17-28.10.1016/j.virusres.2011.12.020711448422280883Search in Google Scholar
Spencer SE, Knowles T, Ramsey IK, Tasker S: Pyrexia in cats: retrospective analysis of signalment, clinical investigations, diagnosis and influence of prior treatment in 106 referred cases. J Feline Med Surg 2017, 19:1123–1130.10.1177/1098612X1773362428880709Search in Google Scholar
Martin M, Murray J, Berne T, Demetriades D, Belzberg H: Diagnosis of acid-base derangements and mortality prediction in the trauma intensive care unit: the physicochemical approach. J Trauma 2005, 58:238–243.10.1097/01.TA.0000152535.97968.4E15706182Search in Google Scholar
Murray MJ, James, M: American Society of Critical Care Anesthesiologists. Lippincott Williams & Wilkins, Philadelphia, PA, pp. 168-169, 2002.Search in Google Scholar
Elliott J, Syme HM, Reubens E, Markwell PJ: Assessment of acid-base status of cats with naturally occurring chronic renal failure. J Small Anim Pract 2003, 44:65–70.10.1111/j.1748-5827.2003.tb00122.x12622470Search in Google Scholar
Hayes G, Mathews K, Doig G, Kruth S, Boston S, Nykamp S, Poljak Z, Dewey C: The feline acute patient physiologic and laboratory evaluation (Feline APPLE) score: a severity of illness stratification system for hospitalized cats. J Vet Intern Med 2011, 25:26–38.10.1111/j.1939-1676.2010.0648.x21143303Search in Google Scholar
Hopper K, Epstein SE: Incidence, nature and etiology of metabolic acidosis in dogs and cats. J Vet Intern Med 2012, 26:1107–1114.10.1111/j.1939-1676.2012.00983.x22860759Search in Google Scholar
Tosuwan J, Hunprasit V, Surachetpong SD: Usefulness of peripheral venous blood gas analyses in cats with arterial thromboembolism. Int J Vet Sci Med 2021, 9:44-51.10.1080/23144599.2021.1982335855555334754877Search in Google Scholar
Divatia JV, Kulkarni AP: Lactic acidosis in the intensive care unit: pathophysiology and management. J Crit Care Med 2001, 2:94-101.Search in Google Scholar
Pang DSJ, Boysen S: Lactate in Veterinary Critical Care: Pathophysiology and Management. J Am Anim Hosp Assoc 2007, 43:270-279.10.5326/043027017823476Search in Google Scholar
Arieff AI, Park R, Leach WJ, Lazarowitz VC: Pathophysiology of experimental lactic acidosis in dogs. Am J Physiol 1980, 239:135-142.10.1152/ajprenal.1980.239.2.F1357406043Search in Google Scholar
Meli M, Kipar A, Müller C, Jenal K, Gönczi E, Borel N, Gunn-Moore D, Chalmers S, Lin F, Reinacher M, Lutz H: High viral loads despite absence of clinical and pathological findings in cats experimentally infected with feline coronavirus (FCoV) type I and in naturally FCoV-infected cats. J Feline Med Surg 2004, 6:69-81.10.1016/j.jfms.2003.08.007712872415123151Search in Google Scholar
Pedersen NC: The history and interpretation of feline coronavirus serology. Feline Pract 1995, 23:46–51.Search in Google Scholar
Ko DC, Gordon MD, Jin JY, Scott MP: Dynamic movements of organelles containing Niemann-Pick C1 protein: NPC1 involvement in late endocytic events. Mol Biol Cell 2001, 12:601–614.10.1091/mbc.12.3.6013096711251074Search in Google Scholar
Doki T, Tarusawa T, Hohdatsu T, Takano T: In vivo antiviral effects of U18666A against type I feline infectious peritonitis virus. Pathogens 2020, 9:67.10.3390/pathogens9010067716945731963705Search in Google Scholar
Takano T, Satomi Y, Oyama Y, Doki T, Hohdatsu T: Differential effect of cholesterol on type I and II feline coronavirus infection. Arch Virol 2016, 161:125-133.10.1007/s00705-015-2655-0708669726514843Search in Google Scholar
Caspi R, Altman T, Dreher K, Fulcher CA, Subhraveti P, Keseler IM, Kothari A, Krummenacker M, Latendresse M, Mueller LA, Ong Q, Paley S, Pujar A, Shearer AG, Travers M, Weerasinghe D, Zhang P, Karp PD: The MetaCyc database of metabolic pathways and enzymes and the BioCyc collection of pathway/genome databases. Nucleic Acids Res 2012, 40:742–753.10.1093/nar/gkr1014324500622102576Search in Google Scholar
Dominguez LJ, Veronese N, Guerrero-Romero F, Barbagallo M: Magnesium in Infectious Diseases in Older People. Nutrients 2021, 13:180.10.3390/nu13010180782713033435521Search in Google Scholar
Malpuech-Brugère C, Nowacki W, Gueux E, Kuryszko J, Rock E, Rayssiguier Y, Mazur A: Accelerated thymus involution in magnesium-deficient rats is related to enhanced apoptosis and sensitivity to oxidative stress. Br J Nutr 1999, 81:405–411.10.1017/S0007114599000690Search in Google Scholar
Giori L, Giordano A, Giudice C, Grieco V, Paltrinieri S: Performances of different diagnostic tests for feline infectious peritonitis in challenging clinical cases. J Small Anim Pract 2011, 52:152–157.10.1111/j.1748-5827.2011.01042.x716680721338364Search in Google Scholar
Paltrinieri S, Metzger C, Battilani M, Pocacqua V, Gelain ME, Giordano A: Serum alpha1-acid glycoprotein (agp) concentration in non-symptomatic cats with feline coronavirus (fcov) infection. J Feline Med Surg 2007, 9:271–277.10.1016/j.jfms.2007.01.002712931817344083Search in Google Scholar
Duthie S, Eckersall PD, Addie DD, Lawrence CE, Jarrett O: Value of α1-acid glycoprotein in the diagnosis of feline infectious peritonitis. Vet Rec 1997, 141:299–303.10.1136/vr.141.12.2999330474Search in Google Scholar
Feng D, Cortese G, Baumgartner R: A comparison of confidence/credible interval methods for the area under the ROC curve for continuous diagnostic tests with small sample size. Stat Methods Med Res 2017, 26:2603-2621.10.1177/096228021560204026323286Search in Google Scholar