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A. A. Bohn and de Morais, H. Autran, A Quick Reference on Chloride., Vet Clin North Am Small Anim Pract, vol. 47, no. 2, pp. 219-222, 2017.
R. E. Pollard, Garcia, T. C., Stieger-Vanegas, S. M., Ferrara, K. W., Sadlowski, A. R., and Wisner, E. R., Quantitative evaluation of perfusion and permeability of peripheral tumors using contrast-enhanced computed tomography., Investigative radiology, vol. 39, no. 6, pp. 340-9, 2004.
A. R. Schwindt, Truelove, N., Schreck, C. B., Fournie, J. W., Landers, D. H., and Kent, M. L., Quantitative evaluation of macrophage aggregates in brook trout Salvelinus fontinalis and rainbow trout Oncorhynchus mykiss., Dis Aquat Organ, vol. 68, no. 2, pp. 101-13, 2006.
A. R. Schwindt, Truelove, N., Schreck, C. B., Fournie, J. W., Landers, D. H., and Kent, M. L., Quantitative evaluation of macrophage aggregates in brook trout Salvelinus fontinalis and rainbow trout Oncorhynchus mykiss., Diseases of aquatic organisms, vol. 68, no. 2, pp. 101-13, 2006.
N. LeBlanc, Scollan, K., and Sisson, D., Quantitative evaluation of left atrial volume and function by one-dimensional, two-dimensional, and three-dimensional echocardiography in a population of normal dogs., J Vet Cardiol, vol. 18, no. 4, pp. 336-349, 2016.
R. Rojony, Martin, M., Campeau, A., Wozniak, J. M., Gonzalez, D. J., Jaiswal, P., Danelishvili, L., and Bermudez, L. E., Quantitative analysis of subsp proteome in response to antibiotics and during exposure to different environmental conditions., Clin Proteomics, vol. 16, p. 39, 2019.
B. P. Dolan, Quantitating MHC Class I Ligand Production and Presentation Using TCR-Like Antibodies., Methods Mol Biol, vol. 1988, pp. 149-157, 2019.
B. P. Dolan, Quantitating MHC Class I Ligand Production and Presentation Using TCR-Like Antibodies., Methods in molecular biology (Clifton, N.J.), vol. 960, pp. 169-77, 2013.
N. LeBlanc and Scollan, K., Quantification of right ventricular volume measured by use of real-time three-dimensional echocardiography and electrocardiography-gated 64-slice multidetector computed tomography in healthy dogs., Am J Vet Res, vol. 79, no. 4, pp. 404-410, 2018.
P
C. T. Resch, Winogrodzki, J. L., Patterson, C. T., Lind, E. J., Quinn, M. J., Dibrov, P., and Häse, C. C., The putative Na+/H+ antiporter of Vibrio cholerae, Vc-NhaP2, mediates the specific K+/H+ exchange in vivo., Biochemistry, vol. 49, no. 11, pp. 2520-8, 2010.
K. A. May, Cheramie, H. S., Howard, R. D., Duesterdieck-Zellmer, K. F., Moll, H. D., Pleasant, R. S., and Pyle, R. L., Purulent pericarditis as a sequela to clostridial myositis in a horse., Equine veterinary journal, vol. 34, no. 6, pp. 636-40, 2002.
B. Barquera, Hellwig, P., Zhou, W., Morgan, J. E., Häse, C. C., Gosink, K. K., Nilges, M., Bruesehoff, P. J., Roth, A., C Lancaster, R. D., and Gennis, R. B., Purification and characterization of the recombinant Na(+)-translocating NADH:quinone oxidoreductase from Vibrio cholerae., Biochemistry, vol. 41, no. 11, pp. 3781-9, 2002.
S. Piripi, Hustace, J., Carney, K. R., Heidel, J. R., and Löhr, C. V., Pulmonary arteriovenous malformation in two adult alpacas (Vicugna pacos)., Journal of veterinary diagnostic investigation : official publication of the American Association of Veterinary Laboratory Diagnosticians, Inc, vol. 24, no. 1, pp. 198-201, 2012.
J. L. Matthews, Brown, A. M., Larison, K., Bishop-Stewart, J. K., Rogers, P., and Kent, M. L., Pseudoloma neurophilia n. g., n. sp., a new microsporidium from the central nervous system of the zebrafish (Danio rerio)., J Eukaryot Microbiol, vol. 48, no. 2, pp. 227-33, 2001.
J. M. Ramsay, Watral, V., Schreck, C. B., and Kent, M. L., Pseudoloma neurophilia infections in zebrafish Danio rerio: effects of stress on survival, growth, and reproduction., Diseases of aquatic organisms, vol. 88, no. 1, pp. 69-84, 2009.
S. T. Spagnoli, Sanders, J. L., Watral, V., and Kent, M. L., Pseudoloma neurophilia Infection Combined with Gamma Irradiation Causes Increased Mortality in Adult Zebrafish (Danio rerio) Compared to Infection or Irradiation Alone: New Implications for Studies Involving Immunosuppression., Zebrafish, vol. 13 Suppl 1, pp. S107-14, 2016.
S. T. Spagnoli, Xue, L., Murray, K. N., Chow, F., and Kent, M. L., Pseudoloma neurophilia: a retrospective and descriptive study of nervous system and muscle infections, with new implications for pathogenesis and behavioral phenotypes., Zebrafish, vol. 12, no. 2, pp. 189-201, 2015.
M. L. Kent, Gaulke, C. A., Watral, V., and Sharpton, T. J., Pseudocapillaria tomentosa in laboratory zebrafish Danio rerio: patterns of infection and dose response., Dis Aquat Organ, vol. 131, no. 2, pp. 121-131, 2018.
M. L. Kent, Bishop-Stewart, J. K., Matthews, J. L., and Spitsbergen, J. M., Pseudocapillaria tomentosa, a nematode pathogen, and associated neoplasms of zebrafish (Danio rerio) kept in research colonies., Comp Med, vol. 52, no. 4, pp. 354-8, 2002.
T. M. Work, Rameyer, R. A., Takata, G., and Kent, M. L., Protozoal and epitheliocystis-like infections in the introduced bluestripe snapper Lutjanus kasmira in Hawaii., Dis Aquat Organ, vol. 57, no. 1-2, pp. 59-66, 2003.
S. J. Valberg, Perumbakkam, S., McKenzie, E. C., and Finno, C. J., Proteome and transcriptome profiling of equine myofibrillar myopathy identifies diminished peroxiredoxin 6 and altered cysteine metabolic pathways., Physiol Genomics, vol. 50, no. 12, pp. 1036-1050, 2018.
D. D. Rockey, Scidmore, M. A., Bannantine, J. P., and Brown, W. J., Proteins in the chlamydial inclusion membrane., Microbes and infection / Institut Pasteur, vol. 4, no. 3, pp. 333-40, 2002.
D. D. Rockey and Rosquist, J. L., Protein antigens of Chlamydia psittaci present in infected cells but not detected in the infectious elementary body., Infection and immunity, vol. 62, no. 1, pp. 106-12, 1994.
D. D. Rockey and Rosquist, J. L., Protein antigens of Chlamydia psittaci present in infected cells but not detected in the infectious elementary body., Infect Immun, vol. 62, no. 1, pp. 106-12, 1994.
R. Wang, W Dashwood, M., Löhr, C. V., Fischer, K. A., Pereira, C. B., Louderback, M., Nakagama, H., Bailey, G. S., Williams, D. E., and Dashwood, R. H., Protective versus promotional effects of white tea and caffeine on PhIP-induced tumorigenesis and beta-catenin expression in the rat., Carcinogenesis, vol. 29, no. 4, pp. 834-9, 2008.

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