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Journal Article
R. V. Shawley and Mandsager, R. E., Clinical use of positive-pressure ventilation in the horse., The Veterinary clinics of North America. Equine practice, vol. 6, no. 3, pp. 575-85, 1990.
D. T. Alzhanov, Suchland, R. J., Bakke, A. C., Stamm, W. E., and Rockey, D. D., Clonal isolation of chlamydia-infected cells using flow cytometry., Journal of microbiological methods, vol. 68, no. 1, pp. 201-8, 2007.
D. T. Alzhanov, Suchland, R. J., Bakke, A. C., Stamm, W. E., and Rockey, D. D., Clonal isolation of chlamydia-infected cells using flow cytometry., Journal of microbiological methods, vol. 68, no. 1, pp. 201-8, 2007.
J. Barra-Carrasco, Olguín-Araneda, V., Plaza-Garrido, A., Miranda-Cárdenas, C., Cofré-Araneda, G., Pizarro-Guajardo, M., Sarker, M. R., and Paredes-Sabja, D., The Clostridium difficile exosporium cysteine (CdeC)-rich protein is required for exosporium morphogenesis and coat assembly., Journal of bacteriology, vol. 195, no. 17, pp. 3863-75, 2013.
S. Banawas, Paredes-Sabja, D., Korza, G., Li, Y., Hao, B., Setlow, P., and Sarker, M. R., The Clostridium perfringens germinant receptor protein GerKC is located in the spore inner membrane and is crucial for spore germination., Journal of bacteriology, vol. 195, no. 22, pp. 5084-91, 2013.
S. Banawas, Paredes-Sabja, D., Korza, G., Li, Y., Hao, B., Setlow, P., and Sarker, M. R., The Clostridium perfringens germinant receptor protein GerKC is located in the spore inner membrane and is crucial for spore germination., Journal of bacteriology, vol. 195, no. 22, pp. 5084-91, 2013.
D. Paredes-Sabja, J Torres, A., Setlow, P., and Sarker, M. R., Clostridium perfringens spore germination: characterization of germinants and their receptors., Journal of bacteriology, vol. 190, no. 4, pp. 1190-201, 2008.
D. Paredes-Sabja, J Torres, A., Setlow, P., and Sarker, M. R., Clostridium perfringens spore germination: characterization of germinants and their receptors., Journal of bacteriology, vol. 190, no. 4, pp. 1190-201, 2008.
D. Paredes-Sabja and Sarker, M. R., Clostridium perfringens sporulation and its relevance to pathogenesis., Future microbiology, vol. 4, no. 5, pp. 519-25, 2009.
D. Paredes-Sabja, Sarker, N., and Sarker, M. R., Clostridium perfringens tpeL is expressed during sporulation., Microbial pathogenesis, vol. 51, no. 5, pp. 384-8, 2011.
D. Paredes-Sabja, Sarker, N., and Sarker, M. R., Clostridium perfringens tpeL is expressed during sporulation., Microbial pathogenesis, vol. 51, no. 5, pp. 384-8, 2011.
S. J. Billington, Wieckowski, E. U., Sarker, M. R., Bueschel, D., Songer, J. G., and McClane, B. A., Clostridium perfringens type E animal enteritis isolates with highly conserved, silent enterotoxin gene sequences., Infection and immunity, vol. 66, no. 9, pp. 4531-6, 1998.
S. J. Billington, Wieckowski, E. U., Sarker, M. R., Bueschel, D., Songer, J. G., and McClane, B. A., Clostridium perfringens type E animal enteritis isolates with highly conserved, silent enterotoxin gene sequences., Infection and immunity, vol. 66, no. 9, pp. 4531-6, 1998.
A. Graupmann-Kuzma, Valentine, B. A., Shubitz, L. F., Dial, S. M., Watrous, B. J., and Tornquist, S. J., Coccidioidomycosis in dogs and cats: a review., Journal of the American Animal Hospital Association, vol. 44, no. 5, pp. 226-35, 2008.
J. Li, Ma, M., Sarker, M. R., and McClane, B. A., CodY is a global regulator of virulence-associated properties for Clostridium perfringens type D strain CN3718., mBio, vol. 4, no. 5, pp. e00770-13, 2013.
A. M. Hau, Greenwood, J. A., Löhr, C. V., Serrill, J. D., Proteau, P. J., Ganley, I. G., McPhail, K. L., and Ishmael, J. E., Coibamide A induces mTOR-independent autophagy and cell death in human glioblastoma cells., PloS one, vol. 8, no. 6, p. e65250, 2013.
S. T. Spagnoli, Xue, L., and Kent, M. L., The common neural parasite Pseudoloma neurophilia is associated with altered startle response habituation in adult zebrafish (Danio rerio): Implications for the zebrafish as a model organism., Behav Brain Res, vol. 291, pp. 351-360, 2015.
M. Milovancev, Hilgart-Martiszus, I., McNamara, M. J., Goodall, C. P., Séguin, B., Bracha, S., and Wickramasekara, S. I., Comparative analysis of the surface exposed proteome of two canine osteosarcoma cell lines and normal canine osteoblasts., BMC veterinary research, vol. 9, p. 116, 2013.
M. N. Saulez, Cebra, C. K., and Dailey, M., Comparative biochemical analyses of venous blood and peritoneal fluid from horses with colic using a portable analyser and an in-house analyser., The Veterinary record, vol. 157, no. 8, pp. 217-23, 2005.
M. R. Sarker, Shivers, R. P., Sparks, S. G., Juneja, V. K., and McClane, B. A., Comparative experiments to examine the effects of heating on vegetative cells and spores of Clostridium perfringens isolates carrying plasmid genes versus chromosomal enterotoxin genes., Applied and environmental microbiology, vol. 66, no. 8, pp. 3234-40, 2000.
M. R. Sarker, Shivers, R. P., Sparks, S. G., Juneja, V. K., and McClane, B. A., Comparative experiments to examine the effects of heating on vegetative cells and spores of Clostridium perfringens isolates carrying plasmid genes versus chromosomal enterotoxin genes., Applied and environmental microbiology, vol. 66, no. 8, pp. 3234-40, 2000.
M. R. Sarker, Shivers, R. P., Sparks, S. G., Juneja, V. K., and McClane, B. A., Comparative experiments to examine the effects of heating on vegetative cells and spores of Clostridium perfringens isolates carrying plasmid genes versus chromosomal enterotoxin genes., Applied and environmental microbiology, vol. 66, no. 8, pp. 3234-40, 2000.
H. Mansouri and Sadeghi, M. J., Comparative histomorphological and histochemical studies of submandibular and sublingual salivary glands in sheep and goat., J.of Vet.Res., vol. 5, no. 1, pp. 86-95, 2004.
A. J. Kaneps, Huber, M. J., and Snyder, S. P., Comparison of autogenous cancellous bone grafts obtained from the sternum and proximal portion of the tibia of llamas., Journal of the American Veterinary Medical Association, vol. 215, no. 3, pp. 362-5, 1999.
J. Spina, Warnock, J., Duesterdieck-Zellmer, K. F., Baltzer, W., Ott, J., and Bay, B., Comparison of growth factor treatments on the fibrochondrogenic potential of canine fibroblast-like synoviocytes for meniscal tissue engineering., Vet Surg, vol. 43, no. 6, pp. 750-60, 2014.

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