J. Ashot Kozak, Ph.D.

Neurosci., Cell Biol. and Physiol. Wright State University, Fairborn, OH, United States 
ion channel regulation
"J. Kozak"
Mean distance: 17.36 (cluster 28)
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Beesetty P., Wieczerzak KB., Gibson, et al. (2018) Inactivation of TRPM7 kinase in mice results in enlarged spleens, reduced T-cell proliferation and diminished store-operated calcium entry. Scientific Reports. 8
Khachvankian DK, Aslanian HR, Harutiunian-Kozak BA, et al. (2015) Responses of Cortical Extrastriate Area 21a Neurons Specialized in Motion Detection Neurophysiology. 47: 191-197
Kaitsuka T, Katagiri C, Beesetty P, et al. (2014) Inactivation of TRPM7 kinase activity does not impair its channel function in mice. Scientific Reports. 4: 5718
Aslanian HR, Khachvankian DK, Harutiunian-Kozak BA, et al. (2014) Movement detection properties and structure of stationary receptive fields of single neurons in the cat extrastriate area 21a Neurophysiology. 46: 43-49
Chokshi R, Fruasaha P, Kozak JA. (2012) 2-aminoethyl diphenyl borinate (2-APB) inhibits TRPM7 channels through an intracellular acidification mechanism. Channels (Austin, Tex.). 6: 362-9
Lioudyno MI, Broccio M, Sokolov Y, et al. (2012) Effect of synthetic aβ peptide oligomers and fluorinated solvents on Kv1.3 channel properties and membrane conductance. Plos One. 7: e35090
Chokshi R, Matsushita M, Kozak JA. (2012) Sensitivity of TRPM7 channels to Mg2+ characterized in cell-free patches of Jurkat T lymphocytes. American Journal of Physiology. Cell Physiology. 302: C1642-51
Chokshi R, Matsushita M, Kozak JA. (2012) Detailed examination of Mg2+ and pH sensitivity of human TRPM7 channels. American Journal of Physiology. Cell Physiology. 302: C1004-11
Khachvankyan DK, Kozak JA, Sharanbekyan AB, et al. (2012) Receptive field infrastructure restructuring of visually driven neurons of extrastriate area 21a Proceedings - 2012 International Conference On Biomedical Engineering and Biotechnology, Icbeb 2012. 868-870
Kozak JA, Khachvankyan DK, Ghazaryan AL, et al. (2012) Spatial Infrastructure of Receptive Fields and Responses to Moving Stimuli of Visually Driven Neurons in the Cat Extrastriate Cortex Neurophysiology. 1-7
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