03 | Inoue, A., Kobayashi, T., Hirai, H., Kanaya, N. and Kohara, K.# Protocol for BATTLE-1EX: A High-Resolution Imaging Method to Visualize Whole Synaptic Structures and their Components in the Nervous Systems (# corresponding author) STAR Protocols, 1, 100166, (2020) |
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04 | Kohara, K.*#, Inoue, A.*, Nakano, Y., Hirai, H., Kobayashi, T., Maruyama, M., Baba, R., and Kawashima, C. BATTLE: Genetically Engineered Strategies for Split-Tunable Allocation of Multiple Transgenes in the Nervous System (# corresponding author)(*equally contributed) iScience, 23 (6), 101248, JUNE 26, (2020) |
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05 | Kohara, K.+#, Pignatelli, M.+, Rivest, A.+, Jung, HY., Kitamura, T., Frank D., Kajikawa, K., Mise, N., Obata, Y., Wickersham, I. and Tonegawa, S.# Cell type–specific genetic and optogenetic tools reveal hippocampal CA2 circuits (# corresponding author)(+ jointly contributed) Nature Neuroscience 17(2):269-279 (2014) |
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06 | Kitamura, T., Pignatelli, M., Suh, J., Kohara, K., Yoshiki, A., Abe, K. and Tonegawa, S. Island Cells Control Temporal Association Memory Science 343(6173):896-901 (2014) |
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07 | Kohara, K., *, Yasuda, H. *, Huang, Y., Adachi, N., Sohya, K., and Tsumoto, T. A local reduction in cortical GABAergic synapses after a loss of endogenous brain-derived neurotrophic factor, as revealed by single-cell gene knock-out method. (*equally contributed) Journal of Neuroscience 27(27): 7234-7244. (2007) |
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08 | Adachi, N., Kohara, K., and Tsumoto, T. Difference in trafficking of brain-derived neurotrophic factor between axons and dendrites of cortical neurons, revealed by live-cell imaging. BMC Neuroscience 6(1): 42. (2005) |
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09 | Palizvana, M.R., Sohya K., Kohara, K., Maruyama, A., Yasuda, H., Kimura, F., and Tsumoto, T. Brain-derived neurotrophic factor increases inhibitory synapses, revealed in solitary neurons cultured from rat visual cortex. Neuroscience 126(4): 955-966. (2004) |
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10 | Kohara, K., Kitamura, A., Adachi, N., Nishida, M., Itami, C., Nakamura, S., and Tsumoto, T. Inhibitory but not excitatory cortical neurons require presynaptic brain-derived neurotrophic factor for dendritic development,as revealed by chimera cell culture. Journal of Neuroscience 23 (14): 6123-6131. (2003) |
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11 | Kohara, K., Kitamura, A., Morishima, M., and Tsumoto, T. Activity-dependent transfer of brain-derived neurotrophic factor to postsynaptic neurons. Science 291: 2419-2423. (2001) |
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12 | Kohara, K., Ogura, A., Akagawa, K., and Yamaguchi, K. Increase in number of functional release sites by cyclic AMP-dependent protein kinase in cultured neurons isolated from hippocampal dentate gyrus. Neuroscience Research 41 (1): 79-88. (2001) |
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13 | Yamagishi, S., Fujikawa, N., Kohara, K., Tominaga-Yoshino, K., and Ogura, A. Increased exocytotic capability of rat cerebellar granule neurons cultured under depolarizing conditions. Neuroscience 95 (2): 473-479. (2000) |
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14 | Kohara, K., Ono, T., Tominaga-Yoshino, K., Shimonaga, T., Kawashima, S., and Ogura, A. Activity-dependent survival and enhanced turnover of calcium in cultured rat cerebellar granule neurons. Brain Research 809 (2): 231-237. (1998) |
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15 | Ono, T., Kudo, Y., Kohara, K., Kawashima, S., and Ogura, A. Activity-dependent survival of rat cerebellar granule neurons is not associated with sustained elevation of intracellular Ca2+. Neuroscience Letters 228 (2): 123-126. (1997) |
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