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Takeshi Kambara

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2007
22EEKazuhisa Fujita, Yoshiki Kashimori, Takeshi Kambara: Spatiotemporal burst coding for extracting features of spatiotemporally varying stimuli. Biological Cybernetics 97(4): 293-305 (2007)
2006
21EEHidetaka Morisawa, Daisuke Hirayama, Kazuhisa Fujita, Yoshiki Kashimori, Takeshi Kambara: Binding Mechanism of Frequency-Specific ITD and IID Information in Sound Localization of Barn Owl. ICONIP (1) 2006: 255-262
2005
20EEYoshiki Kashimori, Nobuyuki Suzuki, Kazuhisa Fujita, Meihong Zheng, Takeshi Kambara: A functional role of multiple spatial resolution maps in form perception along the ventral visual pathway. Neurocomputing 65-66: 219-228 (2005)
19EEKazuhisa Fujita, Yoshiki Kashimori, Takeshi Kambara: Dynamic population coding for detecting the distance and size of an object in electrolocation. Neurocomputing 65-66: 243-251 (2005)
2004
18EEKazuhisa Fujita, ShungQuang Huang, Yoshiki Kashimori, Takeshi Kambara: Neural Mechanism of Binding ITD Information with IID One for Generating Brain Map of Sound Localization. ICONIP 2004: 44-49
17EEKazuhisa Fujita, Eigo Kamata, Satoru Inoue, Yoshiki Kashimori, Takeshi Kambara: A Functional Role of FM Sweep Rate of Biosonar in Echolocation of Bat. ICONIP 2004: 78-83
2001
16EEYoshiki Kashimori, Satoru Inoue, Takeshi Kambara: A neural mechanism of hyperaccurate detection of phase advance and delay in the jamming avoidance response of weakly electric fish. Biological Cybernetics 85(2): 117-131 (2001)
15 Osamu Hoshino, Satoru Inoue, Yoshiki Kashimori, Takeshi Kambara: A Hierarchical Dynamical Map as a Basic Frame for Cortical Mapping and Its Application to Priming. Neural Computation 13(8): 1781-1810 (2001)
14EESatoru Inoue, Yoshiki Kashimori, Yin Yang, Haoling Liu, Osamu Hoshino, Takeshi Kambara: Neural processes of self-organization of control system for foraging trips of honeybees. Neurocomputing 38-40: 1325-1334 (2001)
13EEYoshiki Kashimori, Satoru Inoue, Takeshi Kambara: A role of synchronous firing of sensory-motor interface induced by noise in sign selective process generating jamming avoidance response. Neurocomputing 38-40: 1341-1348 (2001)
12EEYoshiki Kashimori, Masanori Minagawa, Satoru Inoue, Osamu Hoshino, Takeshi Kambara: A neural model of electrosensory system making electrolocation of weakly electric fish. Neurocomputing 38-40: 1349-1357 (2001)
11EESatoru Inoue, Takafumi Yoshizawa, Yoshiki Kashimori, Takeshi Kambara: An essential role of random arrangement of coincidence detection neurons in hyperaccurate sound location of owl. Neurocomputing 38-40: 675-682 (2001)
10EEYoshiki Kashimori, Satoru Inoue, Takeshi Kambara, Minoru Uchiyama: A neural model of amygdala playing an essential role in formation of brain maps for accomplishing spatial tasks. Neurocomputing 38-40: 705-712 (2001)
2000
9EEOsamu Hoshino, Satoru Inoue, Yoshiki Kashimori, Takeshi Kambara: A role of a hierarchical dynamical map in cognition and binding different sensory modalities. Neurocomputing 32-33: 809-816 (2000)
8EESatoru Inoue, Manabu Kimyou, Yoshiki Kashimori, Osamu Hoshino, Takeshi Kambara: A neural model of medial geniculate body and auditory cortex detecting target distance independently of target velocity in echolocation. Neurocomputing 32-33: 833-841 (2000)
7EEYoshiki Kashimori, Osamu Hoshino, Takeshi Kambara: A positive role of noises in accurate detection of time difference by electrosensory system of weakly electric fish. Neurocomputing 32-33: 855-862 (2000)
6EEYoshiki Kashimori, Takeshi Kambara: A role of synaptic variation depending on precise timings of pre- and postsynaptic depolarization in suppression of disturbance due to tail bending for accurate electrolocation. Neurocomputing 32-33: 863-869 (2000)
1999
5EESatoru Inoue, Yoshiki Kashimori, Osamu Hoshino, Takeshi Kambara: The neural model of nucleus laminaris and integration layer accomplishing hyperacuity in sound location in the barn owl. Neurocomputing 26-27: 395-401 (1999)
4EEYoshiki Kashimori, Osamu Hoshino, Takeshi Kambara: A neural mechanism of AM frequency selectivity of pyramidal cell circuit in electrosensory lateral-line lobe of weakly electric fish. Neurocomputing 26-27: 403-409 (1999)
3EEOsamu Hoshino, Yoshiki Kashimori, Takeshi Kambara: A neural mechanism of feature binding based on the dynamical map theory in distributed coding scheme. Neurocomputing 26-27: 729-734 (1999)
2EEYoshiki Kashimori, Takeshi Kambara: A neural mechanism of adaptive suppression of background signals arising from tail movements in the Gymnotid electrosensory system. Neurocomputing 26-27: 761-767 (1999)
1997
1EEOsamu Hoshino, Noriaki Usuba, Yoshiki Kashimori, Takeshi Kambara: Role of Itinerancy Among Attractors as Dynamical Map in Distributed Coding Scheme. Neural Networks 10(8): 1375-1390 (1997)

Coauthor Index

1Kazuhisa Fujita [17] [18] [19] [20] [21] [22]
2Daisuke Hirayama [21]
3Osamu Hoshino [1] [3] [4] [5] [7] [8] [9] [12] [14] [15]
4ShungQuang Huang [18]
5Satoru Inoue [5] [8] [9] [10] [11] [12] [13] [14] [15] [16] [17]
6Eigo Kamata [17]
7Yoshiki Kashimori [1] [2] [3] [4] [5] [6] [7] [8] [9] [10] [11] [12] [13] [14] [15] [16] [17] [18] [19] [20] [21] [22]
8Manabu Kimyou [8]
9Haoling Liu [14]
10Masanori Minagawa [12]
11Hidetaka Morisawa [21]
12Nobuyuki Suzuki [20]
13Minoru Uchiyama [10]
14Noriaki Usuba [1]
15Yin Yang [14]
16Takafumi Yoshizawa [11]
17Meihong Zheng [20]

Copyright © Sun May 17 03:24:02 2009 by Michael Ley (ley@uni-trier.de)