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Osamu Hoshino
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Journal Articles
- 2022
- [j49]Osamu Hoshino, Mei Hong Zheng, Yasuhiro Fukuoka:
Effect of cortical extracellular GABA on motor response. J. Comput. Neurosci. 50(3): 375-393 (2022) - 2020
- [j48]Osamu Hoshino, Rikiya Kameno, Jin Kubo, Kazuo Watanabe:
Spatiotemporal regulation of GABA concentration in extracellular space by gliotransmission crucial for extrasynaptic receptor-mediated improvement of sensory tuning performance in schizophrenia. J. Comput. Neurosci. 48(3): 317-332 (2020) - 2019
- [j47]Ryuta Sakamoto, Rikiya Kameno, Taira Kobayashi, Asahi Ishiyama, Kazuo Watanabe, Osamu Hoshino:
Extracellular GABA assisting in organizing dynamic cell assemblies to shorten reaction time to sensory stimulation. Biol. Cybern. 113(3): 257-271 (2019) - [j46]Osamu Hoshino, Rikiya Kameno, Kazuo Watanabe:
Reducing variability in motor cortex activity at a resting state by extracellular GABA for reliable perceptual decision-making. J. Comput. Neurosci. 47(2-3): 191-204 (2019) - 2018
- [j45]Osamu Hoshino, Mei Hong Zheng, Kazuo Watanabe:
Perceptual judgments via sensory-motor interaction assisted by cortical GABA. J. Comput. Neurosci. 44(2): 233-251 (2018) - [j44]Osamu Hoshino, Mei Hong Zheng, Kazuo Watanabe:
Improved Perceptual Learning by Control of Extracellular GABA Concentration by Astrocytic Gap Junctions. Neural Comput. 30(1) (2018) - 2016
- [j43]Osamu Hoshino, Mei Hong Zheng, Kazuo Watanabe:
Reduction of Trial-to-Trial Perceptual Variability by Intracortical Tonic Inhibition. Neural Comput. 28(1): 187-215 (2016) - 2015
- [j42]Mei Hong Zheng, Kazuo Watanabe, Osamu Hoshino:
GABA diffusion across neuronal columns for efficient sensory tuning. Biol. Cybern. 109(4-5): 493-503 (2015) - [j41]Osamu Hoshino:
Regulation of Local Ambient GABA Levels via Transporter-Mediated GABA Import and Export for Subliminal Learning. Neural Comput. 27(6): 1223-1251 (2015) - 2014
- [j40]Osamu Hoshino:
Balanced Crossmodal Excitation and Inhibition Essential for Maximizing Multisensory Gain. Neural Comput. 26(7): 1362-1385 (2014) - [j39]Mei Hong Zheng, Takami Matsuo, Ai Miyamoto, Osamu Hoshino:
Tonically Balancing Intracortical Excitation and Inhibition by GABAergic Gliotransmission. Neural Comput. 26(8): 1690-1716 (2014) - [j38]Hiroakira Matsui, Mei Hong Zheng, Osamu Hoshino:
Facilitation of Neuronal Responses by Intrinsic Default Mode Network Activity. Neural Comput. 26(11): 2441-2464 (2014) - 2013
- [j37]Osamu Hoshino:
Ambient GABA Responsible for Age-Related Changes in Multistable Perception. Neural Comput. 25(5): 1164-1190 (2013) - [j36]Osamu Hoshino:
Deficient GABAergic Gliotransmission May Cause Broader Sensory Tuning in Schizophrenia. Neural Comput. 25(12): 3235-3262 (2013) - 2012
- [j35]Ai Miyamoto, Jun Hasegawa, Osamu Hoshino:
Dynamic modulation of an orientation preference map by GABA responsible for age-related cognitive performance. Cogn. Process. 13(4): 349-359 (2012) - [j34]Ai Miyamoto, Jun Hasegawa, Mei Hong Zheng, Osamu Hoshino:
Diffusive Feedback Influences on Hierarchical Information Processing. Neural Comput. 24(3): 744-770 (2012) - [j33]Osamu Hoshino:
Regulation of Ambient GABA Levels by Neuron-Glia Signaling for Reliable Perception of Multisensory Events. Neural Comput. 24(11): 2964-2993 (2012) - 2011
- [j32]Hideyuki Fujiwara, Mei Hong Zheng, Ai Miyamoto, Osamu Hoshino:
Insufficient augmentation of ambient GABA responsible for age-related cognitive deficit. Cogn. Process. 12(2): 151-159 (2011) - [j31]Osamu Hoshino:
Neuronal Responses Below Firing Threshold for Subthreshold Cross-Modal Enhancement. Neural Comput. 23(4): 958-983 (2011) - [j30]Osamu Hoshino:
Subthreshold Membrane Depolarization as Memory Trace for Perceptual Learning. Neural Comput. 23(12): 3205-3231 (2011) - 2010
- [j29]Yusuke Totoki, Takami Matsuo, Mei Hong Zheng, Osamu Hoshino:
Local intracortical circuitry not only for feature binding but also for rapid neuronal responses. Cogn. Process. 11(4): 347-357 (2010) - [j28]Osamu Hoshino:
Alteration of Ambient GABA by Phasic and Tonic Neuronal Activation. Neural Comput. 22(5): 1358-1382 (2010) - 2009
- [j27]Osamu Hoshino:
GABA Transporter Preserving Ongoing Spontaneous Neuronal Activity at Firing Subthreshold. Neural Comput. 21(6): 1683-1713 (2009) - 2008
- [j26]Osamu Hoshino:
An Ongoing Subthreshold Neuronal State Established Through Dynamic Coassembling of Cortical Cells. Neural Comput. 20(12): 3055-3086 (2008) - 2007
- [j25]Osamu Hoshino:
Spatiotemporal Conversion of Auditory Information for Cochleotopic Mapping. Neural Comput. 19(2): 351-370 (2007) - [j24]Osamu Hoshino:
Enhanced Sound Perception by Widespread-Onset Neuronal Responses in Auditory Cortex. Neural Comput. 19(12): 3310-3334 (2007) - 2005
- [j23]Osamu Hoshino:
Cognitive Enhancement Mediated Through Postsynaptic Actions of Norepinephrine on Ongoing Cortical Activity. Neural Comput. 17(8): 1739-1775 (2005) - 2004
- [j22]Osamu Hoshino:
Neuronal Bases of Perceptual Learning Revealed by a Synaptic Balance Scheme. Neural Comput. 16(3): 563-594 (2004) - 2003
- [j21]Osamu Hoshino, Mei Hong Zheng, Kazuharu Kuroiwa:
Roles of dynamic linkage of stable attractors across cortical networks in recalling long-term memory. Biol. Cybern. 88(3): 163-176 (2003) - [j20]Osamu Hoshino:
Coherent interaction of dynamical attractors for object-based selective attention. Biol. Cybern. 89(2): 107-118 (2003) - 2002
- [j19]Osamu Hoshino, Kazuharu Kuroiwa:
A neural network model of the inferior colliculus with modifiable lateral inhibitory synapses for human echolocation. Biol. Cybern. 86(3): 231-240 (2002) - [j18]Osamu Hoshino:
Dynamic interaction of attractors across multiple cortical networks as a neural basis for intersensory facilitation. Connect. Sci. 14(2): 115-135 (2002) - [j17]Osamu Hoshino, Masayuki Miyamoto, Mei Hong Zheng, Kazuharu Kuroiwa:
A neural network model for encoding and perception of vowel sounds. Neurocomputing 44-46: 435-442 (2002) - [j16]Osamu Hoshino, Mei Hong Zheng, Kazuharu Kuroiwa:
A neural network model for memory retrieval in a pair association task. Neurocomputing 44-46: 443-451 (2002) - [j15]Osamu Hoshino, Kouji Waki, Mei Hong Zheng, Kazuharu Kuroiwa:
Decomposition and integration of monosyllabic information for auditory perceptual process. Neurocomputing 44-46: 837-845 (2002) - [j14]Osamu Hoshino:
Beating in Membrane Potential Mediated by Cortical gamma Oscillations for Reading Out Synchronous Neuronal Activities Over Distant Cortical Areas. Neural Process. Lett. 16(2): 165-175 (2002) - 2001
- [j13]Osamu Hoshino, Kazuharu Kuroiwa:
Echo sound detection in the inferior colliculus for human echolocation. Neurocomputing 38-40: 1289-1296 (2001) - [j12]Satoru 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) - [j11]Yoshiki 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) - [j10]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 Comput. 13(8): 1781-1810 (2001) - 2000
- [j9]Tetsuya Oyamada, Yoshiki Kashimori, Osamu Hoshino, Takeshi Kambara:
A neural mechanism of hierarchical discrimination of odors in the olfactory cortex based on spatiotemporal encoding of odor information. Biol. Cybern. 83(1): 21-33 (2000) - [j8]Osamu 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) - [j7]Satoru 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) - [j6]Yoshiki 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) - 1999
- [j5]Satoru 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) - [j4]Yoshiki 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) - [j3]Osamu 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) - 1998
- [j2]Osamu Hoshino, Yoshiki Kashimori, Takeshi Kambara:
An olfactory recognition model based on spatio-temporal encoding of odor quality in the olfactory bulb. Biol. Cybern. 79(2): 109-120 (1998) - 1997
- [j1]Osamu 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)
Conference and Workshop Papers
- 2017
- [c4]Taira Kobayashi, Asahi Ishiyama, Osamu Hoshino:
Enhancement of Neuronal Activity by Receptor-Mediated Gliotransmission. ISNN (2) 2017: 483-490 - 2016
- [c3]Asahi Ishiyama, Hiroakira Matsui, Kazuhiro Tsuboi, Kazuo Watanabe, Osamu Hoshino:
Improvement of Sensory Information Processing by Balancing Tonic and Phasic Subthreshold Neuronal Excitation. SCIS&ISIS 2016: 360-365 - 2008
- [c2]Yuto Nakamura, Kazuhiro Tsuboi, Osamu Hoshino:
Lateral Excitation between Dissimilar Orientation Columns for Ongoing Subthreshold Membrane Oscillations in Primary Visual Cortex. ICANN (2) 2008: 318-327 - 1997
- [c1]Osamu Hoshino, Yoshiki Kashimori, Takeshi Kambara:
Feature extraction from mixed odor stimuli based on spatio-temporal representation of odors in olfactory bulb. ICNN 1997: 344-349
Coauthor Index
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