Session Details

[1P]Late-Breaking Abstracts

Thu. Jul 24, 2025 12:50 PM - 2:50 PM JST
Thu. Jul 24, 2025 3:50 AM - 5:50 AM UTC
Poster Room (Exhibition Hall)

[1P-315]Hedgehog Signaling Orchestrates Tanycyte Development in Hypothalamic Organoids

*Yu Kodani1, Miho Kawata1, Toshiki Kameyama1, Kanako Saito1, Akira Nakashima1, Hiroshi Nagasaki1 (1. Dept Physiol, Fujita Health Univ Sch Med, Toyoake, Aichi, Japan)
Comment()

[1P-316]Area-Specific Control of Neocortical Neuron Migration via Intercellular Interactions

*Satsuki Nagashima1, PeiShan Hou1, Rui Iizuka1, Yusuke Sugita1,2, Karina Hanashima1 (1. Waseda University Graduate School of Advanced Science and Engineering, 2. Tokyo Metropolitan Institute of Medical Science, Brain Circuit Formation Project)
Comment()

[1P-317]Spatial diversity of cortical progenitor cells contributes to the expansion of the neocortex

*Yuta Furusho1,2, Koichiro Irie2, Koyomi Shimamoto1,2, Kimura Takayuki1,2, Carina Hanashima1,2 (1. Graduate School of Advanced Science and Engineering,Waseda University, 2. Department of Biology, Waseda University)
Comment()

[1P-318]Targeting Focal Adhesion Kinase Signaling for Novel Therapeutic Intervention in Burn-Induced Chronic Pain

*Deepak Chouhan1, Akhilesh .1, Vinod Tiwari1 (1. Indian Institute of Technology (B.H.U.) Varanasi-221005 (U.P.) India)
Comment()

[1P-319]Identification of CaMKIγ phosphorylation targets using BioID-based in vivo proximal protein labeling

*Ryusuke Shiota1,2, Pin-Wu Liu1,3, Shuhei Ueda1,2, Kouhei Nishino4, Honoka Tanaka1,2, Shin-ichiro Horigane1,2, Daisuke Mori5, Hidetaka Kosako4, Sayaka Takemoto1,2 (1. Department of Neuroscience, Research Institute of Environmental Medicine, Nagoya University, 2. Department of Molecular/Cellular Neuroscience, Nagoya University Graduate School of Medicine, 3. Laboratory of Systems Neuropharmacology, Graduate School of Medicine, Kyoto University, 4. Division of Cell Signaling, Institute of Advanced Medical Sciences, Tokushima University, 5. Brain and Mind Research Center, Nagoya University)
Comment()

[1P-320]Comparative Structural and Genomic Analysis of GABA-B Receptor Subunits: Insights into Conservation and Divergence Across Species

*Hakushun Sakairi1, Yuji Kamikubo1, Takashi Sakurai1 (1. Department of Pharmacology, Faculty of Medicine, Juntendo University)
Comment()

[1P-321]Contribution of Ankyrin G to the action potential waveform in the avian nucleus magnocellularis

*Ryota Fukaya1, Sristy Halder1,2, Yixuan Du1, Ryo Egawa1, Hiroshi Kuba1 (1. Grad Sch Med, Nagoya Univ, Aichi, Japan, 2. Grad Sch Med, Fujita Health Univ, Aichi, Japan)
Comment()

[1P-322]Breaking the silence: somatic inhibition-activated Ca2+spike firing (SIC firing)

*Masanori Murayama1, Tomomitsu Karaki1, Shigeki Kato2, Kazuto Kobayashi2, Taro Toyoizumi1, Hidetoshi Urakubo3, Yusuke Atsumi1 (1. RIKEN, 2. Fukushima Medical University, 3. Fujita Health University)
Comment()

[1P-324]Compartmental modeling of the whole-cell activity of wake-promoting orexin neurons in response to the sleep deprivation–induced astrocytic inhibition of their excitatory inputs

*Can S Sozuer1, Vikas Pandey2, Yoshiyuki Kubota3, Kazue Semba1 (1. Dept. of Med. Neurosci., Dalhousie Univ., Halifax, NS, Canada, 2. Int'l Ctr. for Brain Sci., Fujita Health Univ., Toyoake, 3. Div. of Multisens. Intgr. Sys., Nat'l Inst. for Physiol. Sci., Okazaki)
Comment()

[1P-325]Functional analyses of a putative pheromone receptor ancV1R in female sexual behavior

*Hiro Kondo1,2, Tetsuo Iwata1,2, Koji Sato3, Riseru Koshiishi1, Hikoyu Suzuki4, Ken Murata3, Marc Spehr5, Kazushige Touhara3, Masato Nikaido1, Junji Hirota1,2 (1. Dept Life Sci Tech, Sch Life Sci Tech, Science Tokyo, Yokohama, Japan, 2. Bioscience Center, Research Infrastructure Management Organization, Science Tokyo, Yokohama, Japan, 3. Dept Applied Biological Chemistry, Grad Sch Agricultural Life Science, Univ of Tokyo, Tokyo, Japan, 4. digzyme Inc, Tokyo, Japan, 5. Dept Chemosensation, Inst for Biology II, RWTH Aachen Univ, Aachen, Germany)
Comment()

[1P-326]Uncovering genetic control of food-searching motivation and odor preference in the fruit fly Drosophila melanogaster

*Tzu-Ting Huang1, Hiromu Tanimoto1 (1. Tohoku University)
Comment()

[1P-327]Distinct roles of dorsal and ventral hippocampus in odor-related learning in mice

*Hedan Chen1, Itaru Imayoshi1,2,3, Masayuki Sakamoto1,3 (1. Laboratory of Brain Development and Regeneration, Division of Systemic Life Science, Graduate School of Biostudies, Kyoto University, Kyoto, Japan, 2. Laboratory of Deconstruction of Stem Cells, Institute for Life and Medical Sciences, Kyoto University, Kyoto, Japan, 3. Center for Living Systems Information Science, Graduate School of Biostudies, Kyoto University, Kyoto, Japan)
Comment()

[1P-328]Mitophagy activation by N-Acetylcysteine protects against Mic60 deficiency induced auditory neuropathy

*Tingting Dong1, Yilin Sun1 (1. Shanghai Ninth People’s Hospital, Shanghai Jiao Tong University School of Medicine)
Comment()

[1P-329]Analysis of sound avoidance behavior in mice using a closed-loop sound presentation device

*Munenori Ono1, Takumi Miyajima2, Katsumasa Takahashi2, Tetsufumi Ito2, Takafumi Furuyama1, Ryo Yamamoto1, Natsuki Hatano1, Nobuo Kato1 (1. Dept Physiol, Kanazawa Medical Univ, kanazawa ,Japan, 2. Syst Funct Morph, University of Toyama, Toyama, Japan)
Comment()

[1P-330]No evidence for intensity-deviant mismatch negativity in nonhuman primates (macaque and marmoset monkeys)

*Kosuke Itoh1, Naho Konoike2,3, Kumiko Mashita3, Katsuki Nakamura3 (1. Brain Research Institute, Niigata University, 2. Hakubi Center, Kyoto University, 3. Center for the Evolutionary Origins of Human Behavior (EHUB), Kyoto University)
Comment()

[1P-331]Single nucleus transcriptome of hearing loss mice

*Chika Soko1, Takumi Miyajima1, Riku Morita1, Katsumasa Takahashi1, Hiroshi Tsuneki2, Tetsufumi Ito1 (1. Dept of System, Function and Morphology, Sch of Med Univ of Toyama, 2. Dept ofClinical Pharmacology, Sch of Pharm, Univ of Toyama)
Comment()

[1P-332]Investigating how the mosquito circadian clock influences Aedes aegypti hearing behaviors

*TAI-TING LEE1, YuMin Loh1, Yifeng Xu1, ChunHong Chen2, Matthew P Su1,3, Azusa Kamikouchi1,4 (1. Grad Sch Sci, Nagoya University, 2. Nat Inst Inf Dis Vacc, 3. IAR, Nagoya University, 4. Grad Sch Life Sci, Tohoku University)
Comment()

[1P-333]Sensorineural hearing loss induced by MAP2 deficiency and recovery mediated by cochlear IR laser stimulation

*Yee Ping Cheung1, Kazuki Shin'ya1, Nobuto Kakuda1, Kohta I Kobayasi1, Akihiro Harada2, Tomohiro Miyasaka3 (1. Graduate School of Life and Medical Sciences, Doshisha University, 2. Graduate School of Medicine and Faculty of Medicine, Osaka University, 3. School of Pharmacy, Nihon University)
Comment()

[1P-334]Neural decoding of sound stimulus information from various neural response components in surface and deep brain regions of the rat auditory cortex

*SIYUAN CAI1, Ryosuke Goto1, Takashi Tateno2, Jun Nishikawa2 (1. Grad Sch Info Sci Tech, Hokkaido Univ, Japan, 2. Fac Info Sci Tech, Hokkaido Univ, Japan)
Comment()

[1P-335]Characteristics of Ultrasonic Vocalizations During Male–Male Interactions and Their effects on Conspecific Males

*Katsumasa Takahashi1,2, Kazuma Hase1,2, Takumi Miyajima1, Riku Morita1, Takuma Matsunaga1, Tetsufumi Ito1,2 (1. University of Toyama, 2. RESEARCH CENTER FOR IDLING BRAIN SCIENCE)
Comment()

[1P-336]The Effects of Personal Space on Interpersonal Body and Neural Synchronization

*Ayaka Tsuchiya1, Yuto Kurihara1, Reiji Ohkuma2, Akito Miura1, Rieko Osu1 (1. Faculty of Human Sciences, Waseda University, Saitama, Japan, 2. Graduate School of Human Sciences, Waseda University, Saitama, Japan)
Comment()

[1P-337]Precise control of distal part of stepping limbs enables dynamic trunk movement during treadmill locomotion

*Takashi Suzuki1, Kei Mochizuki1, Yoshiro Suzuki1, Masahiko Inase2, Katsumi Nakajima1 (1. Iwate medical university, 2. Kindai university)
Comment()

[1P-338]Quantitative analysis of gait locomotion in head-fixed mice

*Satoshi Hamada1, Itaru Imayoshi2,3,4, Takayuki Michikawa5,6 (1. Graduate School of Medicine, Nagoya University, Nagoya, Japan, 2. Laboratory of Brain Development and Regeneration, Division of Systemic Life Science, Graduate School of Biostudies, Kyoto University, Kyoto, 3. Center for Living Systems Information Science, Graduate School of Biostudies, Kyoto University, Kyoto, 4. Laboratory of Deconstruction of Stem Cells, Institute for Life and Medical Sciences, Kyoto University, Kyoto, Japan, 5. Laboratory of Optical Biomedical Science, Insititute for Life and Medical Sciences, Kyoto University, Kyoto, Japan, 6. Biotechnological Optics Research Team, RIKEN Center for Advanced Photonics)
Comment()

[1P-339]Parallel cholinergic circuit in oculomotor nucleus to control eye movements and REM sleep

*Chengyong Jiang1, Xinrong Tan1, Biao Yan1, Jiayi Zhang1 (1. Institute of Brain Science, Fudan university, Shanghai, China)
Comment()

[1P-340]Functional analyses of segmental interneurons maintaining muscle relaxation in Drosophila larvae

*Takahisa Date1,2, Yingtao Liu1,2, Maarten Zwart3, Akinao Nose1,2, Hiroshi Kohsaka2,4 (1. Department of Physics, Graduate School of Sciences, The University of Tokyo, Tokyo, Japan, 2. Department of Complexity Science and Engineering, Graduate School of Frontier Sciences, The University of Tokyo, Tokyo, Japan, 3. School of Psychology and Neuroscience, Centre of Biophotonics, University of St Andrews, St Andrews, United Kingdom, 4. Graduate School of Informatics and Engineering, The University of Electro-Communications, Tokyo, Japan)
Comment()

[1P-341]Analysis of the spinal cord and the dorsal root ganglia, clearing of the entire mouse spinal column

*Masaaki Yoshikawa1, Yoichi Sumi1, Isumi Toda1, Mamoru Uemura1 (1. Dept of Anat, Osaka Dent Univ, Osaka, Japan)
Comment()

[1P-342]Activation of the CGRP neurons in the parabrachial nucleus after spinal cord injury.

*Hayato Oishi1,2, Yumi Tsutsumi2, Masamichi Ookubo2, Shaoqi Duan2, Ying Liu2, Linqian Yu2, Yilong Cui2, Kazuya Kishima1, Koichi Noguchi2,3, Toshiya Tachibana1, Yi Dai2,3 (1. Department of Orthopedic Surgery, Hyogo College of Medicine, 2. Department of Anatomy and Neuroscience, School of Medicine, Hyogo Medical University, 3. Department of Pain Mechanisms, Faculty of Pharmaceutical Sciences, Hyogo University of Medical Science)
Comment()

[1P-343]Elimination process of direct synapses between corticospinal axons and spinal motoneurons during development in rodents

*Satoshi FUKUDA1, Masaki SAKURAI1 (1. Dept Physiol, Teikyo Univ Sch Med, Tokyo, Japan)
Comment()

[1P-344]Novel insight into corticospinal projections revealed by developmental tracing of transient corticomotoneuronal cells in mice

*Naoyuki Murabe1, Masaki Sakurai1 (1. Teikyo Univ Sch Med)
Comment()

[1P-345]Quantitative analysis of excitatory and inhibitory neurons in the gray matter of the mouse spinal cord

*Hiroshi Kameda1, Jiachen Yao1, Shinichiro Okamoto1,2, Hiroyuki Hioki1,3,4, Masato Koike1 (1. Juntendo University Graduate School of Medicine, 2. Advanced Research Institute for Health Science, Juntendo University, 3. Department of Neuroanatomy, Juntendo University Graduate School of Medicine, 4. Department of Multi-Scale Brain Structure Imaging, Juntendo University Graduate School of Medicine)
Comment()

[1P-346]Changes in upper limb function by neurofeedback using cerebellar brain inhibition in patients with spinocerebellar degeneration.

*Kazuki Tanaka1,2,3, Atsushi Sima2, Erika Omae2, Masako Yamada1,2, Yedi Cao2, Tatsuya Mima1,2, Satoko Koganemaru4,2 (1. Graduate School of Core Ethics and Frontier Sciences, Ritsumeikan University, Kyoto, Japan, 2. Human Brain Research Center, Graduate School of Medicine, Kyoto University, Kyoto, Japan, 3. Department of Rehabilitation , Takai Hospital , Kouseikai, Social Medical Corporation, Nara, Japan, 4. Department of Rehabilitation Medicine,Osaka Medical and Pharmaceutical University , Osaka, Japan)
Comment()

[1P-347]The inflammatory effects of maternal high-fat diet during pregnancy on the fetal brain

*Haruka Yamazaki1, Yoshiyuki Kasahara1, Chihiro Yoshida1, Yoshitaka Kimura1, Masatoshi Saito1 (1. Maternal and Fetal Therapeutics, Grad Sch Med, Univ of Tohoku, MIyagi, Japan)
Comment()

[1P-348]Orexin/hypocretin receptor 2 signaling in MCH neurons regulates REM sleep and insulin sensitivity

*Shuntaro Izawa1,2, Debora Fusca3, Hong Jiang1, Christian Heilinger1, Christine Hausen1, Thomas Wunderlich1, Lukas Steuernagel1, Peter Kloppenburg1, Jens Brüning1,2 (1. Max Planck Institute for Metabolism Research, 2. Excellence Cluster on Cellular Stress Responses in Aging Associated Diseases (CECAD) and Center for Molecular Medicine Cologne (CMMC), 3. University of Cologne)
Comment()

[1P-349]Leptin and thyroid hormone contribute to muscular hyperalgesia induced by repeated cold stress

*Teruaki Nasu1,2, Norio Hotta2, Kazue Mizumura3, Kimiaki Katanosaka2 (1. 1)Department of Physiology, School of Life Dentistry at Niigata, The Nippon Dental University, 2. 2)College of Life and Health Sciences, Chubu University, 3. Department of Physiology, Nihon University School of Dentistry)
Comment()

[1P-350]Diversity analysis of temperature response mechanismsand their evolutionally aspects

*Iku Yonezawa1, Karin So1, Honoka Sakayama1, Miina Fujisawa1 (1. Konan University)
Comment()

[1P-351]Removal of perineuronal nets in the anterior cingulate cortex in adult mice increases vulnerability to social deficits induced by social isolation.

*Hiroshi Kuniishi1,2,3, Riku Adachi4, Hideo Matsuzaki1,2,3 (1. Research Center for Child Mental Development, Univ of Fukui, Fukui, Japan, 2. Life Science Innovation Center. Univ of Fukui, Fukui, Japan, 3. United Grad Sch Child Development, Osaka University, Osaka, Japan, 4. Sch Med, Unv of Fukui, Fukui, Japan)
Comment()

[1P-352]Medial nucleus accumbens dopamine receptors modulate motivation for wheel running in male mice

*Naoya Nishitani1,2, Taisuke Kokume2, Harumi Taniguchi1, Katsuyuki Kaneda1,2 (1. Lab Mol Pharmacol, Inst Med, Pharmaceut, Health Sci, Kanazawa Univ, Kanazawa, Japan, 2. Lab Mol Pharmacol, Sch Pharmaceut Sci, Kanazawa Univ, Kanazawa, Japan)
Comment()

[1P-353]A distinct subset of hypothalamic neurons encodes a conspecific-tuned behavioral state that drives male mouse social investigation

*Shih-Che Alex Lin1,2, Ting-An Su2, Han-Jhuan Lee4, Yvonne Hsu2, Shi-Bing Yang3,2 (1. Taiwan International Graduate Program in Interdisciplinary Neuroscience, National Taiwan University, Taipei, Taiwan , 2. Institute of Biomedical Sciences, Academia Sinica, Taipei, Taiwan, 3. Neuroscience Program of Academia Sinica, Academia Sinica, Taipei, Taiwan, 4. Department of Biotechnology and Animal Science, National Ilan University, Ilan, Taiwan)
Comment()

[1P-354]Investigating neural mechanisms of intrinsic motivation for non-courtship singing in zebra finches.

*Ok-Yi Jeong1, Chihiro Mori3, Yunbok Kim2, Satoshi Kojima2 (1. Brain Sciences Department, Daegu Gyeongbuk Institute of Science and Technology, 333 Techno Jungang-daero, Hyeonpung-eup, Dalseong-gun, Daegu 42988, Republic of Korea, 2. Sensory and Motor Systems Research Group, Korea Brain Research Institute, 61, Cheomdan-ro, Dong-gu, Deagu, 41062, Republic of Korea, 3. Department of Molecular Biology, Faculty of Pharmaceutical Sciences, Teikyo University, 2-11-1 Kaga, Itabashi-ku, Tokyo 173-8605, Japan)
Comment()

[1P-355]Population Dynamics in Mouse Dorsomedial Frontal Cortex Track Locomotor Speed and Task Progression During Motivated Behavior

*Joao Pedro Junqueira1, Noritaka Imai1, Jumpei Matsumoto1,2, Tsuyoshi Setogawa1,2, Hiroshi Nishimaru1,2 (1. System Emotional Science, Faculty of Med, Univ of Toyama, Toyama, Japan, 2. RCIBS, Univ of Toyama, Toyama, Japan)
Comment()

[1P-356]Decoding bodily sensation maps from brain activity

*Moana Mikami1, Misato Tanaka1, Yoshihiro Nagano1, Yukiyasu Kamitani1,2 (1. Kyoto University Graduate School of Informatics, 2. Advanced Telecommunications Research Institute International (ATR))
Comment()

[1P-357]Cannabidiol alleviates stress-induced repetitive/compulsive-like
behaviors through suppression of cellular senescence in mice

*Sheng-Yu Wu1, Yi-Jing Chen1, Wen Dai1, Sherry Shu-Jung Hu1 (1. Department of Psychology, National Cheng Kung University, Tainan, Taiwan)
Comment()

[1P-358]Serotonergic activity in the median raphe nucleus regulates negative emotion-related facial expressions in mice

*Yu Ohmura1, Akihiro Yamanaka1 (1. Chinese Institute for Brain Research, Beijing (CIBR))
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[1P-359]Reciprocal influence of empathy and depression: Behavioral and neural evidence from the rodent model of emotional contagion

*Satoshi Kitazume1, Kisho Obi-Nagata2, Noriyuki Koibuchi2 (1. Gunma University School of Medicine, Faculty of Medicine, 2. Gunma University Graduate School of Medicine)
Comment()

[1P-360]The effect of psychosocial stress on orofacial nociception in female rats

*Shiori Kawasaki1, Masayuki Kobayashi1 (1. Dept. of Pharmacology , Nihon University School of Dentistry)
Comment()

[1P-361]Characterizing stress-induced social behavioral changes: a temporal analysis of target-specific vigilance-like behavior in the repeated social defeat stress mode

*Mizuki Masukawa1,2, Mikiyasu Yamamoto1,2, Shuhei Ueda1,2, Sayaka Takemoto-Kimura1,2 (1. Department of Neuroscience, Research Institute of Environmental Medicine, Nagoya University, Nagoya, Japan, 2. Molecular/Cellular Neuroscience, Nagoya University Graduate School of Medicine, Nagoya University, Nagoya, Japan)
Comment()

[1P-362]Correlation analysis of neural activity in the medial amygdala and medial preoptic area related to paternal behavior

*Yuzu Takabayashi1, Shunnsaku Murakawa1, Masabumi Minami1, Taiju Amano1 (1. Graduate School of Pharmaceutical Sciences, Hokkaido University)
Comment()

[1P-363]Predominant Glutamatergic Identity and GABA Modulatory Features of Parvalbumin-Positive Neurons in the Lateral Habenula

*Mai Hoang Tran1, Thi Van Trang Nguyen1, Tomoya Nakamura1, Hiroyuki Ichijo1 (1. Department of Anatomy, Faculty of Medicine, Toyama University, Japan)
Comment()

[1P-364]Early life stress induced by maternal separation affects affiliative behavior and vocal communication

*Ryo Nishibori1,2, Harutaka Nakagawa1, Yume Kinoshita1, Naoki Matsumoto1, Kazuki Tanaka Shin'ya1,2, Yuta Tamai3,2, Yuki Ito4, Kohta I Kobayasi1 (1. Grad Sch Life and Med Sci, Doshisha Univ, Kyoto, Japan, 2. Japan Society for the Promotion of Science, 3. Fac Lett, Keio Univ, Tokyo, Japan, 4. Grad Sch Neurosci, Doshisha Univ, Kyoto, Japan)
Comment()

[1P-365]Anatomical dissection of a novel segregated pathway from Hippocampal CA2 to the Septal Complex

*Peizheng Liu1,2, Hongshen He2, Thomas McHugh2 (1. Department of Information and Communication Engineering, Faculty of Engineering, The University of Tokyo, 2. RIKEN Center for Brain Science)
Comment()

[1P-366]Unraveling the Neural Circuitry for Processing Conflicting information in Brain

*Habib Ullah1, Yu-Luen Hwang2, Ming-Chi Hsu2, Hsueh-Cheng Chiang1 (1. National Cheng Kung University, Tainan, Taiwan; TIGP-INS, Academia Sinica, Taipei, Taiwan., 2. National Cheng Kung University, Tainan)
Comment()

[1P-367]Quantifying Mediating Behavior in Two-Alternative Forced Choice Delayed Matching and Non-Matching-to-Position Tasks in Mice (Mus musculus) using automated tracking technologies

*Kazuhiro Goto Goto1, Shoko Yuki2 (1. Sagami Women's University, 2. National Center of Neurology and Psychiatry)
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[1P-368]A Sleep-Active Hippocampal Interneuron for Memory Consolidation

*Min Xu1 (1. Institute of Neuroscience, Chinese Academy of Sciences)
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[1P-369]Modulation of Memory Consolidation by Phase-Aligned Closed-Loop tACS During Sleep

*Daisuke Shimane1, Teppei Okano2, Chengmi Hu2, Masaki Takeda1,2 (1. Res. Cent. Brain Commun., Kochi Univ. of Tech., Kochi, JAPAN, 2. Sch. Informatics, Kochi Univ. of Tech., Kochi, JAPAN)
Comment()

[1P-370]Identification and reactivation of VNS-responsive brain circuits involved in cognitive function

*Tateki Kobayashi1, Musashi Yamakawa2, Ziyan Xie2, Nahoko Kuga2, Takuya Sasaki2,3 (1. Dept. Pharmacol., Fac. Pharm. Sci., Tohoku Univ., Miyagi, Japan, 2. Dept. Pharmacol., Grad. Sch. Pharm., Tohoku Univ., Miyagi, Japan, 3. Dept. Neuropharmacol., Grad. Sch. Med., Tohoku Univ., Miyagi, Japan)
Comment()

[1P-371]Synaptotagmin 7 functions as Ca2+-sensing molecular switch for synaptic facilitation and initiates memory formation in Drosophila

*Akira Sakurai1, Motojiro Yoshihara1 (1. NICT, Kobe, Japan)
Comment()

[1P-372]Revealing the Role of Structural LTP in Memory Consolidation and Reconsolidation Using Chromophore-Assisted Light Inactivation

*Yuki Murai1,2, Shiwei Fu2, Yasunori Hayashi1, Akihiro Goto2,3 (1. Department of Pharmacology, Kyoto University Graduate School of Medicine, Kyoto, Japan, 2. Hakubi Center for Advanced Research, Kyoto University, Kyoto, Japan, 3. PRESTO, Japan Science and Technology Agency (JST))
Comment()

[1P-373]Contribution of MEC and LEC to Hippocampal Functional Neuronal Organization

*Shoko Arai1, Krzysztof A. Sypniewski1, Constantine Pavlides1 (1. Grad Comprehens Human Sci, Univ of Tsukuba, Japan)
Comment()

[1P-374]Investigating the internal neural triggers of spontaneous recall/thought: An approach using neural decoding

*Hiroki Kurashige1,2,3, Miyu Aizawa1 (1. Sch Info Telecom Eng, Tokai Univ, Tokyo, Japan, 2. TRIC, Tokai Univ, Tokyo, Japan, 3. Inst Adv Biosci, Tokai Univ, Kanagawa, Japan)
Comment()

[1P-375]Neural activity in the hippocampus of mice pretreated with rice-memolin

*Takeshi Nagahiro1, Yuji Ikegaya1,2, Nobuyoshi Matsumoto1,2 (1. Grad Sch Pharm, Univ of Tokyo, Tokyo, Japan, 2. Institute for AI and Beyond, Tokyo, Japan)
Comment()

[1P-376]Activation of μ-δ Heteromer Attenuates Behavioural Hypersensitivity and Microglia Mediated Neuroinflammation in Murine Model of Chemotherapy-induced Neuropathic Pain

*Somesh Agrawal1, Vinod Tiwari1 (1. Indian Institute of Technology (Banaras Hindu University) Varanasi)
Comment()

[1P-377]Diaschisis and Plasticity in Large-scale Neural Network Change Following Brain Lesion and Recovery in Non-human Primates

*Tatsuya Yamamoto1,2, Yuko Yoshida2, Takayuki Ose3, Yumi Murata2, Takuya Hayashi3, Noriyuki Higo2 (1. Fac Med & Health Sci, Tsukuba Int Univ, Tsuchiura, Japan, 2. Human Informatics and Interaction Res Inst, AIST, Tsukuba, Japan, 3. Lab Brain Connectomics Imaging, RIKEN Ctr Biosystems Dynamics Res, Kobe, Japan)
Comment()

[1P-378]Can vision-based approach assess mice tremors? Mice tremor level estimation via image-based animal pose tracking

*Yota Koshimoto1, Akihiro Tsukahara2, Yasuhiro Moriwaki2, Mariko Isogawa1 (1. Grad Sch Sci and Tech, Keio Univ, Tokyo, Japan, 2. Division of Basic Biological Sciences, Fac Pharm, Keio Univ. Tokyo, Japan)
Comment()

[1P-379]Purkinje cell axonal patholgy in the essential tremor cerebellum: implications for human Purkinje cell type and cerebellar corticonuclear signaling.

*Hirofumi Fujita1, James Widner2, Phyllis L Faust3, Elan D Louis1 (1. UT Southwestern Medical Center, 2. Baylor College of Medicine, 3. Columbia University)
Comment()

[1P-380]Synaptic stabilization by STN-DBS selectively normalizes cortical spine dynamics in a mouse model of Parkinson’s disease

*Han-Yuan Yeh1,2, Rui-Ni Wu1,2, Chao-Chen Kuo1,2, Wen-Chieh Chao1, Bing-Shuian Wu1,2,3, Yu-Ting Hu1,2,4, Ping-Yen Wu1,2, Zhao-Bo Cai1,2, Yu-Wei Wu1,2,3,4 (1. Institute of Molecular Biology, Academia Sinica, Taipei 115, Taiwan, 2. Neuroscience Program in Academia Sinica (NPAS), Academia Sinica, Taipei 115, Taiwan , 3. Department of Life Science, College of Life Science, National Taiwan University, Taipei 106, Taiwan , 4. Genome and Systems Biology Graduate Program, College of Life Science, National Taiwan University, Taipei 106, Taiwan)
Comment()

[1P-381]Developmental epileptic encephalopathy mouse model exhibits cognitive dysfunction and impaired consciousness

*Masato Asai1, Motoki Tanaka1, Yumi Tsuneura1, Tsuyoshi Takagi1, Machiko Iida1 (1. Aichi Developmental Disability Center, Institute For Developmental Research)
Comment()

[1P-382]Anatomical shifts in c-Fos-positive regions during the establishment of hippocampal sclerosis in a genetic animal model of mesial temporal lobe epilepsy

*Machiko Iida1, Motoki Tanaka1, Yumi Tsuneura1, Masato Asai1 (1. Institute For Developmental Research, Aichi Developmental Disability Center)
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[1P-383]Integrated Multi-Omics and Xenium-Based Spatial Transcriptomics Reveal Pathogenic Mechanisms in Hemimegalencephaly

*Ayane Hosaka1 (1. National Center of Neurology and Psychiatry)
Comment()

[1P-384]Repetitive wide-band cortical power in benign adult familial myoclonus epilepsy

*Haruo Yamanaka1,2, Katsuya Kobayashi2, Takefumi Hitomi3,5, Maya Tojima2, Masao Matsuhashi4, Kiyohide Usami3, Ryosuke Takahashi2, Akio Ikeda4 (1. Japanese Red Cross Fukui Hospital, 2. Department of Neurology, Kyoto University Graduate School of Medicine, 3. Department of Clinical Laboratory, Kyoto University Hospital, 4. Department of Epilepsy, Movement Disorders and Physiology, Kyoto University Graduate School of Medicine, 5. Department of Neurology, Hirakata general hospital for developmental disorders)
Comment()

[1P-385]Direct mitochondria transfer alleviates transneuronal degeneration in spinal cord injury via calcium buffering

*Yuichiro Ohnishi1, Satoko Arakawa2, Ayano Suzuki3, Shigenobu Yonemura3, Masamichi Yamamoto1 (1. National Cerebral and Cardiovascular Center, 2. Institute of Science of Tokyo, 3. Tokushima University)
Comment()

[1P-386]Microglia-Mediated Synaptic Pruning via the C1q-C3 Axis Underlies Transcranial Direct Current Stimulation Efficacy in Post-Stroke Recovery: Identification of ΔC3 as a Novel Prognostic Biomarker

*Zhengrun Gao1, Yuting Ge1, Yuan Liu1, Jianfei Lu1 (1. Shanghai Jiao Tong University School of Medicine)
Comment()

[1P-388]Waiting for reward deactivates the retrosplenial cortex in mice

*Razvan Gamanut1, Katsuhiko Miyazaki1, Kenji Doya1 (1. Neural Computation Unit, Okinawa Institute of Science and Technology Graduate University, Onna-son, Japan)
Comment()

[1P-389]Driver's attentional state discrimination model using fNIRS(functional Near-Infrared Spectroscopy) signals

*Masato Okano1, Hisashi Yoshida1, Takeshi Kohama1 (1. Grad Sch Biology-Oriented Sci and Tech, Kindai Univ, Wakayama, Japan)
Comment()

[1P-390]Task-Dependent Neural Representation of the Relational Structure of Subjective Color Experiences

*Ryuto Inoue1,2, Daisuke Matsuyoshi2, Takahiro Hirao3, Mitsuhiro Miyamae4,2, Yasunori Aizawa1,3, Naotsugu Tsuchiya5,6, Makiko Yamada1,2,3 (1. Grad Sch Med, Tohoku University, Miyagi, Japan, 2. QST Inst Quantum Med Sci, Chiba, Japan, 3. QST Inst Quantum Life Sci, Chiba, Japan, 4. NCNP Ctr Cogn Behav Ther, Tokyo, Japan, 5. Sch Psychol Sci, Monash Univ, Melbourne, Australia, 6. ATR Brain Information Communication Res Lab, Kyoto, Japan)
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[1P-391]Analyzing multi-channel LFP during social interactions between two mice using machine-learning

*Kyosuke Osaka1, Xiaoying Tuo1, Ren Saito1, Shohei Ochi2, Takako Kikkawa2, Ken-Ichiro Tsutsui4, Noriko Osumi2, Atsushi Tamura5, Takuya Sasaki1,3 (1. Dept Pharmacology, Grad Sch Pharm Sci, Tohoku Univ, Sendai, Japan, 2. Dept Developmental Neuroscience, Grad Sch Med, Tohoku Univ, Sendai, Japan, 3. Dep Neuropharmacology, Grad Sch Med, Tohoku Univ, Sendai, Japan, 4. Dept Systems Neuroscience, Grad Sch Life Sci, Tohoku Univ, Sendai, Japan, 5. Dept Medical Physics and Engineering, Grad Sch Med, Univ of Osaka, Osaka, Japan)
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[1P-392]Vocal developmental trajectories in the marmoset

*Jay Patrick Nakamura1, Tomomi Shimogori1 (1. RIKEN Center for Brain Science, Wako-shi, Japan)
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[1P-393]Changes in heart rate variability and maternal behavior during perinatal period in mice

*Kie Shimizu1, Akitsugu Konno1, Sayaka Arata Kuze1, Takefumi Kikusui1, Kazutaka Mogi1 (1. Azabu university)
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[1P-394]Evaluating Macaque Social Hierarchies with Minimal Interactions via Automated Video Analysis

*Rafael Bretas1, Kazuki Enomoto1, Masahiko Haruno1 (1. Center for Information and Neural Networks, NICT, Suita, Japan)
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[1P-395]Empathic concern toward conspecifics in nausea through olfactory signals in rats

*Michimasa Toyoshima1, Reina Tachihara1, Akane Chiba1, Tingbi Xiong1, Pranoti Durve1, Miyo Hori1, Kazuo Yamada1 (1. Laboratory of Psychology & Behavioral Neuroscience,University of Tsukuba)
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[1P-396]Using event-related potentials to explore the neural mechanisms of social exclusion in domestic violence offenders

*LunWing Lok1, ChiaoYun Chen1 (1. National Chung Cheng University)
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[1P-397]Rapid prosocial behavior exhibited by subordinate macaque monkeys in decision-making based on reward and aversive stimuli

*Kazuki Enomoto1, Rafael Bretas1, Kei Watanabe2, Masahiko Haruno1 (1. NICT, 2. Osaka University Graduate School of Frontier Biosciences)
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[1P-398]Assessing Persistent Environmental Pollutant's Hidden Threats Using High-Sensitivity Approach

*Ravidarshdeep kaur1 (1. Chitkara College Of Pharmacy, Chitkara University, Punjab, India)
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[1P-399]No effect of 4 and 6 mA tDCS on cortical excitability and explicit motor sequence learning

*Gavin Hsu1, Zhenous Hadi Jafari1, Abdelrahman Ahmed1, Dylan J. Edwards2,3, Leonardo G. Cohen4, Lucas C. Parra1 (1. Department of Biomedical Engineering, The City College of New York, New York, NY, United States, 2. Moss Rehabilitation Research Institute, Elkins Park, PA, United States, 3. School of Medical and Health Sciences, and Exercise Medicine Research Institute, Edith Cowan University, Joondalup, WA, Australia, 4. National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, MD, United States)
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[1P-400]Effect of stimulus encoding schemes in physical reservoir computing with micropatterned neuronal networks.

*Yusei Nishi1,2, Hideaki Yamamoto1,2,3, Takuma Sumi3, Ayumi Hirano-Iwata1,2,3, Yuichi Katori4,5, Shigeo Sato1,2 (1. Grad Sch Eng, Tohoku univ, Miyagi, Japan, 2. RIEC, Tohoku univ, Miyagi, Japan, 3. WPI-AIMR, Tohoku univ, Miyagi, Japan, 4. Grad Sch Syst Inf, Future Univ Hakodate, Hokkaido, Japan, 5. WPI-IRCN, Univ of Tokyo, Tokyo, Japan)
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[1P-401]Precision Microfluidic Control of Neuronal Ensembles in Cultured Cortical Networks

*Hakuba Murota1,2, Hideaki Yamamoto1,2,3, Nobuaki Monma1,2, Shigeo Sato1,2, Ayumi Hirano-Iwata1,2,3 (1. Grad. Sch. Eng., Tohoku univ., 2. RIEC, Tohoku univ., 3. AIMR, Tohoku univ.)
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[1P-402]Investigating the neuromodulatory effects of rTMS using fMRI in non-human primates

*Wen-Kai You1,2, You-Ping Yang1,2, Cian-Cian Chen2,3, Kuo-Hsing Ma2,4, Ting-Yu Chang1,2, Ke-Hsin Chen1,2 (1. School of Medicine, National Defense Medical Center, Taipei, Taiwan, 2. Brain Research Center, National Defense Medical Center, Taipei, Taiwan, 3. Graduate Institute of Life Sciences, National Defense Medical Center, Taipei, Taiwan, 4. Department of Biology and Anatomy, National Defense Medical Center, Taipei, Taiwan)
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[1P-403]Single-cell Resolution Functional Networks During Unconsciousness Are Segregated Into Spatially Intermixed Modules

*Ikumi Oomoto1, Daiki Kiyooka2, Jun Kitazono3, Yasuhito Saito1, Midori Kobayashi1, Chie Matsubara1, Kenta Kobayashi4, Masafumi Oizumi2, Masanori Murayama1 (1. RIKEN CBS, Saitama, Japan, 2. Grad Sch Arts and Sci, Univ of Tokyo, Tokyo, Japan, 3. Sch Data Sci, Yokohama City Univ, Kanagawa, Japan, 4. NIPS, Aichi, Japan)
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[1P-404]Development of multi-plane wide field-of-view two-photon microscopy with three-dimensional single-cell optogenetics

*Hiroyuki Uwamori1, Yoshihito Saito1, Yasuhiro Oisi1, Midori Kobayashi1, Maya Odagawa1, Chie Matsubara1, Kenta Kobayashi2, Shigeki Kato3, Kazuto Kobayashi3, Tatsushi Yokoyama4, Masayuki Sakamoto4, Takahiro Ode5, Masanori Murayama1 (1. RIKEN, 2. NIPS Center for Genetic Analysis of Behavior, 3. Fukushima Medical University Department of Molecular Genetics, 4. Kyoto University Graduate School of Biostudies, 5. FOV Corporation)
Comment()

[1P-405]Development and characterization of a one-photon wide-field voltage imaging system for recording large-scale cortical dynamics

*Masayuki Fukuda1,2, Yoshihito Saito1,3, Yasuhiro Oisi1, Chie Matsubara1, Kenta Kobayashi4, Masanori Murayama1 (1. Laboratory for Haptic Perception and Cognitive Physiology, RIKEN Center for Brain Science, Saitama, Japan, 2. Grad Sch Med, Univ of Tokyo, Tokyo, Japan, 3. Department of Neurobiology and Behavior, Cornell University, NY, USA, 4. Section of Viral Vector Development, National Institute for Physiological Sciences, Aichi, Japan)
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[1P-406]Skull clearing technique for brain boundary live imaging

*Nae Saito1, Hitoshi Uchida1, Liu Xinyi1, Motokazu Uchigashima2, Takayasu Mikuni2, Kazuki Tainaka1 (1. Department of System Pathology for Neurological Disorders, Brain Research Institute, Niigata University, Niigata, Japan, 2. Department of Cellular Neuropathology, Brain Research Institute, Niigata University, Niigata, Japan)
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[1P-407]A Three Dimensional Immunolabeling Method with Peroxidase-fused Nanobodies and Fluorochromized Tyramide-Glucose Oxidase Signal Amplification

*Kenta Yamauchi1,2, Masato Koike2, Hiroyuki Hioki1,2,3 (1. Dept Neuroanat, Juntendo Univ Grad Sch Med, Tokyo, Japan, 2. Dept Cell Biol Neurosci, Juntendo Univ Grad Sch Med, Tokyo, Japan, 3. Dept Multi-Scale Brain Structure Imaging, Juntendo Univ Grad Sch Med, Tokyo, Japan)
Comment()