Research theme for competitive and other funds (6):
2023 - 2027 発達障害モデルマウスにおける皮質間シナプスの障害とそのメカニズムの解明
2021 - 2025 Comprehensively identification of molecules at synapses and non-synaptic cell-adhesion structure
2020 - 2023 外界刺激へ応答するCblnファミリーを介した脳回路制御機構
2020 - 2022 Elucidating Functional Connectivity between Cerebellum and Prefrontal Cortex
2018 - 2020 発達障害の病態理解に向けた小脳-前頭前野-領野連関の解明
2017 - 2019 レット症候群における小脳神経回路異常の解明
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Papers (18):
Christopher S. Ward, Teng-Wei Huang, Jose A. Herrera, Rodney C. Samaco, Christopher M. McGraw, Diana E. Parra, E. Melissa Arvide, Aya Ito-Ishida, Xiangling Meng, Kerstin Ure, et al. Loss of MeCP2 Function Across Several Neuronal Populations Impairs Breathing Response to Acute Hypoxia. Frontiers in Neurology. 2020. 11
Aya Ito-Ishida, Steven A. Baker, Roy V. Sillitoe, Yaling Sun, Jian Zhou, Yukiteru Ono, Junichi Iwakiri, Michisuke Yuzaki, Huda Y. Zoghbi. MeCP2 Levels Regulate the 3D Structure of Heterochromatic Foci in Mouse Neurons. The Journal of Neuroscience. 2020. 40. 45. JN-RM
Takeuchi E, Ito-Ishida A, Yuzaki M, Yanagihara D. Improvement of cerebellar ataxic gait by injecting Cbln1 into the cerebellum of cbln1-null mice. Scientific Reports. 2018. 8. 1. 6184
Hui Lu, Ryan T. Ash, Lingjie He, Sara E. Kee, Wei Wang, Dinghui Yu, Shuang Hao, Xiangling Meng, Kerstin Ure, Aya Ito-Ishida, et al. Loss and Gain of MeCP2 Cause Similar Hippocampal Circuit Dysfunction that Is Rescued by Deep Brain Stimulation in a Rett Syndrome Mouse Model. NEURON. 2016. 91. 4. 739-747