Resultats de la cerca - Pan‐Yue Deng
- Mostrar 1 - 18 resultats de 18
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Channelopathies in fragile X syndrome per Pan‐Yue Deng, Vitaly A. Klyachko
Publicat 2021Revisão -
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Voltage-Independent SK-Channel Dysfunction Causes Neuronal Hyperexcitability in the Hippocampus of<i>Fmr1</i>Knock-Out Mice per Pan‐Yue Deng, Dan Carlin, Young Mi Oh, Leila K. Myrick, Stephen T. Warren, Valeria Cavalli, Vitaly A. Klyachko
Publicat 2018Artigo -
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FMRP Regulates Neurotransmitter Release and Synaptic Information Transmission by Modulating Action Potential Duration via BK Channels per Pan‐Yue Deng, Ziv Rotman, Jay A. Blundon, Yongcheol Cho, Jianmin Cui, Valeria Cavalli, Stanislav S. Zakharenko, Vitaly A. Klyachko
Publicat 2013Artigo -
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Noradrenergic Depression of Neuronal Excitability in the Entorhinal Cortex via Activation of TREK-2 K+ Channels per Zhaoyang Xiao, Pan‐Yue Deng, Lalida Rojanathammanee, Chuanxiu Yang, Laurel A. Grisanti, Kannika Permpoonputtana, David Weinshenker, Van A. Doze, James E. Porter, Saobo Lei
Publicat 2009Artigo -
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Generation of Human Striatal Neurons by MicroRNA-Dependent Direct Conversion of Fibroblasts per Matheus B. Victor, Michelle Richner, Tracey O. Hermanstyne, Joseph L. Ransdell, Courtney Sobieski, Pan‐Yue Deng, Vitaly A. Klyachko, Jeanne M. Nerbonne, Andrew S. Yoo
Publicat 2014Artigo -
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Cholecystokinin Facilitates Glutamate Release by Increasing the Number of Readily Releasable Vesicles and Releasing Probability per Pan‐Yue Deng, Zhaoyang Xiao, Archana Jha, David Ramonet, Toshimitsu Matsui, Michael Leitges, Hee‐Sup Shin, James E. Porter, Jonathan D. Geiger, Saobo Lei
Publicat 2010Artigo -
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GABAB Receptor Activation Inhibits Neuronal Excitability and Spatial Learning in the Entorhinal Cortex by Activating TREK-2 K+ Channels per Pan‐Yue Deng, Zhaoyang Xiao, Chuanxiu Yang, Lalida Rojanathammanee, Laurel A. Grisanti, John A. Watt, Jonathan D. Geiger, Rugao Liu, James E. Porter, Saobo Lei
Publicat 2009Artigo -
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Independent role for presynaptic FMRP revealed by an <i>FMR1</i> missense mutation associated with intellectual disability and seizures per Leila K. Myrick, Pan‐Yue Deng, Hideharu Hashimoto, Young Mi Oh, Yongcheol Cho, Mickaël Poidevin, Joshua A. Suhl, Jeannie Visootsak, Valeria Cavalli, Peng Jin, Xiaodong Cheng, Stephen T. Warren, Vitaly A. Klyachko
Publicat 2015Artigo
Eines de cerca:
Matèries relacionades
Biology
Neuroscience
Receptor
Biochemistry
Chemistry
Genetics
Gene
Hippocampal formation
Inhibitory postsynaptic potential
FMR1
Fragile X syndrome
Fragile x
Hippocampus
Medicine
Neurotransmission
Excitatory postsynaptic potential
Synaptic plasticity
Cell biology
Computer science
Entorhinal cortex
Biophysics
Endocrinology
Internal medicine
Membrane
Vesicle
Central nervous system
Computer network
Depolarization
Dopamine
GABAA receptor