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A fundamental question in neuroscience is on how a neuron processes innate and environmental cues in order to produce behaviorally relevant outputs. The several hypotheses how the inputs are stored, adapted, and learned have been proposed, yet their working models remain to be explored. For this, we study both the sensory system (for a mechanistic understanding of sensory learning) and hippocampus (for cellular mechanisms of memory) with modern techniques such as in vivo multichannel recording, two-photon imaging, in vivo whole-cell recording, and various behavior tasks. This research will be eventually applied to alleviate information processing disorders embedded in brain diseases.
A fundamental question in neuroscience is on how a neuron processes innate and environmental cues in order to produce behaviorally relevant outputs. The several hypotheses how the inputs are stored, adapted, and learned have been proposed, yet their working models remain to be explored. For this, we study both the sensory system (for a mechanistic understanding of sensory learning) and hippocampus (for cellular mechanisms of memory) with modern techniques such as in vivo multichannel recording, two-photon imaging, in vivo whole-cell recording, and various behavior tasks. This research will be eventually applied to alleviate information processing disorders embedded in brain diseases.
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论文共 42 篇作者统计合作学者相似作者
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BIOSENSORS & BIOELECTRONICS (2024): 115906-115906
FRONTIERS IN COMPUTATIONAL NEUROSCIENCE (2023): 1231924-1231924
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