東京大学 · 神経科学
Matsumoto教授の研究室は、脳の微細な神経回路機構とその機能的動態に注目し、特に海馬のCA2領域や縁上回条における神経活動のサブスレーブ膜電位変動や、空間認識・社会行動に関与する神経回路の発達的・生理的基盤を解明しています。また、神経細胞の特徴的マーカーの定量的解析や、生体信号(ECG)の呼吸依存的ノイズを用いた非挿入的生理モニタリング手法の開発も進めています。これらの研究は、記憶・行動制御の神経基盤を解明する上で、基礎神経科学の新たな枠組みを提供しています。
Figures are computed from collected data and may differ slightly.
The CA2 region is unique in the hippocampus; it receives direct synaptic innervations from several hypothalamic nuclei and expresses various receptors of neuromodulators, including adenosine, vasopressin, and oxytocin. Furthermore, the CA2 region may have distinct brain functions, such as the control of instinctive and social behaviors; however, little is known about the dynamics of the subthreshold membrane potentials of CA2 neurons in vivo. We conducted whole-cell current-clamp recordings from
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The design of communication robots remains a relatively underdeveloped field. Such robots are often designed on a trial-and-error basis. Also, the shape of a robot heavily depends on the personal experience of a designer. In this paper, we discuss a method of designing long-term communication robots, which we call "minimal design." It is unlike other industrial robot design methods. We have already produced some such communication robots, and here we provide explanations of them. Furthermore, we
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Ramelteon is used to ameliorate sleep disorders that negatively affect memory performance; however, it remains unknown whether ramelteon strengthens neutral memories, which do not involve reward or punishment. To address this, we monitored behavior of mice treated with vehicle/ramelteon while they performed a novel object recognition task and a spontaneous alternation task. Object memory performance in the novel object recognition task was improved only if ramelteon was injected before training,
Excitatory neurons and GABAergic interneurons constitute neural circuits and play important roles in information processing. In certain brain regions, such as the neocortex and the hippocampus, there are fewer interneurons than excitatory neurons. Interneurons have been quantified via immunohistochemistry, for example, for GAD67, an isoform of glutamic acid decarboxylase. Additionally, the expression level of other proteins varies among cell types. For example, NeuN, a commonly used marker prote
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