東北大学 · 神経科学
Tomomi Tsunematsu教授の研究室では、脳内の神経回路が睡眠・覚醒の制御に果たす役割を、遺伝子編集やオプトジェネティクスを用いた精密な神経活動操作によって解明しています。特にオレキシン神経やMCH神経、および脳幹の神経集団の活動が睡眠・覚醒状態に与える影響を、カルシウムイメージングや電気生理学的手法を組み合わせて解析しています。また、脱水状態下での行動制御や神経変性疾患と睡眠障害の関連についても、神経回路レベルでのメカニズムを追求しています。
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Orexin/hypocretin neurons have a crucial role in the regulation of sleep and wakefulness. To help determine how these neurons promote wakefulness, we generated transgenic mice in which orexin neurons expressed halorhodopsin (orexin/Halo mice), an orange light-activated neuronal silencer. Slice patch-clamp recordings of orexin neurons that expressed halorhodopsin demonstrated that orange light photic illumination immediately hyperpolarized membrane potential and inhibited orexin neuron discharge
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Article Figures and data Abstract eLife digest Introduction Results Discussion Materials and methods Data availability References Decision letter Author response Article and author information Metrics Abstract The brainstem plays a crucial role in sleep-wake regulation. However, the ensemble dynamics underlying sleep regulation remain poorly understood. Here, we show slow, state-predictive brainstem ensemble dynamics and state-dependent interactions between the brainstem and the hippocampus in m
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