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    第2章 令和3年度山口大学構内遺跡の調査 - 第4節 光構内(御手洗遺跡・月待山遺跡)の調査

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    Anti-ischemic Effects of Focal Brain Cooling are Mediated by Modulation of Transient Receptor Potential Vanilloid 4 Channels in Mice

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    Focal brain cooling (FBC) at 15℃ and transient receptor potential vanilloid 4 (TRPV4) deficiency relieve brain infarction. TRPV4 channels are inactivated by cooling (< 27℃), suggesting that the anti-ischemic effects of FBC include those of TRPV4 inactivation. However, the extent to which TRPV4 inactivation contributes to the anti-ischemic, anti- blood-brain barrier (BBB) disruption, and anti-apoptosis effects of FBC on cerebral infarction remains unclear. We investigated the contribution and mechanisms of RN1734, a TRPV4 antagonist, in FBC for cerebral infarction using TRPV4 knockout and wild-type mice. Focal cerebral infarction was induced by photochemically induced thrombosis. Infarct volume, BBB disruption, and number of apoptotic cells were evaluated. The TRPV4 antagonist or deficiency showed similar anti-ischemic and anti-BBB disruptive effects to those of FBC. Intracerebroventricular injection of RN1734 showed a similar reduction in the number of apoptotic cells to that of FBC. These anti-ischemic and -apoptotic effects were completely inhibited with injection of GSK1016790A, a TRPV4 agonist, immediately before FBC. Our results showed that TRPV4 modulation is the primary factor contributing to the antiischemic effects of FBC, and TRPV4 channel inactivation relieve focal ischemic infarction by relieving BBB disruption and preventing apoptosis. Therefore, FBC treatment improves ischemic stroke through the modulation of TRPV4 channels

    入学前教育の導入を規定する要因と導入時期にみる目的

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    乱流境界層における壁面せん断応力直接測定とリブレットによる抵抗低減に関する実験的研究

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    博士(工学)山口大学Yamaguchi Universit

    大規模地震後の降雨により発生した土砂移動の特徴と土砂災害発生リスクに関する研究

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    博士(工学)山口大学Yamaguchi Universit

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