12 research outputs found

    Developmental changes in autonomic responses are associated with future reward/punishment expectations: A study of sympathetic skin responses in the Markov decision task

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    University of Yamanashi (山梨大学)博士(医学)医工博乙第91号 Brain and Development Volume 39, Issue 7, August 2017, Pages 573-582に掲載。 https://doi.org/10.1016/j.braindev.2017.03.004thesi

    Improved Search for νμ→νe Oscillation in a Long-Baseline Accelerator Experiment

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    journal articl

    OFDM協調通信を採用する高度道路交通システム用通信ネットワークの研究

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    application/pdf三重大学大学院工学研究科博士前期課程電気電子工学専攻65thesi

    瀧谷油田採油計畫

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    東京帝国大学工科大学種別:卒業論文thesi

    ラットのopen-field behaviorの観測に関する問題

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    1976-03departmental bulletin pape

    0812-9869-9940 (WA), Jual Keranda Mayat Kalijambe

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    Shootin1-cortactin interaction mediates signal-force transduction for axon outgrowth

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    Motile cells transduce environmental chemical signals into mechanical forces to achieve properly controlled migration. This signal-force transduction is thought to require regulated mechanical coupling between actin filaments (F-actins), which undergo retrograde flow at the cellular leading edge, and cell adhesions via linker "clutch" molecules. However, the molecular machinery mediating this regulatory coupling remains unclear. Here we show that the F-actin binding molecule cortactin directly interacts with a clutch molecule, shootin1, in axonal growth cones, thereby mediating the linkage between F-actin retrograde flow and cell adhesions through L1-CAM. Shootin1-cortactin interaction was enhanced by shootin1 phosphorylation by Pak1, which is activated by the axonal chemoattractant netrin-1. We provide evidence that shootin1-cortactin interaction participates in netrin-1-induced F-actin adhesion coupling and in the promotion of traction forces for axon outgrowth. Under cell signaling, this regulatory F-actin adhesion coupling in growth cones cooperates with actin polymerization for efficient cellular motility.journal articl
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