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High temporal and spatial pattern stimulation to manipulate brain function

机译:高时空刺激刺激大脑功能

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In the central nervous system (CNS), glial cells, originally termed 'nervenkitt,' recently focused because of the understanding of their physiological functions. Here, we focused how glial cell regulates the function of neuronal circuits using in vivo two photon microscope. In this research, we visualized neural activity in the motor cortex during motor learning using in vivo two photon microscope to understand the abnormality of neural activity associated with impaired behavior output with myelin dysregulation. We further demonstrate the optogenetic stimulation to compensate the abnormal activity of neural activity to rescue the learning disability.
机译:在中枢神经系统(CNS)中,最初被称为“ nervenkitt”的神经胶质细胞由于对它们的生理功能的了解而受到关注。在这里,我们集中讨论了如何使用体内两个光子显微镜来调节神经胶质细胞的功能。在这项研究中,我们使用体内两个光子显微镜观察运动学习过程中运动皮质的神经活动,以了解与髓鞘功能异常导致的行为输出受损相关的神经活动异常。我们进一步证明了光遗传学刺激可以补偿神经活动的异常活动,以挽救学习障碍。

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