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大鼠皮层缺血性中风病理的细胞分辨率监测

Cellular-resolution monitoring of ischemic stroke pathologies in the rat cortex.

作者信息

Chornyy Sergiy, Das Aniruddha, Borovicka Julie A, Patel Davina, Chan Hugh H, Hermann John K, Jaramillo Thomas C, Machado Andre G, Baker Kenneth B, Dana Hod

机构信息

Department of Neurosciences, Lerner Research Institute, Cleveland Clinic, 9500 Euclid Avenue, Cleveland, OH 44195, USA.

Rodent Behavioral Core, Lerner Research Institute, Cleveland Clinic, 9500 Euclid Avenue, Cleveland, OH 44195, USA.

出版信息

Biomed Opt Express. 2021 Jul 16;12(8):4901-4919. doi: 10.1364/BOE.432688. eCollection 2021 Aug 1.

Abstract

Stroke is a leading cause of disability in the Western world. Current post-stroke rehabilitation treatments are only effective in approximately half of the patients. Therefore, there is a pressing clinical need for developing new rehabilitation approaches for enhancing the recovery process, which requires the use of appropriate animal models. Here, we demonstrate the use of nonlinear microscopy of calcium sensors in the rat brain to study the effects of ischemic stroke injury on cortical activity patterns. We longitudinally recorded from thousands of neurons labeled with a genetically-encoded calcium indicator before and after an ischemic stroke injury in the primary motor cortex. We show that this injury has an effect on the activity patterns of neurons not only in the motor and somatosensory cortices, but also in the more distant visual cortex, and that these changes include modified firing rates and kinetics of neuronal activity patterns in response to a sensory stimulus. Changes in neuronal population activity provided animal-specific, circuit-level information on the post-stroke cortical reorganization process, which may be essential for evaluating the efficacy of new approaches for enhancing the recovery process.

摘要

中风是西方世界导致残疾的主要原因。目前的中风后康复治疗仅对约一半的患者有效。因此,临床上迫切需要开发新的康复方法来加速恢复进程,这需要使用合适的动物模型。在此,我们展示了利用大鼠脑中钙传感器的非线性显微镜来研究缺血性脑损伤对皮质活动模式的影响。我们在初级运动皮质发生缺血性脑损伤前后,对数千个用基因编码钙指示剂标记的神经元进行了纵向记录。我们发现,这种损伤不仅对运动和体感皮质中的神经元活动模式有影响,对距离更远的视觉皮质中的神经元活动模式也有影响,而且这些变化包括神经元活动模式对感觉刺激的发放率和动力学改变。神经元群体活动的变化提供了关于中风后皮质重组过程的动物特异性、回路水平信息,这对于评估加速恢复进程的新方法的疗效可能至关重要。

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Cellular-resolution monitoring of ischemic stroke pathologies in the rat cortex.大鼠皮层缺血性中风病理的细胞分辨率监测
Biomed Opt Express. 2021 Jul 16;12(8):4901-4919. doi: 10.1364/BOE.432688. eCollection 2021 Aug 1.
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本文引用的文献

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Searching for the optimal tDCS target for motor rehabilitation.寻找运动康复最佳 tDCS 靶点。
J Neuroeng Rehabil. 2019 Jul 17;16(1):90. doi: 10.1186/s12984-019-0561-5.

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