首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Activity of the layer II/III neurons in the somatosensory cortex (SSC) plays a critical role on functional recovery after focal stroke in the contralateral SSC
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Activity of the layer II/III neurons in the somatosensory cortex (SSC) plays a critical role on functional recovery after focal stroke in the contralateral SSC

机译:体感皮层(SSC)中II / III层神经元的活性在对侧SSC局灶性卒中后的功能恢复中起关键作用

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摘要

Stroke in somatosensory cortex remodeled neuronal circuit in cotralateral area.Neuronal circuit remodeling was mainly induced at 1 week after stroke.Layer II/III neuron was mainly contribute the remodeling.Degree of remodeling in layer II/III neuron was correlated with functional recovery. Optimal functional recovery after stroke is the most important to improve quality of life. Contralateral hemisphere of infarction site plays an important role for the recovery. The underlying processes in contralateral hemisphere during recovery have not yet been fully elucidated. We have previously reported the increase in synaptic turnover in the contralateral somatosensory cortex (SSC) during 1st week after infarction of the unilateral SSC. The neuronal circuit was remodeled after this period to process bilateral information in the remaining hemisphere, and functional compensation was achieved. In the present study, we used in vivo electrophysiological recording to detect the current source density (CSD) for somatosensory input. Interestingly, a specific CSD pattern was detected in the layer II/III region of contralateral SSC and the duration was significantly correlated with functional recovery. These results indicate that the compensational remodeling of neuronal circuit in the intact hemisphere may be dominantly induced in layer II/III neurons.
机译:体感皮层的卒中在同侧区域重塑了神经元回路。中风后1周主要诱导了神经元回路的重塑,II / III层神经元的重塑是主要的原因.II / III层神经元的重塑程度与功能恢复有关。中风后最佳的功能恢复对改善生活质量至关重要。对侧梗塞部位的对侧半球对恢复起着重要作用。恢复过程中对侧半球的潜在过程尚未完全阐明。我们先前曾报道过单侧SSC梗死后第一周,对侧体感皮层(SSC)的突触周转增加。在此期间之后,对神经元回路进行了改造,以处理剩余半球中的双边信息,并实现了功能补偿。在本研究中,我们使用体内电生理记录来检测体感输入的电流源密度(CSD)。有趣的是,在对侧SSC的II / III层区域检测到了特定的CSD模式,其持续时间与功能恢复显着相关。这些结果表明,完整的半球中神经元回路的补偿性重塑可能在II / III层神经元中占主导地位。

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