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Quantitative analysis of neural plasticity in motorcortex during functional recovery post spinal cord injury

机译:脊髓损伤后功能恢复期间运动皮质神经可塑性的定量分析

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The impact of spinal cord injury (SCI) on potential functional reorganization in neuronal populations in motor cortical areas remains unknown, though its influence on functional recovery may be significant. The cortical neuronal data was recorded from a monkey while it was trained to walk bipedally on a treadmill both before and after spinal cord injury. By using the correlation coefficients between different neurons, we constructed graphs for multiple steps in different sessions. The global efficiency of the graph was then calculated to investigate the effect of SCI on the neuronal activity patterns and how the correlation between the neurons changes as the functional recovery continued. Our results indicate that the observed significant changes in neuronal activity patterns in the motor cortex, although preliminary, suggest that the patterns of functional reorganization (neural plasticity) in motor areas of the cortex correlate and contribute to the functional recovery.
机译:尽管运动损伤对功能恢复的影响可能很大,但脊髓损伤(SCI)对运动皮质区域神经元群体潜在的功能重组的影响仍然未知。从猴子那里记录了皮质神经元数据,同时训练了猴子在脊髓损伤之前和之后在跑步机上双足行走。通过使用不同神经元之间的相关系数,我们为不同会话中的多个步骤构建了图。然后计算该图的整体效率,以研究SCI对神经元活动模式的影响以及随着功能恢复的持续,神经元之间的相关性如何变化。我们的结果表明,尽管是初步的,但观察到的运动皮层神经元活动模式的显着变化表明,皮层运动区中的功能重组(神经可塑性)模式相关并有助于功能恢复。

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