介导功能恢复的通路。

Pathways mediating functional recovery.

作者信息

Baker Stuart N, Zaaimi Boubker, Fisher Karen M, Edgley Steve A, Soteropoulos Demetris S

机构信息

Institute of Neuroscience, Newcastle University, Newcastle upon Tyne, UK.

Institute of Neuroscience, Newcastle University, Newcastle upon Tyne, UK.

出版信息

Prog Brain Res. 2015;218:389-412. doi: 10.1016/bs.pbr.2014.12.010. Epub 2015 Mar 19.

Abstract

Following damage to the motor system (e.g., after stroke or spinal cord injury), recovery of upper limb function exploits the multiple pathways which allow motor commands to be sent to the spinal cord. Corticospinal fibers originate from premotor as well as primary motor cortex. While some corticospinal fibers make direct monosynaptic connections to motoneurons, there are also many connections to interneurons which allow control of motoneurons indirectly. Such interneurons may be placed within the cervical enlargement, or more rostrally (propriospinal interneurons). In addition, connections from cortex to the reticular formation in the brainstem allow motor commands to be sent over the reticulospinal tract to these spinal centers. In this review, we consider the relative roles of these different routes for the control of hand function, both in healthy primates and after recovery from lesion.

摘要

在运动系统受损后(如中风或脊髓损伤后),上肢功能的恢复利用了多条允许运动指令发送至脊髓的通路。皮质脊髓纤维起源于运动前区以及初级运动皮层。虽然一些皮质脊髓纤维与运动神经元形成直接的单突触连接,但也有许多与中间神经元的连接,从而间接控制运动神经元。这些中间神经元可能位于颈膨大处,或更靠头端(固有脊髓中间神经元)。此外,从皮层到脑干网状结构的连接使得运动指令能够通过网状脊髓束发送至这些脊髓中枢。在本综述中,我们探讨了这些不同通路在健康灵长类动物以及损伤恢复后对手部功能控制的相对作用。

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