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Re-establishing the disrupted sensorimotor loop in deafferented and deefferented people: The case of spinal cord injuries

机译:在丧失精力和精力旺盛的人中重建破坏的感觉运动回路:脊髓损伤的情况

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Acting efficiently in the world depends on the activity of motor and somatosensory systems, the integration of which is necessary for the proper functioning of the sensorimotor loop (SL). Profound alterations of SL functioning follow spinal cord injury (SCI), a condition that brings about a disconnection of the body from the brain. Such disconnection creates a substantial deprivation of somatosensorial inputs and motor outputs. Consequent somatic deficits and motor paralysis affect the body below the lesion level. A complete restoration of normal functions of the SL cannot be expected until basic neuroscience has found a way to re-establish the interrupted neural connectivity. Meanwhile, studies should focus on the development of technical solutions for dealing with the disruption of the sensorimotor loop. This review discusses the structural and functional adaptive reorganization of the brain after SO, and the maladaptive mechanisms that impact on the processing of body related information, which alter motor imagery strategies and EEG signals. Studies that show how residual functions (e.g. face tactile sensitivity) may help people to restore a normal body image are also reviewed. Finally, data on how brain and residual body signals may be used to improve brain computer interface systems is discussed in relation to the issue of how such systems may help SCI people to re-enter the world and interact with objects and other individuals. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在世界范围内有效地行动取决于运动系统和体感系统的活动,它们的集成对于感觉运动回路(SL)的正常运行是必要的。脊髓损伤(SCI)会导致SL功能的深刻改变,脊髓损伤会导致身体与大脑断开连接。这种断开造成了体感输入和电机输出的大量剥夺。随之而来的躯体缺陷和运动麻痹会影响到低于病变水平的身体。在基本的神经科学找到重新建立中断的神经连接性的方法之前,不能期望SL的正常功能能够完全恢复。同时,研究应侧重于解决感觉运动环路破坏的技术解决方案。这篇综述讨论了SO后大脑的结构和功能适应性重组,以及影响身体相关信息处理的不良适应机制,这些机制改变了运动成像策略和EEG信号。还研究了显示残余功能(例如面部触觉敏感性)如何帮助人们恢复正常身体图像的研究。最后,关于如何使用大脑和残体信号来改善大脑计算机接口系统的数据,讨论了有关此类系统如何帮助SCI人们重新进入世界并与物体和其他个人进行交互的问题。 (C)2015 Elsevier Ltd.保留所有权利。

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