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A neurally-interfaced hand prosthesis tuned inter-hemispheric communication

机译:神经接口的手部假体调整了半球之间的交流

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摘要

Purpose: This work investigates how a direct bidirectional connection between brain and hand prosthesis modifies the bi-hemispheric sensorimotor system devoted to the movement control of the lost limb. Hand prostheses are often unable to satisfy users' expectations, mostly due to the poor performance of their interfacing system. Neural Interfaces implanted inside nerves of the stump offer the advantage of using the bidirectional neural pathways 'naturally' dispatching signals to control proper hand actions and feed-back sensations. Learning to control a neurally-interfaced hand prosthesis and decode sensory information was previously observed to reduce the inter-hemispheric asymmetry of cortical motor maps and the clinical symptoms of phantom limb syndrome. Methods: Electroencephalographic (EEG) data was analysed using Functional Source Separation (FSS), a semi-blind method that incorporates prior knowledge about the signal of interest into data decomposition to give access to cortical patch activities. Results: Bi-hemispheric cortices showed normalization of their activity (topographical and spectral patterns) and of functional connectivity between homologous hand controlling areas, during the delivery of the motor command to the cybernetic prosthesis. Conclusions: The re-establishment of central-peripheral communication with the lost limb induced by a neurally-interfaced hand prosthesis produces beneficial plastic reorganization, not only restructuring contralateral directly-connected control areas, but also their functional balance within the bi-hemispheric system necessary for motor control.
机译:目的:这项工作研究了大脑和手部假体之间的直接双向连接如何改变致力于失去肢体运动控制的双半球感觉运动系统。手部假体通常不能满足用户的期望,这主要是由于其接口系统的性能较差。植入残端神经内部的神经接口具有使用双向神经途径“自然”分配信号以控制适当的手部动作和反馈感觉的优势。先前已观察到学习控制神经接口的手部假体并解码感官信息,以减少皮层运动图的半球间不对称性以及幻肢综合症的临床症状。方法:使用功能性源分离(FSS)分析脑电图(EEG)数据,这是一种半盲方法,该方法将有关感兴趣信号的先验知识整合到数据分解中,从而可以访问皮层贴片活动。结果:在将运动命令传递给控制论假肢的过程中,双半球皮质显示出其活动(地形和光谱模式)以及同源手部控制区域之间的功能连接正常化。结论:由神经接口的人工假体引起的与失去的肢体的中枢周围沟通的重建产生了有益的塑性重组,不仅重组了对侧直接连接的控制区域,而且还使它们在双半球系统内的功能平衡用于电机控制。

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