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首页> 外文期刊>Scientific reports. >Using an Artificial Neural Bypass to Restore Cortical Control of Rhythmic Movements in a Human with Quadriplegia
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Using an Artificial Neural Bypass to Restore Cortical Control of Rhythmic Movements in a Human with Quadriplegia

机译:使用人工神经旁路恢复四肢瘫痪患者节律性运动的皮质控制

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Neuroprosthetic technology has been used to restore cortical control of discrete (non-rhythmic) hand movements in a paralyzed person. However, cortical control of rhythmic movements which originate in the brain but are coordinated by Central Pattern Generator (CPG) neural networks in the spinal cord has not been demonstrated previously. Here we show a demonstration of an artificial neural bypass technology that decodes cortical activity and emulates spinal cord CPG function allowing volitional rhythmic hand movement. The technology uses a combination of signals recorded from the brain, machine-learning algorithms to decode the signals, a numerical model of CPG network, and a neuromuscular electrical stimulation system to evoke rhythmic movements. Using the neural bypass, a quadriplegic participant was able to initiate, sustain, and switch between rhythmic and discrete finger movements, using his thoughts alone. These results have implications in advancing neuroprosthetic technology to restore complex movements in people living with paralysis.
机译:神经修复技术已用于恢复瘫痪者离散(非节律性)手部运动的皮质控制。然而,皮质的节律性运动控制起源于大脑,但由脊髓中的中央模式发生器(CPG)神经网络协调控制。在这里,我们展示了一种人工神经旁路技术的演示,该技术可解码皮层活动并模拟脊髓CPG功能,使手部有节奏地运动。该技术结合了大脑记录的信号,机器学习算法对信号进行解码,CPG网络的数值模型以及神经肌肉电刺激系统来引发有节奏的运动。使用神经旁路,四肢瘫痪的参与者能够仅凭自己的思想就可以启动,维持和在有节奏的和离散的手指运动之间切换。这些结果对发展神经修复技术以恢复瘫痪患者的复杂运动具有重要意义。

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