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Neuronal ensemble control of prosthetic devices by a human with tetraplegia

机译:四肢瘫痪者对假体装置的神经元整体控制

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Neuromotor prostheses ( NMPs) aim to replace or restore lost motor functions in paralysed humans by routeing movement-related signals from the brain, around damaged parts of the nervous system, to external effectors. To translate preclinical results from intact animals to a clinically useful NMP, movement signals must persist in cortex after spinal cord injury and be engaged by movement intent when sensory inputs and limb movement are long absent. Furthermore, NMPs would require that intention-driven neuronal activity be converted into a control signal that enables useful tasks. Here we show initial results for a tetraplegic human (MN) using a pilot NMP. Neuronal ensemble activity recorded through a 96-microelectrode array implanted in primary motor cortex demonstrated that intended hand motion modulates cortical spiking patterns three years after spinal cord injury. Decoders were created, providing a 'neural cursor' with which MN opened simulated e-mail and operated devices such as a television, even while conversing. Furthermore, MN used neural control to open and close a prosthetic hand, and perform rudimentary actions with a multi-jointed robotic arm. These early results suggest that NMPs based upon intracortical neuronal ensemble spiking activity could provide a valuable new neurotechnology to restore independence for humans with paralysis.
机译:神经运动假体(NMP)旨在通过将与运动相关的信号从大脑,神经系统受损部位周围传递到外部效应器,来替代或恢复瘫痪人类的运动功能丧失。要将完整动物的临床前结果转化为临床上有用的NMP,运动信号必须在脊髓损伤后在皮质中持续存在,并且在长期缺乏感觉输入和四肢运动时必须以运动意图参与其中。此外,NMP要求将意图驱动的神经元活动转换为能够执行有用任务的控制信号。在这里,我们显示了使用飞行员NMP的四肢瘫痪者(MN)的初步结果。通过植入初级运动皮层的96微电极阵列记录的神经元合奏活动表明,在脊髓损伤三年后,预期的手部运动会调节皮层突刺模式。创建了解码器,提供了一个“神经光标”,MN甚至可以在对话时用它打开模拟电子邮件并操作电视等设备。此外,MN使用神经控制来打开和闭合假手,并使用多关节机械臂执行基本动作。这些早期结果表明,基于皮质内神经元集合突刺活动的NMP可以提供一种有价值的新神经技术,以恢复瘫痪患者的独立性。

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