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Role of neuronal plasticity after spinal cord injury for neurorobotic control

机译:脊髓损伤后神经元可塑性在神经机器人控制中的作用

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The design of a brain machine interface for the restoration of lower limb control after spinal cord injury involves the restoration of cortical control of the spinal circuits responsible for this movement. However little is known about how these cortical circuits are modified by spinal cord injury. For this purpose we trained rats to perform a skilled hindlimb task and examined how the activity of the neurons in the hindlimb cortex encodes this movement. In this paper we used a method to quantitatively measure the amount of information encoded by the neuronal ensembles about the specific kinematics of movement. Our results show that the cortical firing patterns can encode for intention to move with or without actual limb movement, before and after a complete spinal transection.
机译:用于在脊髓损伤后恢复下肢控制的脑机接口的设计涉及恢复负责该运动的脊髓回路的皮质控制。然而,关于脊髓损伤如何改变这些皮质回路的了解甚少。为此目的,我们训练了大鼠执行熟练的后肢任务,并检查了后肢皮质中神经元的活动如何编码这种运动。在本文中,我们使用了一种方法来定量测量由神经元集成体编码的有关运动的特定运动学信息。我们的研究结果表明,在完全脊髓横断之前和之后,皮质发射模式可以编码意向移动的意图,无论是否有实际的肢体运动。

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