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NEURAL PRIMITIVES FOR MOTION CONTROL

机译:运动控制的神经原语

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摘要

The neural control of movement requires the ability to deal with changes, both in the environment and in the parameters that characterize the mechanical structure of the organism. Here we discuss the three types of coordinate representations that sensory and motor systems use to generate and control movements, and argue that the intrinsic redundancy of the musculoeskeletal system can be exploited to implement control signals that result in successful task completion while allowing for variance in trajectory parameters not relevant to the task. We also argue that muscle synergies activated through the stimulation of specific loci along the spinal cord provide evidence for the existence of a vocabulary of motor primitives that can be combined, either simultaneously or sequentially, to generate a broad repertoire of complex movements.
机译:运动的神经控制需要能够处理环境中的变化以及表征生物体机械结构的参数。在这里,我们讨论了传感和电机系统用于生成和控制运动的三种类型的坐标表示,并争辩说肌肉骨骼系统的内在冗余可以利用来实现导致成功完成的控制信号,同时允许轨迹方差参数与任务无关。我们还认为通过沿着脊髓刺激特定基因座激活的肌肉协同效应提供了可以同时或顺序组合的电动机基元的词汇的证据,以产生广泛的复杂运动。

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