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Redundant information encoding in primary motor cortex during motor tasks

机译:运动任务期间主运动皮层中的冗余信息编码

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Information encoded in neuron ensembles has previously been hypothesized to be highly redundant, despite the apparent inefficiency of a redundant encoding system. The recent availability of intracortical, multi-electrode recordings has enabled the possibility of exploring how neuronal ensembles encode information as a whole. Applying concepts from information theory, we examined the redundancy of the target information encoded in both contralateral and ipsilateral hemispheres of the primary motor cortex (M1) in macaque monkeys performing a center-out reaching task. During movement, we reliably found neurons in contralateral M1 to contain higher target information and to be more redundant than ipsilateral M1 neurons, which is consistent with the conventional understanding that motor control is mainly governed by contralateral M1. Secondly, neuron ensembles in both hemispheres showed largely redundant information encoding. These results suggest that redundancy in information encoding is highly prevalent in the motor cortex and may contribute to proficient motor control.
机译:尽管冗余编码系统显然效率低下,但以前已经假设在神经元集成中编码的信息是高度冗余的。皮质内多电极记录的最新可用性使探索神经元整体如何编码信息成为可能。应用信息论中的概念,我们检查了猕猴在执行中心向外伸出任务时,在主运动皮层(M1)的对侧和同侧半球中编码的目标信息的冗余性。在运动过程中,我们可靠地发现对侧M1中的神经元比同侧M1神经元包含更高的目标信息,并且具有更高的冗余度,这与传统的运动控制主要由对侧M1控制的认识是一致的。其次,两个半球的神经元集合显示出很大程度的冗余信息编码。这些结果表明,信息编码中的冗余在运动皮层中非常普遍,并且可能有助于熟练的运动控制。

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