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Re-thinking the role of motor cortex: Context-sensitive motor outputs?

机译:重新思考运动皮层的作用:上下文相关的运动输出?

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摘要

The standard account of motor control considers descending outputs from primary motor cortex (M1) as motor commands and efference copy. This account has been challenged recently by an alternative formulation in terms of active inference: M1 is considered as part of a sensorimotor hierarchy providing top–down proprioceptive predictions. The key difference between these accounts is that predictions are sensitive to the current proprioceptive context, whereas efference copy is not. Using functional electric stimulation to experimentally manipulate proprioception during voluntary movement in healthy human subjects, we assessed the evidence for context sensitive output from M1. Dynamic causal modeling of functional magnetic resonance imaging responses showed that FES altered proprioception increased the influence of M1 on primary somatosensory cortex (S1). These results disambiguate competing accounts of motor control, provide some insight into the synaptic mechanisms of sensory attenuation and may speak to potential mechanisms of action of FES in promoting motor learning in neurorehabilitation.
机译:电机控制的标准说明将主电机皮质(M1)的递减输出视为电机命令和参考副本。最近,在主动推理方面,这一说法受到了另一种提法的挑战:M1被认为是提供自上而下的本体感受预测的感觉运动层次的一部分。这些说明之间的主要区别在于预测对当前的本体感受上下文敏感,而引用复制则不然。在健康的人类受试者中,使用功能性电刺激在自愿运动过程中实验性地操纵本体感受,我们评估了M1上下文相关输出的证据。功能性磁共振成像反应的动态因果模型表明,FES改变的本体感受增加了M1对初级体感皮层(S1)的影响。这些结果消除了运动控制的竞争说明,为感觉减弱的突触机制提供了一些见识,并且可能与FES在促进神经康复中的运动学习中的潜在作用机制有关。

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