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Computational origin of error signals sent to cerebellar microzones

机译:发送到小脑微区的误差信号的计算来源

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The way the cerebellum controls movement is similar to the Rosenblatt perceptron. However, the computation of cerebellar error signals sent via the inferior olive has not been identified. Error signals may result from the difference between a desired trajectory and an actual trajectory. However, such a mathematical subtraction between thousands of fibers conveyed by two neural sources (peripheral and central) is not realistic. The paper shows that the source of error signal may be much simpler, and no computation is needed. Error signals arise first from peripheral disturbances, and later from cerebral computational overload.
机译:小脑控制运动的方式类似于Rosenblatt感知器。但是,尚未确定通过下橄榄发出的小脑错误信号的计算。误差信号可能是由所需轨迹和实际轨迹之间的差异引起的。但是,在两个神经源(外围和中央)传送的数千根纤维之间进行这样的数学减法是不现实的。该论文表明,误差信号的来源可能要简单得多,并且不需要计算。错误信号首先来自外围干扰,然后来自大脑计算过载。

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