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Learning from the past: A reverberation of past errors in the cerebellar climbing fiber signal

机译:从过去中学习:小脑攀爬纤维信号中过去错误的回响

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摘要

The cerebellum allows us to rapidly adjust motor behavior to the needs of the situation. It is commonly assumed that cerebellum-based motor learning is guided by the difference between the desired and the actual behavior, i.e., by error information. Not only immediate but also future behavior will benefit from an error because it induces lasting changes of parallel fiber synapses on Purkinje cells (PCs), whose output mediates the behavioral adjustments. Olivary climbing fibers, likewise connecting with PCs, are thought to transport information on instant errors needed for the synaptic modification yet not to contribute to error memory. Here, we report work on monkeys tested in a saccadic learning paradigm that challenges this concept. We demonstrate not only a clear complex spikes (CS) signature of the error at the time of its occurrence but also a reverberation of this signature much later, before a new manifestation of the behavior, suitable to improve it.
机译:小脑使我们能够根据情况的需要快速调整运动行为。通常假设基于小脑的运动学习是由期望行为与实际行为之间的差异,即由错误信息来指导的。错误不仅会影响立即行为,还会使将来的行为受益,因为它会引起浦肯野细胞(PC)上平行纤维突触的持续变化,浦肯野细胞的输出介导行为调节。人们认为,与PC相连的唾液攀爬纤维可以传送有关突触修饰所需的即时错误的信息,但不会有助于错误记忆。在这里,我们报告了在以挑战性概念为基础的扫盲学习范式中测试的猴子的工作。我们不仅展示了错误发生时的清晰的复杂尖峰(CS)签名,而且还证明了该签名在相当新的行为表现之前的较晚回响,以改善该错误。

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