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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Recurrent cerebellar architecture solves the motor-error problem.
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Recurrent cerebellar architecture solves the motor-error problem.

机译:循环小脑结构解决了运动错误问题。

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摘要

Current views of cerebellar function have been heavily influenced by the models of Marr and Albus, who suggested that the climbing fibre input to the cerebellum acts as a teaching signal for motor learning. It is commonly assumed that this teaching signal must be motor error (the difference between actual and correct motor command), but this approach requires complex neural structures to estimate unobservable motor error from its observed sensory consequences. We have proposed elsewhere a recurrent decorrelation control architecture in which Marr-Albus models learn without requiring motor error. Here, we prove convergence for this architecture and demonstrate important advantages for the modular control of systems with multiple degrees of freedom. These results are illustrated by modelling adaptive plant compensation for the three-dimensional vestibular ocular reflex. This provides a functional role for recurrent cerebellar connectivity, which may be a generic anatomical feature of projections between regions of cerebral and cerebellar cortex.
机译:Marr和Albus的模型严重影响了当前的小脑功能观点,他们认为,输入小脑的攀爬纤维可作为运动学习的教学信号。通常认为该教学信号必须是运动错误(实际和正确的运动命令之间的差),但是这种方法需要复杂的神经结构,才能根据其观察到的感觉结果来估计无法观察到的运动错误。我们在其他地方提出了一种循环去相关控制体系结构,其中Marr-Albus模型无需电动机误差即可学习。在这里,我们证明了该体系结构的收敛性,并展示了对具有多个自由度的系统进行模块化控制的重要优势。通过对三维前庭眼反射的自适应植物补偿进行建模,可以说明这些结果。这为小脑复发性连接提供了功能性作用,这可能是大脑和小脑皮层区域之间投影的一般解剖特征。

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