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The Macaque Cerebellar Flocculus Outputs a Forward Model of Eye Movement

机译:猕猴小脑絮结输出眼动的正向模型

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摘要

The central nervous system (CNS) achieves fine motor control by generating predictions of the consequences of the motor command, often called forward models of the movement. These predictions are used centrally to detect not-self generated sensations, to modify ongoing movements, and to induce motor learning. However, finding a neuronal correlate of forward models has proven difficult. In the oculomotor system, we can identify neuronal correlates of forward models vs. neuronal correlates of motor commands by examining neuronal responses during smooth pursuit at eccentric eye positions. During pursuit, torsional eye movement information is not present in the motor command, but it is generated by the mechanic of the orbit. Importantly, the directionality and approximate magnitude of torsional eye movement follow the half angle rule. We use this rule to investigate the role of the cerebellar flocculus complex (FL, flocculus and ventral paraflocculus) in the generation of forward models of the eye. We found that mossy fibers (input elements to the FL) did not change their response to pursuit with eccentricity. Thus, they do not carry torsional eye movement information. However, vertical Purkinje cells (PCs; output elements of the FL) showed a preference for counter-clockwise (CCW) eye velocity [corresponding to extorsion (outward rotation) of the ipsilateral eye]. We hypothesize that FL computes an estimate of torsional eye movement since torsion is present in PCs but not in mossy fibers. Overall, our results add to those of other laboratories in supporting the existence in the CNS of a predictive signal constructed from motor command information.
机译:中枢神经系统(CNS)通过生成运动指令后果的预测来实现精细的运动控制,通常将其称为运动的正向模型。这些预测被集中用于检测非自身产生的感觉,修改正在进行的运动并诱发运动学习。但是,找到前向模型的神经元关联已被证明是困难的。在动眼系统中,我们可以通过检查在偏心眼位置平稳追赶过程中的神经元反应,来识别前向模型与运动命令的神经元相关的神经元相关性。在跟踪过程中,眼动信息不会出现在运动指令中,而是由轨道机械产生的。重要的是,扭转眼运动的方向性和近似大小遵循半角规则。我们使用此规则来调查小脑絮状复合体(FL,絮状体和腹旁絮状体)在眼睛的正向模型生成中的作用。我们发现,苔藓纤维(FL的输入元素)并没有改变它们对偏心追赶的反应。因此,它们不携带眼球扭转运动信息。但是,垂直的浦肯野细胞(PC; FL的输出元件)显示出对逆时针(CCW)眼速度的偏好[与同侧眼的勒索(向外旋转)相对应]。我们假设FL计算眼睛的眼球运动,因为PC中存在扭转,而苔藓纤维中不存在扭转。总的来说,我们的结果增加了其他实验室的研究结果,从而支持了由运动命令信息构成的预测信号在CNS中的存在。

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