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Single trial coupling of Purkinje cell activity to speed and error signals during circular manual tracking

机译:循环手动跟踪期间,Purkinje细胞活动与速度和错误信号的单次试验耦合

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The simple spike firing of cerebellar Purkinje cells encodes information on the kinematics of limb movements. However, these conclusions have been primarily based on averaging the discharge of Purkinje cells across trials and time and there is little information on whether Purkinje cell simple spike firing encodes specific motor errors during limb movements. Therefore, this study investigated single-trial correlations between the instantaneous simple spike firing of Purkinje cells with various kinematics and error signals. Purkinje cells (n = 126) were recorded in the intermediate and lateral zones centered on the primary fissure while three monkeys intercepted and tracked a target moving in a circle. Cross-correlation analysis was performed between the instantaneous simple spike firing rate and speed, the directional component of the velocity vector, and error signals during single movement trials. Significant correlations at physiologically relevant lags of ±250 ms were observed with tracking speed for 37% of Purkinje cells, with the velocity component in 39%, with direction error in 6% and speed error in 25%. Simple spike firing of the majority of Purkinje cells with significant correlation showed a negative lag with respect to speed and a positive lag with respect to error signals. We hypothesize that the cerebellum is involved in movement planning and control by continuously monitoring movement errors and making intermittent corrections that are represented as fluctuations in the speed profile. Keywords Cerebellum - Purkinje cell - Submovements - Tracking errors - Motor primitives
机译:小脑浦肯野细胞的简单尖峰发射可编码有关肢体运动学的信息。然而,这些结论主要是基于对试验和时间中浦肯野细胞放电的平均,并且关于浦肯野细胞简单突波发射是否在肢体运动过程中编码特定运动错误的信息很少。因此,本研究调查了具有各种运动学和误差信号的浦肯野细胞瞬时简单尖峰发射之间的单次试验相关性。 Purkinje细胞(n = 126)记录在以原裂为中心的中部和侧部区域,而三只猴子截获并跟踪了一个圆周运动的目标。在单次运动试验中,瞬时简单尖峰发射速率和速度,速度矢量的方向分量以及误差信号之间进行了互相关分析。在生理相关滞后的±250 ms处观察到显着相关性,跟踪速度为37%的浦肯野细胞,速度分量为39%,方向误差为6%,速度误差为25%。对大多数具有明显相关性的Purkinje细胞进行简单的尖峰发射显示出相对于速度的负滞后和相对于误差信号的正滞后。我们假设小脑通过连续监视运动错误并进行间歇性校正来参与运动计划和控制,这些校正以速度曲线的波动表示。小脑-Purkinje细胞-亚运动-跟踪误差-运动原语

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