猕猴小脑小叶和小叶旁浦肯野细胞放电率与复杂二维平滑追踪眼运动的运动学模型

M. Suh, H. Leung, R. Kettner
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引用次数: 1

摘要

当恒河猴跟踪沿复杂和简单二维轨迹运动的目标时,记录了小脑小叶和小叶旁的单神经元反应。每个神经元使用多元线性回归模型进行分析,该模型将神经元的瞬时放电率表示为眼睛的瞬时二维位置、速度和加速度的函数。在所有情况下,模型都很好地描述了数据。此外,该模型还解释了为什么一些神经元表现出相对复杂的反应,包括对顺时针(CW)和逆时针(CCW)圆形目标运动的系统偏好,而其他神经元则表现出较简单的反应。大多数神经元的位置和速度偏好方向是一致的。这些神经元在连续波和连续波循环追逐过程中具有相对简单的反应谱和相似的反应幅度。其他神经元的位置和速度偏好方向不一致,差异高达90/spl度/。这些神经元具有更复杂的反应特性,包括对连续或连续循环追求的偏好。这表明具有简单响应的神经元接收具有相似空间调谐特性的输入,而复杂响应来自具有不同空间调谐特性的输入。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Kinematic model relating complex 2D smooth pursuit eye movements and Purkinje cell firing rate in cerebellar flocculus and paraflocculus of the rhesus monkey
Single-neuron responses from the flocculus and paraflocculus of the cerebellum were recorded from rhesus monkeys while they tracked targets moving along complex and simple 2D trajectories. Each neuron was analyzed using a multi-linear regression model that expressed the instantaneous firing rate of the neuron as a function of the instantaneous 2D position, velocity, and acceleration of the eye. In all cases, the model provided a good description of the data. In addition, the model explains why some neurons show relatively complex responses including a systematic preference for clockwise (CW) versus counterclockwise (CCW) circular target motions, while others low simpler responses. Most neurons had position and velocity preferred directions that were in alignment. These neurons had relatively simple response profiles with similar response amplitudes during CW versus CCW circular pursuit. Other neurons had position and velocity preferred directions that were not aligned and that differed by as much as 90/spl deg/. These neurons had more complex response properties including a preference for either CW or CCW circular pursuit. This suggests that neurons with simple responses receive inputs with similar spatial tuning properties, while complex responses result from inputs with different spatial tuning properties.
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