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猴子眼跟踪反应期间小脑腹侧旁绒球浦肯野细胞的时间发放模式I. 简单锋电位

Temporal firing patterns of Purkinje cells in the cerebellar ventral paraflocculus during ocular following responses in monkeys I. Simple spikes.

作者信息

Gomi H, Shidara M, Takemura A, Inoue Y, Kawano K, Kawato M

机构信息

NTT Basic Research Laboratories, Nippon Telegraph and Telephone Corporation, Kanagawa 243-0198, USA.

出版信息

J Neurophysiol. 1998 Aug;80(2):818-31. doi: 10.1152/jn.1998.80.2.818.

Abstract

The simple-spike firing frequency of 30 Purkinje cells (P cells) in the ventral paraflocculus (VPFL) of alert monkeys was studied in relation to vertical slow eye movements, termed ocular following response (OFR), induced by large-field visual motions of different velocities and durations. To quantitatively analyze the relationship between eye movement and firing frequency, an inverse dynamics representation of the eye movement was used for reconstructing the temporal waveform of firing. Coefficients of eye-acceleration, velocity, and position, bias, and time lag between firing and eye movement were estimated by least-square error method. In the regression analyses for each stimulus condition, 86% (146/170) of the well-modulated temporal firing patterns taken from those 30 P cells were reconstructed successfully from eye movement. The model with acceleration, velocity, and position terms, which we used, was shown as the best among several potential models by Cp statistics, consistent with t-test of significance of each term. Reliable coefficients were obtained from 75% (109/146) of the well-reconstructed firing patterns of 28 cells among 30. The estimated coefficients were larger (statistically significant) for slow stimuli than for fast stimuli, suggesting changes in sensitivities under different conditions. However, firing patterns of each cell under several different conditions were frequently well reconstructed by an inverse dynamics representation with a single set of coefficients (13 cells among 21). This indicates that the relationships between P cell firing and OFR are roughly linear in those stimulus ranges. The estimated coefficients for acceleration and velocity suggested that the VPFL P cells properly encode the dynamic components of the motor command during vertical OFR. As for the positional component, however, these P cells are correlated with eye movement in the opposite direction. In the regression analysis without positional component, remarkable differences between observed and reconstructed firing patterns were noted especially in the initial phase of the movements, indicating that the negative positional component was not negligible during OFR. Thus we conclude that, during OFR, the VPFL P cells cannot provide the necessary final motor command, and other brain regions, downstream neural structures, or other types of P cells must provide lacking position-dependent motor commands. This finding about the negative correlation with the position is in the opposite sign with previous studies obtained from the fixation and the smooth pursuit movement. From these comparisons, how the VPFL contributes to a part of the final motor command or how other brain regions complement the VPFL is suggested to be different for early and late phases of the movements.

摘要

研究了警觉猴子腹侧副小叶(VPFL)中30个浦肯野细胞(P细胞)的单峰放电频率与垂直慢眼动(称为视跟踪反应,OFR)的关系,该慢眼动由不同速度和持续时间的大视野视觉运动诱发。为了定量分析眼动与放电频率之间的关系,采用眼动的逆动力学表示来重建放电的时间波形。通过最小二乘法估计眼加速度、速度和位置的系数、偏差以及放电与眼动之间的时间滞后。在每种刺激条件的回归分析中,从这30个P细胞中选取的86%(146/170)调制良好的时间放电模式成功地从眼动中重建。我们使用的包含加速度、速度和位置项的模型,通过Cp统计在几个潜在模型中显示为最佳,这与每个项的显著性t检验一致。从30个细胞中28个重建良好的放电模式的75%(109/146)中获得了可靠的系数。慢刺激的估计系数比快刺激的大(具有统计学显著性),表明在不同条件下敏感性发生了变化。然而,在几种不同条件下,每个细胞的放电模式经常通过具有一组系数的逆动力学表示得到很好的重建(21个细胞中有13个)。这表明在这些刺激范围内,P细胞放电与OFR之间的关系大致呈线性。加速度和速度的估计系数表明,VPFL的P细胞在垂直OFR期间正确地编码了运动指令的动态成分。然而,对于位置成分,这些P细胞与眼动方向相反相关。在没有位置成分的回归分析中,特别是在运动的初始阶段,观察到的和重建的放电模式之间存在显著差异,这表明在OFR期间负位置成分不可忽略。因此我们得出结论,在OFR期间,VPFL的P细胞不能提供必要的最终运动指令,其他脑区、下游神经结构或其他类型的P细胞必须提供缺失的位置依赖性运动指令。这一关于与位置负相关的发现与先前从注视和平滑跟踪运动中获得的研究结果符号相反。通过这些比较,提示VPFL如何对最终运动指令的一部分做出贡献以及其他脑区如何补充VPFL在运动的早期和晚期阶段是不同的。

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