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视动性眼球运动期间猫小脑绒球中区的运动动力学编码

Motor dynamics encoding in cat cerebellar flocculus middle zone during optokinetic eye movements.

作者信息

Kitama T, Omata T, Mizukoshi A, Ueno T, Sato Y

机构信息

Department of Physiology, Yamanashi Medical University, Tamaho, Yamanashi 409-3898, Japan.

出版信息

J Neurophysiol. 1999 Nov;82(5):2235-48. doi: 10.1152/jn.1999.82.5.2235.

Abstract

We investigated the relationship between eye movement and simple-spike (SS) frequency of Purkinje cells in the cerebellar flocculus middle zone during the optokinetic response (OKR) in alert cats. The OKR was elicited by a sequence of a constant-speed visual pattern movement in one direction for 1 s and then in the opposite direction for 1 s. Quick-phase-free trials were selected. Sixty-six cells had direction-selective complex spike (CS) activity that was modulated during horizontal (preferring contraversive) but not vertical stimuli. The SS activity was modulated during horizontal OKR, preferring ipsiversive stimuli. Forty-one cells had well-modulated activity and were suitable for the regression model. In these cells, an inverse dynamics approach was applied, and the time course of the SS rate was reconstructed, with mean coefficient of determination 0.76, by a linear weighted superposition of the eye acceleration (mean coefficient, 0.056 spikes/s per deg/s(2)), velocity (5.10 spikes/s per deg/s), position (-2.40 spikes/s per deg), and constant (mean 34.3 spikes/s) terms, using a time delay (mean 11 ms) from the unit response to the eye response. The velocity and acceleration terms contributed to the increase in the reconstructed SS rates during ipsilateral movements, whereas the position term contributed during contralateral movements. The standard regression coefficient analyses revealed that the contribution of the velocity term (mean coefficient 0.81) was predominant over the acceleration (0.03) and position (-0.17) terms. Forward selection analysis revealed three cell types: Velocity-Position-Acceleration type (n = 27): velocity, position, and acceleration terms are significant (P < 0.05); Velocity-Position type (n = 12): velocity and position terms are significant; and Velocity-Acceleration type (n = 2): velocity and acceleration terms are significant. Using the set of coefficients obtained by regression of the response to a 5 deg/s stimulus velocity, the SS rates during higher (10, 20, and 40 deg/s) stimulus velocities were successfully reconstructed, suggesting generality of the model. The eye-position information encoded in the SS firing during the OKR was relative but not absolute in the sense that the magnitude of the position shift from the initial eye position (0 deg/s velocity) contributed to firing rate changes, but the initial eye position did not. It is concluded that 1) the SS firing frequency in the cat middle zone encodes the velocity and acceleration information for counteracting the viscosity and inertia forces respectively, during short-duration horizontal OKR and 2) the apparent position information encoded in the SS firing is not appropriate for counteracting the elastic force during the OKR.

摘要

我们研究了警觉猫在视动反应(OKR)期间,小脑绒球中区浦肯野细胞的眼动与简单锋电位(SS)频率之间的关系。OKR由一系列恒速视觉模式运动诱发,先沿一个方向运动1秒,然后沿相反方向运动1秒。选取了无快相的试验。66个细胞具有方向选择性复合锋电位(CS)活动,在水平(偏好对侧性)而非垂直刺激期间受到调制。SS活动在水平OKR期间受到调制,偏好同侧性刺激。41个细胞具有良好调制的活动,适合用于回归模型。在这些细胞中,应用了逆动力学方法,通过眼加速度(平均系数,0.056个锋电位/秒每度/秒²)、速度(5.10个锋电位/秒每度/秒)、位置(-2.40个锋电位/秒每度)和常数(平均34.3个锋电位/秒)项的线性加权叠加,利用从单位反应到眼反应的时间延迟(平均11毫秒),重建了SS频率的时间进程,平均决定系数为0.76。速度和加速度项在同侧运动期间导致重建的SS频率增加,而位置项在对侧运动期间起作用。标准回归系数分析表明,速度项(平均系数0.81)的贡献比加速度(0.03)和位置(-0.17)项更显著。向前选择分析揭示了三种细胞类型:速度-位置-加速度型(n = 27):速度、位置和加速度项显著(P < 0.05);速度-位置型(n = 12):速度和位置项显著;速度-加速度型(n = 2):速度和加速度项显著。使用对5度/秒刺激速度的反应回归得到的一组系数,成功重建了更高(10、20和40度/秒)刺激速度下的SS频率,表明该模型具有普遍性。在OKR期间SS发放中编码的眼位置信息是相对的而非绝对的,即从初始眼位置(0度/秒速度)的位置偏移量的大小导致发放率变化,但初始眼位置并非如此。得出的结论是:1)在短持续时间水平OKR期间,猫中区的SS发放频率分别编码了用于抵消粘性力和惯性力的速度和加速度信息;2)在SS发放中编码的明显位置信息不适用于在OKR期间抵消弹力。

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