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猫额平面线性加速度导致垂直前庭眼反射动力学的变化。

Changes in the dynamics of the vertical vestibulo-ocular reflex due to linear acceleration in the frontal plane of the cat.

作者信息

Angelaki D E, Anderson J H, Blakley B W

机构信息

Department of Otolaryngology, University of Minnesota, Minneapolis 55455.

出版信息

Exp Brain Res. 1991;86(1):27-39. doi: 10.1007/BF00231037.

Abstract

The vertical and horizontal components of the vestibulo-ocular reflex (VOR) were recorded in alert, restrained cats who were placed on their sides and subjected to whole-body rotations in the horizontal plane. The head was either on the axis or 45 cm eccentric from the axis rotation. During off-axis rotation there was a change in the linear force acting on the otolith organs due to the presence of a centripetal acceleration along the animal's vertical axis. Otolith forces (defined to be opposite to the centripetal acceleration) directed ventrally with respect to the animal (negative) decreased both the amplitude and time constant of the first-order approximation to the slow phase eye velocity of the vertical vestibulo-ocular reflex (VVOR). Otolith forces directed dorsally (positive) increased the amplitude and time constant. The effects were greater for the up VOR. The asymmetry in the VVOR time constant also depended on the otolith forces, being less in the presence of negative otolith forces that caused the resultant otolith force to move ventrally, towards the direction along which gravity normally acts when the animal is in the upright position. The effects of otolith forces on the up VVOR were independent of whether the animals were tested in the dark or in the light with a stationary visual surround (i.e., during visual suppression). In contrast, the changes in the time constant of the down VVOR were smaller during visual suppression. Simulations of the eye velocity storage mechanism suggest that the gain of the feedback in the storage integrator was modified by the angle between the resultant otolith force and an animal-fixed reference. This could be the animal's vertical, i.e., the direction along which gravity normally acts. For larger angles the feedback was less and the amplitude and time constant of the VVOR increased. The transformation of the otolith input was the same for both the up and down VOR, even though the final effect on the eye velocity was asymmetric (larger for up VOR) due to a separate, asymmetric gain element in the velocity storage feedback pathway.

摘要

在警觉、受约束且侧卧的猫身上记录前庭眼反射(VOR)的垂直和水平分量,这些猫在水平面上进行全身旋转。头部要么位于旋转轴上,要么偏离轴45厘米。在离轴旋转过程中,由于沿动物垂直轴存在向心加速度,作用于耳石器官的线性力会发生变化。相对于动物腹侧(负向)的耳石力(定义为与向心加速度相反)会降低垂直前庭眼反射(VVOR)慢相眼速度一阶近似的幅度和时间常数。背侧(正向)的耳石力会增加幅度和时间常数。向上的VOR效应更大。VVOR时间常数的不对称性也取决于耳石力,当存在负向耳石力导致合成耳石力向腹侧移动时,即朝着动物直立时重力通常作用的方向移动时,不对称性较小。耳石力对向上VVOR的影响与动物是在黑暗中还是在有固定视觉环境的光照下(即视觉抑制期间)进行测试无关。相比之下,在视觉抑制期间,向下VVOR时间常数的变化较小。眼速度存储机制的模拟表明,存储积分器中反馈的增益是由合成耳石力与动物固定参考之间的角度改变的。这个参考可能是动物的垂直方向,即重力通常作用的方向。对于较大的角度,反馈较小,VVOR的幅度和时间常数增加。耳石输入对向上和向下VOR的转换是相同的,尽管由于速度存储反馈通路中一个单独的不对称增益元件,对眼速度的最终影响是不对称的(向上VOR更大)。

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