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三维速度存储的组织原理。重力对视动性眼震后眼震交叉耦合的影响。

Organizational principles of velocity storage in three dimensions. The effect of gravity on cross-coupling of optokinetic after-nystagmus.

作者信息

Raphan T, Cohen B

机构信息

Department of Computer and Information Science, Brooklyn College, City University of New York 11210.

出版信息

Ann N Y Acad Sci. 1988;545:74-92. doi: 10.1111/j.1749-6632.1988.tb19556.x.

Abstract
  1. Optokinetic nystagmus was elicited in alert monkeys by movement of the visual surround in their horizontal or yaw plane, and optokinetic after-nystagmus was recorded in darkness. The animals were upright or were statically tilted at various angles from the upright. While upright, the OKAN was horizontal, and there were no vertical or roll components. When animals were tilted to either side or forward or back, vertical or roll components appeared both in the primary and secondary OKAN. Such components were also observed during nystagmus and after-nystagmus induced by electrical stimulation of the nucleus of the optic tract. The characteristics of the cross-coupled components indicated that they were mediated through the velocity storage mechanism in the vestibulo-ocular reflex. 2. A principle was inferred that explained the appearance of cross-coupled vertical or roll components in the primary and secondary OKAN: With the animal in a tilted position, a vector of eye velocity during OKN along the body-vertical axis was converted during primary OKAN toward a spatial-vertical axis with the same sense by a right hand rule. Thus, slow phase velocity along a vector toward the top of the animal's head during horizontal OKN rotated so that it tended to be directed spatially upward during primary OKAN. The reverse was true for OKN with a velocity vector directed toward the animal's feet. It rotated during primary OKAN so that it tended to be aligned with the direction of gravity. The vector of velocity during secondary OKAN was opposite to the direction of the vector during primary OKAN and was approximately aligned with spatial vertical. 3. OKN and OKAN were elicited about the animal's pitch and roll axes while they were upright and statically tilted at various angles away from the spatial vertical. There was a graded increase in the strength of vertical and roll OKN and OKAN and in the falling time constant of OKAN as the animals were tilted so that the axis of pitch or roll eye movements was moved toward alignment with the spatial vertical. Thus, velocity storage during pure vertical and roll nystagmus was similar to that during yaw OKN and OKAN in tilted positions: it was maximal along the pitch and roll axes when these axes were aligned with gravity. 4. The data indicate that the gravitational field is of fundamental importance in imposing a spatial reference onto the velocity storage integrator.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 通过在警觉猴子的水平或偏航平面内移动视觉环境来诱发视动性眼震,并在黑暗中记录视动性眼震后眼震。动物处于直立状态或相对于直立状态以不同角度静态倾斜。当动物直立时,视动性眼震后眼震是水平的,没有垂直或翻滚分量。当动物向一侧、向前或向后倾斜时,在原发性和继发性视动性眼震后眼震中都会出现垂直或翻滚分量。在对视束核进行电刺激诱发的眼震和眼震后眼震期间也观察到了此类分量。交叉耦合分量的特征表明它们是通过前庭眼反射中的速度存储机制介导的。2. 推断出一条原理,解释了原发性和继发性视动性眼震后眼震中交叉耦合垂直或翻滚分量的出现:当动物处于倾斜位置时,视动性眼震期间沿身体垂直轴的眼速度矢量在原发性视动性眼震后眼震期间通过右手定则朝着具有相同方向的空间垂直轴转换。因此,水平视动性眼震期间沿朝向动物头顶的矢量的慢相速度发生旋转,使得在原发性视动性眼震后眼震期间它倾向于在空间上向上指向。对于速度矢量指向动物脚部的视动性眼震,情况则相反。它在原发性视动性眼震后眼震期间旋转,使得它倾向于与重力方向对齐。继发性视动性眼震后眼震期间的速度矢量与原发性视动性眼震后眼震期间的矢量方向相反,并且大致与空间垂直方向对齐。3. 当动物直立且相对于空间垂直方向以不同角度静态倾斜时,围绕动物的俯仰和翻滚轴诱发视动性眼震和视动性眼震后眼震。随着动物倾斜,使得俯仰或翻滚眼动轴朝着与空间垂直方向对齐移动,垂直和翻滚视动性眼震以及视动性眼震后眼震的强度以及视动性眼震后眼震的衰减时间常数呈分级增加。因此,在纯垂直和翻滚眼震期间的速度存储与在倾斜位置的偏航视动性眼震和视动性眼震后眼震期间的情况类似:当这些轴与重力对齐时,沿着俯仰和翻滚轴的速度存储最大。4. 数据表明,重力场对于在速度存储积分器上施加空间参考至关重要。(摘要截断于400字)

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