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对猴子垂直平滑追踪眼球运动中自然发生的不对称性的分析。

Analysis of a naturally occurring asymmetry in vertical smooth pursuit eye movements in a monkey.

作者信息

Grasse K L, Lisberger S G

机构信息

Department of Psychology, York University, Ontario, Canada.

出版信息

J Neurophysiol. 1992 Jan;67(1):164-79. doi: 10.1152/jn.1992.67.1.164.

Abstract
  1. We have investigated the mechanism of a directional deficit in vertical pursuit eye movements in a monkey that was unable to match upward eye speed to target speed but that had pursuit within the normal range for downward or horizontal target motion. Except for a difference in the axis of deficient pursuit, the symptoms in this monkey were similar to those seen with lesions in the frontal or parietal lobes of the cerebral cortex in humans or monkeys. Our evaluation of vertical pursuit in this monkey suggests a new interpretation for the role of the frontal and parietal lobes in pursuit. 2. The up/down asymmetry was most pronounced for target motion at speeds greater than or equal to 2 degree/s. For target motion at 15 or 30 degree/s, upward step-ramp target motion evoked a brief upward smooth eye acceleration, followed by tracking that consisted largely of saccades. Downward step-ramp target motion evoked a prolonged smooth eye acceleration, followed by smooth, accurate tracking. 3. Varying the amplitude of the target step revealed that the deficit was similar for targets moving across all locations of the visual field. Eye acceleration in the interval 0-20 ms after the onset of pursuit was independent of initial target position and was symmetrical for upward and downward target motion. Eye acceleration in the interval 60-80 ms after the onset of pursuit showed a large asymmetry. For upward target motion, eye acceleration in this interval was small and did not depend on initial target position. For downward target motion, eye acceleration depended strongly on initial target position and was large when the target started close to the position of fixation. 4. We next attempted to understand the mechanism of the up/down asymmetry by evaluating the monkey's vertical motion processing and vertical eye movements under a variety of tracking conditions. For spot targets, the response to upward image motion was similar to that in normal monkeys if the image motion was presented during downward pursuit. In addition, the monkey with deficient upward pursuit was able to use upward image motion to make accurate saccades to moving targets. We conclude that the visual processing of upward image motion was normal in this monkey and that an asymmetry in visual motion processing could not account for the deficit in his upward pursuit. 5. Upward smooth eye acceleration was normal when the spot target was moved together with a large textured pattern.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 我们研究了一只猴子垂直跟踪眼球运动方向缺陷的机制。这只猴子无法使向上的眼球速度与目标速度匹配,但在向下或水平目标运动时,其跟踪能力在正常范围内。除了缺陷跟踪的轴有所不同外,这只猴子的症状与人类或猴子大脑皮层额叶或顶叶受损时所观察到的症状相似。我们对这只猴子垂直跟踪的评估为额叶和顶叶在跟踪中的作用提出了一种新的解释。2. 对于速度大于或等于2度/秒的目标运动,上下不对称最为明显。对于15或30度/秒的目标运动,向上的阶梯斜坡目标运动会引发短暂的向上平滑眼球加速,随后的跟踪主要由扫视组成。向下的阶梯斜坡目标运动会引发长时间的平滑眼球加速,随后是平滑、准确的跟踪。3. 改变目标阶梯的幅度表明,对于在视野所有位置移动的目标,缺陷是相似的。跟踪开始后0 - 20毫秒内的眼球加速与初始目标位置无关,并且对于向上和向下的目标运动是对称的。跟踪开始后60 - 80毫秒内的眼球加速显示出很大的不对称性。对于向上的目标运动,该时间段内的眼球加速很小,且不依赖于初始目标位置。对于向下的目标运动,眼球加速强烈依赖于初始目标位置,当目标从靠近注视位置开始移动时加速很大。4. 接下来,我们试图通过评估这只猴子在各种跟踪条件下的垂直运动处理和垂直眼球运动来理解上下不对称的机制。对于点状目标,如果在向下跟踪期间呈现图像运动,对向上图像运动的反应与正常猴子相似。此外,向上跟踪有缺陷的这只猴子能够利用向上的图像运动对移动目标进行准确的扫视。我们得出结论,这只猴子对向上图像运动的视觉处理是正常的,视觉运动处理中的不对称不能解释其向上跟踪的缺陷。5. 当点状目标与一个大的纹理图案一起移动时,向上的平滑眼球加速是正常的。(摘要截取自400字)

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