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受过训练的猫的扫视、平稳跟踪和视动性眼球运动。

Saccadic, smooth pursuit, and optokinetic eye movements of the trained cat.

作者信息

Evinger C, Fuchs A F

出版信息

J Physiol. 1978 Dec;285:209-29. doi: 10.1113/jphysiol.1978.sp012568.

Abstract
  1. Cats were trained to track a small target by rewarding them for keeping their eyes on target. Eye movements were measured by the electromagnetic search coil technique. 2. Cat saccades are qualitatively similar to primate saccades, but exhibit more variability in their parameters. However, they have longer durations and lower maximum velocities than primate saccades. As in the monkey, the duration of the horizontal or vertical component of an oblique saccade is lengthened when the orthogonal component has a larger amplitude. Cat saccades can be modified in midflight like human saccades. Opening the visual feed-back loop by controlling target position with eye position causes the cat to execute a staircase of equal amplitude saccades if a retinal error is present. Increasing the amount of visual feed-back induces saccadic oscillations. 3. Horizontal smooth pursuit of a 0 . 5 deg visual target is limited to velocities of less than 1 deg/sec. However, moving an optokinetic background with the 0 . 5 deg target enables the cat to achieve higher horizontal smooth eye velocities of up to 8 . 5 deg/sec. Prolonged (10-20 sec) constant velocity rotation of an optokinetic drum evokes horizontal slow-phase velocities of up to 28 deg/sec. In response to vertical movements of the target and optokinetic background, smooth eye movements reached 6 deg/sec maximum upward velocities but only 2 . 5 deg/sec maximum downward velocities. Opening the feed back loop with no retinal error present causes the eye to exhibit a growing smooth trajectory. The response to a Rashbass step-ramp target suggests that the feline smooth response is a function of target movement rather than displacement. 4. These data suggest that cat saccadic eye movements resemble those of primates while the cat smooth pursuit and optokinetically induced eye movements are more similar to those of the rabbit.
摘要
  1. 通过奖励猫注视目标来训练它们追踪一个小目标。眼动通过电磁搜索线圈技术进行测量。2. 猫的扫视在性质上与灵长类动物的扫视相似,但在参数上表现出更大的变异性。然而,它们的持续时间比灵长类动物的扫视更长,最大速度更低。与猴子一样,当正交分量的幅度较大时,倾斜扫视的水平或垂直分量的持续时间会延长。猫的扫视可以像人类的扫视一样在飞行中进行修改。通过用眼睛位置控制目标位置来打开视觉反馈回路,如果存在视网膜误差,会使猫执行一系列等幅扫视。增加视觉反馈量会诱发扫视振荡。3. 对0.5度视觉目标的水平平滑追踪限于速度小于1度/秒。然而,将一个0.5度的目标与视动背景一起移动,能使猫达到高达8.5度/秒的更高水平平滑眼速度。视动鼓持续(10 - 20秒)的恒速旋转会诱发高达28度/秒的水平慢相速度。响应目标和视动背景的垂直运动,平滑眼运动向上的最大速度达到6度/秒,但向下的最大速度仅为2.5度/秒。在不存在视网膜误差的情况下打开反馈回路会使眼睛呈现出不断增长的平滑轨迹。对拉什巴斯阶梯斜坡目标的反应表明,猫的平滑反应是目标运动而非位移的函数。4. 这些数据表明,猫的眼球扫视运动类似于灵长类动物的,而猫的平滑追踪和视动诱发的眼球运动更类似于兔子的。

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本文引用的文献

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THE MECHANICS OF HUMAN SACCADIC EYE MOVEMENT.人类眼球快速运动的力学原理
J Physiol. 1964 Nov;174(2):245-64. doi: 10.1113/jphysiol.1964.sp007485.
3
4
The mechanics of human smooth pursuit eye movement.人类平稳跟踪眼球运动的机制。
J Physiol. 1965 Oct;180(3):569-91. doi: 10.1113/jphysiol.1965.sp007718.
9
Dynamic visual acuity as an index of eye movement control.动态视力作为眼动控制的一项指标。
Vision Res. 1970 Dec;10(12):1377-91. doi: 10.1016/0042-6989(70)90089-1.

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