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Human smooth and saccadic eye movements during voluntary pursuit of different target motions on different backgrounds.

机译:在不同背景下自愿追求不同目标运动的过程中,人的眼球平稳运动。

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摘要

Horizontal and vertical eye movements of ten human subjects were recorded with a scleral induction-coil technique during voluntary pursuit of sinusoidal, triangular and pseudo-random target motions of different frequency, amplitude and dimensionality upon a dark, diffuse or structured background. Data processing included separation of the composite eye movement into a cumulative smooth and saccadic displacement, computation of gain and phase of the composite and smooth eye movements with respect to the target movement and analysis of retinal position error. Pursuit eye movements were never completely smooth. Smooth pursuit gain was always lower than 0.95 and saccades were used to supplement the smooth eye movements in pursuing the target with the proper amplitude. The gain of composite eye movements was about unity for sinusoidal target motions and ramps; it exceeded unity for the highest frequency components in a pseudo-random motion. The gain of the smooth eye movements decreased monotonously whenever target velocity increased. It was higher for single sine waves than for a pseudo-random motion, however, with pseudo-random motion it was relatively higher for the higher frequency components. Phase lags were in general smaller for single sine waves than for pseudo-random motion, but for the latter a phase lead of the smooth component was consistently found for the lower frequency components. During pursuit of a rhomboid trajectory, the eye movements showed directional errors which are interpreted as anticipatory behaviour. The distribution of the retinal error was symmetrical around zero. Its standard deviation varied between about 0.2 and 1.3 degrees; it was about proportional to target velocity and inversely proportional to smooth pursuit gain. It was limited by the insertion of saccades which were in general corrective. The influence of a diffusely illuminated background was minimal. A structured background inhibited smooth pursuit in the horizontal direction by about 10% and in the vertical direction by about 20%. This deficit of smooth pursuit was fully compensated by the insertion of more saccades and had no consequences for the standard deviation of the retinal error. The type of structure of the background was only of marginal importance. Horizontal pursuit was in general slightly smoother and more precise than vertical pursuit.
机译:在黑暗,弥漫或结构化背景下,在自愿追求不同频率,振幅和维度的正弦,三角形和伪随机目标运动过程中,使用巩膜感应线圈技术记录了十名人类受试者的水平和垂直眼睛运动。数据处理包括将复合眼运动分离为累积的平滑和眼球位移,计算复合眼运动相对于目标运动的增益和相位以及视网膜位置误差的分析。追求眼球运动从未完全顺畅。平滑追踪增益始终低于0.95,并且扫视镜用于补充平滑的眼球运动,以适当的幅度跟踪目标。对于正弦目标运动和斜波,合成眼动的增益约为1。对于伪随机运动中的最高频率分量,它超过了1。每当目标速度增加时,眼睛平滑运动的增益就会单调减少。单正弦波的频率高于伪随机运动,但是,伪随机运动的频率相对较高。通常,单正弦波的相位滞后要比伪随机运动小,但对于后者,在低频分量中始终可以找到平滑分量的相位超前。在追踪菱形轨迹的过程中,眼睛的运动表现出方向性误差,这被解释为预期行为。视网膜误差的分布在零附近对称。它的标准偏差在0.2到1.3度之间变化。它与目标速度成正比,与平滑追随增益成反比。它受到插入扫视镜的限制,该扫视镜通常是矫正的。漫反射背景的影响很小。结构化的背景抑制了水平方向上约10%的平滑跟踪和垂直方向上约20%的平滑跟踪。通过插入更多的扫视镜,可以完全弥补这种平滑追求的不足,并且对视网膜误差的标准差没有影响。背景的结构类型仅具有很小的重要性。一般而言,水平追踪比垂直追踪稍微更平滑,更精确。

著录项

  • 作者

    Collewijn, H; Tamminga, E P;

  • 作者单位
  • 年度 1984
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  • 原文格式 PDF
  • 正文语种 en
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