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视觉引导眼动的运动学

Kinematics of visually-guided eye movements.

作者信息

Hess Bernhard J M, Thomassen Jakob S

机构信息

Department of Neurology, University Hospital Zurich, Zurich, Switzerland.

出版信息

PLoS One. 2014 Apr 21;9(4):e95234. doi: 10.1371/journal.pone.0095234. eCollection 2014.

Abstract

One of the hallmarks of an eye movement that follows Listing's law is the half-angle rule that says that the angular velocity of the eye tilts by half the angle of eccentricity of the line of sight relative to primary eye position. Since all visually-guided eye movements in the regime of far viewing follow Listing's law (with the head still and upright), the question about its origin is of considerable importance. Here, we provide theoretical and experimental evidence that Listing's law results from a unique motor strategy that allows minimizing ocular torsion while smoothly tracking objects of interest along any path in visual space. The strategy consists in compounding conventional ocular rotations in meridian planes, that is in horizontal, vertical and oblique directions (which are all torsion-free) with small linear displacements of the eye in the frontal plane. Such compound rotation-displacements of the eye can explain the kinematic paradox that the fixation point may rotate in one plane while the eye rotates in other planes. Its unique signature is the half-angle law in the position domain, which means that the rotation plane of the eye tilts by half-the angle of gaze eccentricity. We show that this law does not readily generalize to the velocity domain of visually-guided eye movements because the angular eye velocity is the sum of two terms, one associated with rotations in meridian planes and one associated with displacements of the eye in the frontal plane. While the first term does not depend on eye position the second term does depend on eye position. We show that compounded rotation - displacements perfectly predict the average smooth kinematics of the eye during steady- state pursuit in both the position and velocity domain.

摘要

遵循利斯廷定律的眼球运动的一个标志是半角规则,该规则指出眼球倾斜的角速度是视线相对于主眼位置的偏心率角度的一半。由于在远视力范围内所有视觉引导的眼球运动都遵循利斯廷定律(头部静止且直立),关于其起源的问题具有相当重要的意义。在这里,我们提供理论和实验证据表明,利斯廷定律源于一种独特的运动策略,该策略允许在沿视觉空间中的任何路径平稳跟踪感兴趣的物体时将眼扭转最小化。该策略包括将子午线平面中的传统眼球旋转(即水平、垂直和倾斜方向,这些方向都是无扭转的)与眼球在额平面中的小线性位移相结合。眼球的这种复合旋转 - 位移可以解释运动学上的悖论,即注视点可能在一个平面中旋转而眼球在其他平面中旋转。其独特特征是位置域中的半角定律,这意味着眼球的旋转平面倾斜角度为注视偏心率的一半。我们表明,这条定律不容易推广到视觉引导眼球运动的速度域,因为眼球角速度是两项之和,一项与子午线平面中的旋转相关,另一项与眼球在额平面中的位移相关。虽然第一项不依赖于眼球位置,但第二项确实依赖于眼球位置。我们表明,复合旋转 - 位移在位置和速度域中都能完美预测稳态跟踪期间眼球的平均平滑运动学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/105c/3994052/925ee61e45d2/pone.0095234.g001.jpg

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