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在注视平面内的自主双眼注视转移:同向运动和辐辏运动的动力学

Voluntary binocular gaze-shifts in the plane of regard: dynamics of version and vergence.

作者信息

Collewijn H, Erkelens C J, Steinman R M

机构信息

Department of Physiology, Faculty of Medicine, Erasmus University Rotterdam, The Netherlands.

出版信息

Vision Res. 1995 Dec;35(23-24):3335-58. doi: 10.1016/0042-6989(95)00082-p.

Abstract

We studied the dynamics of voluntary, horizontal, binocular gaze-shifts between pairs of continuously visible, real three-dimensional targets. Subjects were stabilized on a biteboard to allow full control of target angles, which were made to differ only in distance (pure vergence), only in direction (pure version; conjugate saccades) or in both distance and direction (disjunctive saccades). A wide range of changes in vergence (0-25 deg) and version (0-65 deg) was recorded to study the dynamics of disjunctive saccades, described until now for limited ranges, throughout the horizontal oculomotor range within manual working space, and to study the velocity-duration-amplitude relations ("main sequence") of disjunctive vs conjugate saccades. Pure vergence was almost never observed; divergence, especially, was always associated with saccades. Likewise, horizontal saccades were never strictly conjugate, they always contained a transient divergence-convergence sequence. The amplitude and velocity of these transient components varied systematically with saccadic size. In combined version-vergence movements, vergence was, in general, accelerated and shortened as a function of increasing version. This effect was fairly uniform for divergence, which appeared to increase in velocity by about as much as the transient peak divergent velocity of the version saccade. The intrasaccadic fraction of divergence increased from about 50% to close to 100% as a function of increasing version. For convergence, saccades up to about 20 deg were also accelerating; in this case it appeared as if the transient peak convergent velocity of the version saccade was added to the basic convergence velocity. For larger saccades this effect was partly counteracted by the penetration of an initial divergence associated with the saccade. This initial divergence delayed and slowed down convergence. The intrasaccadic fraction of convergence varied between about 40% and 70%. In disjunctive saccades the individual eyes did not follow the main-sequence parameters of conjugate saccades of comparable sizes, except for the eye that moved with the combination "abduction and divergence". For all other combinations of vergence and version, disjunctive saccades had lower peak velocities and longer durations than conjugate saccades. As a consequence, disjunctive version was also slower than conjugate version. Thus, while version accelerates vergence, vergence slows down version: in the generalized case of three-dimensional gaze-shifts, peak velocities and durations are in between those of the limiting cases of pure version and pure vergence. We conclude that, within manual working space, binocular gaze-shifts are effected by the highly integrated action of conjugate and disjunctive mechanisms, both of which are expressed preferentially in fast, saccadic movements.

摘要

我们研究了在成对的持续可见的真实三维目标之间自愿进行的水平双眼注视转移的动态过程。受试者固定在咬板上,以便完全控制目标角度,目标角度仅在距离上不同(纯聚散)、仅在方向上不同(纯旋转;共轭扫视)或在距离和方向上都不同(非共轭扫视)。记录了聚散(0 - 25度)和旋转(0 - 65度)的广泛变化,以研究非共轭扫视的动态过程,此前对其描述的范围有限,涵盖手动工作空间内整个水平眼动范围内的情况,并研究非共轭扫视与共轭扫视的速度 - 持续时间 - 幅度关系(“主序列”)。几乎从未观察到纯聚散;特别是散开,总是与扫视相关联。同样,水平扫视也从未严格共轭,它们总是包含一个短暂的散开 - 会聚序列。这些短暂成分的幅度和速度随扫视大小而系统变化。在旋转 - 聚散联合运动中,聚散通常会随着旋转增加而加速和缩短。这种效应在散开时相当一致,散开的速度增加幅度似乎与旋转扫视的短暂峰值散开速度相当。随着旋转增加,扫视过程中散开的比例从约50%增加到接近100%。对于会聚,高达约20度的扫视也在加速;在这种情况下,似乎旋转扫视的短暂峰值会聚速度被加到了基本会聚速度上。对于更大的扫视,这种效应部分被与扫视相关的初始散开的侵入所抵消。这种初始散开延迟并减慢了会聚。扫视过程中会聚的比例在约40%至70%之间变化。在非共轭扫视中,除了以“外展和散开”组合运动的眼睛外,单眼并不遵循大小相当的共轭扫视的主序列参数。对于聚散和旋转的所有其他组合,非共轭扫视的峰值速度较低,持续时间较长。因此,非共轭旋转也比共轭旋转慢。因此,虽然旋转加速聚散,但聚散减慢旋转:在三维注视转移的一般情况下,峰值速度和持续时间介于纯旋转和纯聚散的极限情况之间。我们得出结论,在手动工作空间内,双眼注视转移是由共轭和非共轭机制的高度整合作用实现的,这两种机制都优先在快速的扫视运动中表现出来。

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