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人类视觉触发的眼臂运动。

Visually triggered eye-arm movements in man.

作者信息

Herman R, Herman R, Maulucci R

出版信息

Exp Brain Res. 1981;42(3-4):392-8. doi: 10.1007/BF00237504.

Abstract

The degree of temporal coupling and the nature of temporal ordering between the gaze (eye-head) and arm motor systems was studied in normal subjects by measuring the reaction time, RT, of each system to randomly generated visual signals presented along the horizontal meridian: (1) at two spatial locations, 15.5 degrees and 29.1 degrees, (2) to the right and left of a central fixation point, and (3) with and without room illumination. Upon detecting the visual signal, the subject was instructed to guide the arm from its rest position upon a supporting table and to extinguish the light source by touching a metal disc enclosing the stimulus "as quickly and accurately as possible." The results indicated (1) saccadic eye motion initiated gaze towards the target, (2) a change in the eccentric position of the target was associated with alteration of the eye and arm RT by a similar value; the interval between eye and the subsequent arm RT was invariant with spatial location no matter the presence or absence of room illumination, and (3) the arm RT increased when visual information of the environment was not available. It is postulated that a visual stimulus triggers a command system releasing a patterned sequence of eye-hand-arm motion; the initiation of motion in these motor systems is based upon the same retinal error calculation; however, no rigid rule can be established for the serial ordering or temporal sequencing of motion between the triggered motor systems. The temporal arrangement between head and arm with eye can be modified, at least in part, by alterations in supraspinal control of postural mechanisms and/or motoneuronal excitability of the responding muscles prior to motion.

摘要

通过测量正常受试者的注视(眼-头)和手臂运动系统对沿水平子午线随机呈现的视觉信号的反应时间(RT),研究了这两个系统之间的时间耦合程度和时间排序性质:(1)在两个空间位置,即15.5度和29.1度;(2)在中央注视点的右侧和左侧;(3)在有和没有室内照明的情况下。检测到视觉信号后,受试者被要求将手臂从支撑台上的休息位置引导至通过触摸包围刺激物的金属盘“尽可能快速准确地”熄灭光源。结果表明:(1)眼球的扫视运动启动了对目标的注视;(2)目标偏心位置的变化与眼睛和手臂反应时间的改变值相似;无论有无室内照明,眼睛和随后手臂反应时间之间的间隔在空间位置上是不变的;(3)当没有环境视觉信息时,手臂反应时间增加。据推测,视觉刺激会触发一个指令系统,释放出有模式的眼-手-臂运动序列;这些运动系统中运动的启动基于相同的视网膜误差计算;然而,对于触发的运动系统之间运动的序列排序或时间排序,无法建立严格的规则。头部、手臂与眼睛之间的时间安排至少部分地可以通过运动前姿势机制的脊髓上控制和/或反应肌肉的运动神经元兴奋性的改变来调节。

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