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在扫视抑制期间,眼睛和手臂朝着移位目标进行目标导向运动时的视觉稳定性。

Visual stability with goal-directed eye and arm movements toward a target displaced during saccadic suppression.

作者信息

Blouin J, Bridgeman B, Teasdale N, Bard C, Fleury M

机构信息

Laboratoire de Performance Motrice Humaine, Université Laval, Quebec, Canada.

出版信息

Psychol Res. 1995;58(3):169-76. doi: 10.1007/BF00419632.

Abstract

This experiment tested whether the perceived stability of the environment is altered when there is a combination of eye and visually open-loop hand movements toward a target displaced during the eye movements, i.e., during saccadic suppression. Visual-target eccentricity randomly decreased or increased during eye movements and subjects reported whether they perceived a target displacement or not, and if so, the direction of the displacement. Three experimental conditions, involving different combinations of eye and arm movements, were tested: (a) eye movements only; (b) simultaneous eye and rapid arm movements toward the target; and (c) simultaneous eye and arm movements with a restraint blocking the arm as soon as the hand left the starting position. The perceptual threshold of target displacements resulting in an increased target eccentricity was greater when subjects combined eye and arm movements toward the target object, specially for the no-restraint condition. Subjects corrected most of their arm trajectory toward the displaced target despite the short movement times (average MT = 189 ms). After the movements, the null error feedback of the hand's final position presumably overlapped the retino-oculomotor signal error and could be responsible for the deficient perception of target displacements. Thus, subjects interpreted the terminal hand positions as being within the range of the endpoint variability associated with the production of rapid arm movements rather than as a change of the environment. These results suggest that a natural strategy adopted for processing spatial information, especially in a competing situation, could favour a constancy tendency avoiding systematic perception of a change of environment for any noise or variability at the central or peripheral levels.

摘要

本实验测试了在眼动过程中,当眼睛和视觉开环手部动作朝着一个在眼动期间发生位移的目标移动(即扫视抑制期间)时,环境的感知稳定性是否会发生改变。在眼动过程中,视觉目标的离心率随机减小或增大,受试者报告他们是否感知到目标位移,如果感知到,则报告位移方向。测试了三种涉及眼睛和手臂动作不同组合的实验条件:(a) 仅眼动;(b) 眼睛和快速手臂同时朝着目标移动;(c) 眼睛和手臂同时移动,一旦手离开起始位置,就用一个约束装置阻止手臂移动。当受试者将眼睛和手臂朝着目标物体移动时,尤其是在无约束条件下,导致目标离心率增加的目标位移的感知阈值更大。尽管移动时间较短(平均运动时间 = 189 毫秒),受试者大多会纠正其朝向位移目标的手臂轨迹。移动之后,手部最终位置的零误差反馈大概与视网膜 - 眼动信号误差重叠,可能是导致对目标位移感知不足的原因。因此,受试者将手部的最终位置解释为在与快速手臂运动产生相关的终点变异性范围内,而不是环境的变化。这些结果表明,一种用于处理空间信息的自然策略,特别是在竞争情况下,可能有利于一种恒常性倾向,避免因中枢或外周水平的任何噪声或变异性而系统地感知环境变化。

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