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主动头部运动和刺激运动期间的视网膜滑动

Retinal slip during active head motion and stimulus motion.

作者信息

Gielen C C A M, Gabel S F, Duysens J

机构信息

Department of Biophysics, BEG 231, University of Nijmegen, Geert Grooteplein 21, 6525 EZ Nijmegen, The Netherlands.

出版信息

Exp Brain Res. 2004 Mar;155(2):211-9. doi: 10.1007/s00221-003-1722-z. Epub 2003 Dec 3.

Abstract

Gaze control in various conditions is important, since retinal slip deteriorates the perception of 3-D shape of visual stimuli. Several studies have shown that visual perception of 3-D shape is better for actively moving observers than for passive observers watching a moving object. However, it is not clear to what extent the improved percept of 3-D shape for active observers has to be attributed to corollary discharges to higher visual centers or whether the improved percept might be due to improved gaze stabilization during active head movements. The aim of this study was to measure binocular eye movements and to make a quantitative comparison of retinal slip for subjects instructed to fixate a visual stimulus in an active condition (subject makes an active head movement, object is stationary) and in a passive condition (the stimulus moves, the subject is stationary) for various movement frequencies, viewing distances, and stimulus diameters. Retinal slip remains below the "acuity threshold" of about 4 deg/s in active conditions, except for the highest frequency tested in this study (1.5 Hz) for nearby targets (0.25 cm). Retinal slip exceeds this threshold for most passive conditions. These results suggest that the enhanced performance in the visual perception of 3-D shape during active head movements can, at least partly, be explained by better fixation by actively moving observers.

摘要

在各种条件下进行注视控制都很重要,因为视网膜图像滑动会降低对视觉刺激三维形状的感知。多项研究表明,对于主动移动的观察者而言,对三维形状的视觉感知要优于观看移动物体的被动观察者。然而,目前尚不清楚主动观察者对三维形状感知的改善在多大程度上应归因于向更高视觉中枢的伴随放电,或者这种改善的感知是否可能是由于主动头部运动期间注视稳定性的提高。本研究的目的是测量双眼眼球运动,并对受试者在主动条件下(受试者进行主动头部运动,物体静止)和被动条件下(刺激物移动,受试者静止)注视视觉刺激时的视网膜图像滑动进行定量比较,比较不同运动频率、观察距离和刺激物直径下的情况。在主动条件下,视网膜图像滑动保持在约4度/秒的“敏锐度阈值”以下,但本研究中测试的最高频率(1.5赫兹)下的近距离目标(0.25厘米)除外。在大多数被动条件下,视网膜图像滑动超过该阈值。这些结果表明,主动头部运动期间三维形状视觉感知的性能增强至少部分可以由主动移动的观察者更好的注视来解释。

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