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扫视适应对视觉目标定位的影响。

Effect of saccadic adaptation on localization of visual targets.

作者信息

Awater Holger, Burr David, Lappe Markus, Morrone M Concetta, Goldberg Michael E

机构信息

Lehrstuhl für Allgemeine Zoologie und Neurobiologie, Ruhr Universität, Bochum, Germany.

出版信息

J Neurophysiol. 2005 Jun;93(6):3605-14. doi: 10.1152/jn.01013.2003. Epub 2005 Apr 20.

Abstract

Objects flashed briefly around the time of a saccadic eye movement are grossly mislocalized by human subjects, so they appear to be compressed toward the endpoint of the saccade. In this study, we investigate spatial localization during saccadic adaptation to examine whether the focus of compression tends toward the intended saccadic target or at the endpoint of the actual (adapted) movement. We report two major results. First, that peri-saccadic focus of the compression did not occur at the site of the initial saccadic target, but tended toward the actual landing site of the saccade. Second, and more surprisingly, we observed a large long-term perceptual distortion of space, lasting for hundreds of milliseconds. This distortion did not occur over the whole visual field but was limited to a local region of visual space around the saccade target, suggesting that saccadic adaptation induces a visuo-topic remapping of space. The results imply that the mechanisms controlling saccadic adaptation also affect perception of space and point to a strong perceptual plasticity coordinated with the well-documented plasticity of the motor system.

摘要

在眼球快速跳动期间短暂闪现的物体,人类受试者会对其位置产生严重误判,因此这些物体看起来会被压缩到眼跳的终点方向。在本研究中,我们研究了眼跳适应过程中的空间定位,以检验压缩焦点是趋向于预期的眼跳目标,还是实际(适应后)运动的终点。我们报告了两个主要结果。第一,眼跳周围的压缩焦点并非出现在最初眼跳目标的位置,而是趋向于眼跳的实际着陆点。第二,更令人惊讶的是,我们观察到空间存在长期的巨大感知扭曲,持续数百毫秒。这种扭曲并非发生在整个视野,而是局限于眼跳目标周围视觉空间的局部区域,这表明眼跳适应会引发空间的视觉拓扑重映射。这些结果意味着,控制眼跳适应的机制也会影响空间感知,并指向一种与运动系统中已充分记录的可塑性相协调的强大感知可塑性。

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