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人类大脑中的立体视觉处理与双眼亮度竞争的关系。

Stereoscopic processing in the human brain as a function of binocular luminance rivalry.

作者信息

Fortin A, Faubert J, Ptito A, Gjedde A, Kupers R, Ptito M

机构信息

Ecole d'Optométrie, Université de Montréal, CP 6128, Succursale centre-ville, Montreal (QC) H3C 3J7, Canada.

出版信息

Neuroreport. 2003 Jun 11;14(8):1163-6. doi: 10.1097/00001756-200306110-00012.

Abstract

We investigated the neural substrates of a recent model of human stereodepth perception by obtaining measurements of regional cerebral blood flow (rCBF) using PET. Subjects experienced the perceptual properties of stereopsis by viewing rival-luminance stereograms displaying an identical random-dot pattern in their central portion while the backgrounds exhibited correspondent dots contrasting in black/white luminance. The stereoscopic vision induced by retinal luminance rivalry coincided with a significant elevation of rCBF in the dorsal visual pathway. Area V5 (MT) was activated bilaterally by the experimental condition while the remaining active loci were restricted to the right hemisphere. The neural sites that responded to this novel stereoscopic stimulus are similar to those activated by traditional stereograms containing horizontal disparities.

摘要

我们通过正电子发射断层扫描(PET)测量局部脑血流量(rCBF),研究了一种最新的人类立体深度知觉模型的神经基础。受试者通过观看竞争亮度立体图来体验立体视觉的感知特性,这些立体图在中央部分显示相同的随机点图案,而背景则呈现黑白亮度对比的对应点。视网膜亮度竞争诱导的立体视觉与背侧视觉通路中rCBF的显著升高相吻合。实验条件双侧激活了V5区(MT区),而其余活跃位点局限于右半球。对这种新型立体刺激做出反应的神经位点与由包含水平视差的传统立体图激活的位点相似。

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