首页> 外文期刊>The European Journal of Neuroscience >Role of primary visual cortex in the binocular integration of plaid motion perception.
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Role of primary visual cortex in the binocular integration of plaid motion perception.

机译:初级视觉皮层在格子运动感知的双眼融合中的作用。

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This study assessed the early mechanisms underlying perception of plaid motion. Thus, two superimposed gratings drifting in a rightward direction composed plaid stimuli whose global motion direction was perceived as the vector sum of the two components. The first experiment was aimed at comparing the perception of plaid motion when both components were presented to both eyes (dioptic) or separately to each eye (dichoptic). When components of the patterns had identical spatial frequencies, coherent motion was correctly perceived under dioptic and dichoptic viewing condition. However, the perceived direction deviated from the predicted direction when spatial frequency differences were introduced between components in both conditions. The results suggest that motion integration follows similar rules for dioptic and dichoptic plaids even though performance under dichoptic viewing did not reach dioptic levels. In the second experiment, the role of early cortical areas in the processing of both plaids was examined. As convergence of monocular inputs is needed for dichoptic perception, we tested the hypothesis that primary visual cortex (V1) is required for dichoptic plaid processing by delivering repetitive transcranial magnetic stimulation to this area. Ten minutes of magnetic stimulation disrupted subsequent dichoptic perception for approximately 15 min, whereas no significant changes were observed for dioptic plaid perception. Taken together, these findings suggest that V1 is not crucial for the processing of dioptic plaids but it is necessary for the binocular integration underlying dichoptic plaid motion perception.
机译:这项研究评估了感知格子运动的早期机制。因此,两个向右漂移的叠加光栅构成了格子刺激,其总体运动方向被视为这两个分量的矢量和。第一个实验旨在比较当两个组件同时出现在两只眼睛(屈光)或分别出现在每只眼睛(屈光)时对格子运动的感觉。当图案的分量具有相同的空间频率时,在屈光和两视观察条件下,可以正确感知连贯运动。但是,当在两种情况下在组件之间引入空间频率差异时,感知方向就会偏离预测方向。结果表明,即使在分视观察下的性能未达到屈光水平,运动积分也遵循类似的规则处理屈光和斜视格子。在第二个实验中,检查了早期皮质区域在两个格子处理中的作用。由于两眼的感知需要单眼输入的收敛,因此我们通过向该区域传递重复的经颅磁刺激,测试了两眼的格子处理需要初级视觉皮层(V1)的假设。十分钟的磁刺激中断了大约15分钟的随后的两视分离知觉,而对两视格子感知没有观察到显着变化。综上所述,这些发现表明,V1对于屈光度格子的加工不是至关重要的,但对于屈光度格子运动感知基础的双眼整合是必需的。

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