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Integration of Motion Responses Underlying Directional Motion Anisotropy in Human Early Visual Cortical Areas

机译:人类早期视觉皮层区域中定向运动各向异性下的运动响应的积分

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摘要

Recent imaging studies have reported directional motion biases in human visual cortex when perceiving moving random dot patterns. It has been hypothesized that these biases occur as a result of the integration of motion detector activation along the path of motion in visual cortex. In this study we investigate the nature of such motion integration with functional MRI (fMRI) using different motion stimuli. Three types of moving random dot stimuli were presented, showing either coherent motion, motion with spatial decorrelations or motion with temporal decorrelations. The results from the coherent motion stimulus reproduced the centripetal and centrifugal directional motion biases in V1, V2 and V3 as previously reported. The temporally decorrelated motion stimulus resulted in both centripetal and centrifugal biases similar to coherent motion. In contrast, the spatially decorrelated motion stimulus resulted in small directional motion biases that were only present in parts of visual cortex coding for higher eccentricities of the visual field. In combination with previous results, these findings indicate that biased motion responses in early visual cortical areas most likely depend on the spatial integration of a simultaneously activated motion detector chain.
机译:最近的影像学研究已经报道了感知移动随机点图案时人类视觉皮层的定向运动偏差。已经假设这些偏差是由于运动检测器激活沿着视觉皮层中的运动路径的整合而发生的。在这项研究中,我们调查了使用不同运动刺激与功能性MRI(fMRI)进行此类运动整合的性质。提出了三种类型的移动随机点刺激,它们显示了相干运动,具有空间去相关的运动或具有时间去相关的运动。相干运动刺激的结果再现了先前报道的V1,V2和V3中的向心和离心方向运动偏差。时间相关的运动刺激会导致向心和离心偏向,类似于相干运动。相反,空间去相关的运动刺激导致较小的方向性运动偏差,该偏差仅在视觉皮层编码的一部分中存在,以实现更高的视野偏心率。结合以前的结果,这些发现表明,早期视觉皮层区域的运动响应偏差很可能取决于同时激活的运动检测器链的空间整合。

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