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首页> 外文期刊>Journal of vision >Perceptual alternations between unbound moving contours and bound shape motion engage a ventral/dorsal interplay
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Perceptual alternations between unbound moving contours and bound shape motion engage a ventral/dorsal interplay

机译:未绑定的运动轮廓与绑定的形状运动之间的感知交替会引起腹侧/背侧相互作用

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Abstract Abstract: Abstract?? Visual shape and motion information, processed in distinct brain regions, should be combined to elicit a unitary coherent percept of an object in motion. In an fMRI study, we identified brain regions underlying the perceptual binding of motion and shape independently of the featuresa??contrast, motion, and shapea??used to design the moving displays. These displays alternately elicited a bound (moving diamond) or an unbound (disconnected moving segments) percept, and were either physically unchanging yet perceptually bistable or physically changing over time. The joint analysis of the blood-oxygen-level-dependent (BOLD) signals recorded during bound or unbound perception with these different stimuli revealed a network comprising the occipital lobe and ventral and dorsal visual regions. Bound percepts correlated with in-phase BOLD increases within the occipital lobe and a ventral area and decreased activity in a dorsal area, while unbound percepts elicited moderate BOLD modulations in these regions. This network was similarly activated by bistable unchanging displays and by displays periodically changing over time. The uncovered interplay between the two regions is proposed to reflect a generic binding process that dynamically weights the perceptual evidence supporting the different shape and motion interpretations according to the reliability of the neural activity in these regions.
机译:摘要摘要:摘要?在不同的大脑区域中处理的视觉形状和运动信息应组合起来,以引起运动对象的整体一致感知。在一项功能磁共振成像研究中,我们确定了与运动和形状的感知结合相关的大脑区域,而与用于设计运动显示的特征(对比度,运动和形状)无关。这些显示交替地引发绑定(移动的菱形)或未绑定(断开的移动段)的感知,并且在物理上不变但在感知上是双稳态的,或者随着时间而发生物理变化。对这些不同刺激在有约束或无约束知觉期间记录的血氧水平依赖性(BOLD)信号进行的联合分析揭示了一个包括枕叶以及腹侧和背侧视觉区域的网络。与枕骨和腹侧区域内的同相BOLD增加相关的束缚知觉与背侧区域活动减少有关,而未束缚的知觉在这些区域引起中度BOLD调节。类似地,通过双稳态不变显示器以及显示器随时间周期性变化来激活该网络。提出了两个区域之间未发现的相互作用,以反映一种通用的绑定过程,该过程根据这些区域中神经活动的可靠性动态加权支持不同形状和运动解释的知觉证据。

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