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Visual motion transforms visual space representations similarly throughout the human visual hierarchy

机译:视觉运动在整个人类视觉层次结构中类似地转换视觉空间表示

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Several studies demonstrate that visual stimulusmotion affects neural receptive fields and fMRI response amplitudes. Here we unite results of these two approaches and extend them by examining the effects of visual motion on neural position preferences throughout the hierarchy of human visual field maps. We measured population receptive field (pRF) properties using high-field fMRI (7 T), characterizing position preferences simultaneously over large regions of the visual cortex. We measured pRFs properties using sine wave gratings in stationary apertures, moving at various speeds in either the direction of pRF measurement or the orthogonal direction. Wefind direction- and speed-dependent changes in pRF preferred position and size in all visual field maps examined, including V1, V3A, and the MT + map TO1. These effects on pRF properties increase up the hierarchy of visual field maps. However, both within and between visual field maps the extent of pRF changes was approximately proportional to pRF size. This suggests that visual motion transforms the representation of visual space similarly throughout the visual hierarchy. Visual motion can also produce an illusory displacement of perceived stimulus position. We demonstrate perceptual displacements using the same stimulus configuration. In contrast to effects on pRF properties, perceptual displacements show only weak effects of motion speed, with far larger speed-independent effects. We describe a model where low-level mechanisms could underlie the observed effects on neural position preferences. We conclude that visual motion induces similar transformations of visuo-spatial representations throughout the visual hierarchy, which may arise through low-level mechanisms. (C) 2015 Elsevier Inc. All rights reserved.
机译:一些研究表明,视觉刺激会影响神经接收领域和FMRI响应幅度。在这里,我们通过检查视觉运动在整个人类视野地图的层次结构中,通过检查视觉运动的影响来延伸到这两种方法的结果。我们使用高场FMRI(7T)测量人口接收领域(PRF)性质,同时在视觉皮质的大区域上表征位置偏好。我们使用固定孔的正弦波光栅测量PRFS性质,以PRF测量的方向或正交方向以各种速度移动。在检查的所有视野图中,PRF优选位置和尺寸的WEFind方向和速度变化,包括V1,V3A和MT + MAP TO1。这些对PRF属性的影响增加了视野地图的层次结构。但是,在视野地图内和之间的两个之间的PRF变化的程度都与PRF大小成比例。这表明视觉运动在整个视觉层次结构中类似地转换视觉空间的表示。视觉运动还可以产生感知刺激位置的虚幻位移。我们使用相同的刺激配置展示了感知位移。与对PRF性质的影响相比,感知位移仅显示运动速度的弱势,具有更大的速度效果。我们描述了一种模型,其中低级别机制可能使观察到的神经位置偏好的影响。我们得出结论,视觉运动在整个视觉层次结构中引起visuo-spatial表示的类似变化,这可能通过低级机制来产生。 (c)2015 Elsevier Inc.保留所有权利。

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