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跨空间整合多个运动矢量:一项关于透明运动感知的功能磁共振成像研究

Integration of multiple motion vectors over space: an fMRI study of transparent motion perception.

作者信息

Muckli Lars, Singer Wolf, Zanella Friedhelm E, Goebel Rainer

机构信息

Max Planck Institute for Brain Research, Neurophysiology, 60528 Frankfurt am Main, Germany.

出版信息

Neuroimage. 2002 Aug;16(4):843-56. doi: 10.1006/nimg.2002.1085.

Abstract

Visual scenes are frequently composed of objects that move in different directions. To segment such scenes into distinct objects or image planes, local motion cues have to be evaluated and integrated according to criteria of global coherence. When several populations of coherently moving random dots penetrate each other, the visual system tends to assign them to different planes-perceived as transparent motion. This process of integration was studied by changing the angle of motion trajectories with which groups of dots penetrate each other or by varying the spatial constellation of dots moving in opponent directions. Psychophysical testing revealed that stimuli providing almost identical local motion cues could be perceived in three very different ways: (1) as a matrix of stationary flickering dots, (2) as a single surface of coherently moving dots, and (3) as two transparent dot matrices moving in different directions. Behaviorally controlled functional magnetic resonance imaging (fMRI) was used to identify brain regions that contribute to the integration of local motion cues into coherently moving surfaces. Activation of the human motion complex (hMT+/V5) and of areas in the fusiform gyrus (FG) as well as in the intraparietal sulcus (IPS-occ) was correlated with the perception of coherent motion and especially hMT+/V5 took a central role in differentiating transparent motion from single-surface coherent motion.

摘要

视觉场景通常由朝不同方向移动的物体组成。为了将此类场景分割成不同的物体或图像平面,必须根据全局连贯性标准对局部运动线索进行评估和整合。当几组连贯移动的随机点相互穿插时,视觉系统倾向于将它们分配到不同的平面——被感知为透明运动。通过改变点群相互穿插的运动轨迹角度或改变沿相反方向移动的点的空间布局来研究这种整合过程。心理物理学测试表明,提供几乎相同局部运动线索的刺激可以以三种非常不同的方式被感知:(1)作为静止闪烁点的矩阵,(2)作为连贯移动点的单个表面,以及(3)作为沿不同方向移动的两个透明点矩阵。采用行为控制功能磁共振成像(fMRI)来识别有助于将局部运动线索整合为连贯移动表面的脑区。人类运动复合体(hMT+/V5)以及梭状回(FG)和顶内沟(IPS-occ)区域的激活与连贯运动的感知相关,尤其是hMT+/V5在区分透明运动和单表面连贯运动中起核心作用。

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