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模糊视动中自发方向反转的神经关联

Neural correlates of spontaneous direction reversals in ambiguous apparent visual motion.

作者信息

Sterzer Philipp, Russ Michael O, Preibisch Christine, Kleinschmidt Andreas

机构信息

Department of Neurology, Johann Wolfgang Goethe-University, Theodor-Stern-Kai 7, D-60590 Frankfurt am Main, Germany.

出版信息

Neuroimage. 2002 Apr;15(4):908-16. doi: 10.1006/nimg.2001.1030.

Abstract

Looking at bistable visual stimuli, the observer experiences striking transitions between two competing percepts while the physical stimulus remains the same. Using functional imaging techniques, it is therefore possible to isolate neural correlates of perceptual changes that are independent of the low-level aspects of the stimulus. Previous experiments have demonstrated distributed activations in human extrastriate visual cortex related to switches between competing percepts. Here we asked where extrastriate responses still occur with a bistable stimulus that minimizes the cognitive difference between the two percepts. We used the "spinning wheel illusion," a bistable apparent motion stimulus of which both possible percepts correspond to the same object, share the same center, and are perceived as identically patterned stimuli moving at the same speed and changing only in direction. Using functional magnetic resonance imaging, we analyzed the spatial distribution of event-related activations occurring during spontaneous reversals of perceived direction of motion. In accordance with earlier neuroimaging findings for bistable percepts, we observed event-related activations in several frontal and parietal areas, including the superior parietal cortex bilaterally, the right inferior parietal cortex, and the premotor and inferior frontal cortex of both hemispheres. Furthermore, we found bilateral activations in the occipitotemporal junction (hMT+/V5) and in the lateral occipital sulcus ("KO") posterior to hMT+/V5, but not in areas of the "ventral stream" of cortical visual processing. Our data suggest that, while a frontoparietal network subserves more general aspects in bistable visual perception, the activations in functionally specialized extrastriate visual cortex are highly category- or attribute-specific.

摘要

观察双稳态视觉刺激时,观察者会在两种相互竞争的感知之间体验到惊人的转换,而物理刺激保持不变。因此,使用功能成像技术可以分离出与感知变化相关的神经关联,这些变化独立于刺激的低级方面。先前的实验已经证明,人类纹外视觉皮层中的分布式激活与竞争性感知之间的转换有关。在这里,我们研究了在双稳态刺激下,纹外反应仍会出现在何处,这种刺激将两种感知之间的认知差异降至最低。我们使用了“旋转轮错觉”,这是一种双稳态表观运动刺激,其中两种可能的感知都对应于同一个物体,共享同一个中心,并且被视为以相同速度移动且仅在方向上变化的相同图案的刺激。使用功能磁共振成像,我们分析了在感知运动方向的自发反转过程中发生的事件相关激活的空间分布。根据早期关于双稳态感知的神经成像研究结果,我们在几个额叶和顶叶区域观察到了事件相关激活,包括双侧顶上叶皮层、右侧顶下叶皮层以及双侧半球的运动前区和额下回。此外,我们在枕颞交界处(hMT+/V5)以及hMT+/V5后方的枕外侧沟(“KO”)发现了双侧激活,但在皮层视觉处理的“腹侧流”区域未发现激活。我们的数据表明,虽然额顶叶网络在双稳态视觉感知中发挥着更普遍的作用,但功能特化的纹外视觉皮层中的激活具有高度的类别或属性特异性。

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