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在平移运动中瞬态方向变化辨别过程中MT/V5区和右侧顶下小叶皮质的激活。

Activation of area MT/V5 and the right inferior parietal cortex during the discrimination of transient direction changes in translational motion.

作者信息

Martinez-Trujillo Julio C, Cheyne Douglas, Gaetz William, Simine Evgueni, Tsotsos John K

机构信息

Department of Physiology, McGill University, Montreal, Quebec, Canada H3G 1Y6.

出版信息

Cereb Cortex. 2007 Jul;17(7):1733-9. doi: 10.1093/cercor/bhl084. Epub 2006 Sep 29.

Abstract

The perception of changes in the direction of objects that translate in space is an important function of our visual system. Here we investigate the brain electrical phenomena underlying such a function by using a combination of magnetoencephalography (MEG) and magnetic resonance imaging. We recorded MEG-evoked responses in 9 healthy human subjects while they discriminated the direction of a transient change in a translationally moving random dot pattern presented either to the right or to the left of a central fixation point. We found that responses reached their maximum in 2 main regions corresponding to motion processing area middle temporal (MT)/V5 contralateral to the stimulated visual field, and to the right inferior parietal lobe (rIPL). The activation latencies were very similar in both regions ( approximately 135 ms) following the direction change onset. Our findings suggest that area MT/V5 provides the strongest sensory signal in response to changes in the direction of translational motion, whereas area rIPL may be involved either in the sensory processing of transient motion signals or in the processing of signals related to orienting of attention.

摘要

对在空间中平移的物体方向变化的感知是我们视觉系统的一项重要功能。在此,我们通过结合使用脑磁图(MEG)和磁共振成像来研究这种功能背后的脑电现象。我们记录了9名健康人类受试者在辨别呈现在中央注视点右侧或左侧的平移运动随机点图案的瞬时变化方向时的MEG诱发反应。我们发现,反应在与受刺激视野对侧的运动处理区域颞中回(MT)/V5以及右侧顶下小叶(rIPL)相对应的2个主要区域达到最大值。在方向变化开始后,两个区域的激活潜伏期非常相似(约135毫秒)。我们的研究结果表明,MT/V5区域对平移运动方向的变化提供最强的感觉信号,而rIPL区域可能参与瞬时运动信号的感觉处理或与注意力定向相关的信号处理。

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