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视觉感知变化期间的缪节律调制

Mu rhythm modulation during changes of visual percepts.

作者信息

Vanni S, Portin K, Virsu V, Hari R

机构信息

Brain Research Unit, Low Temperature Laboratory, Helsinki University of Technology, Espoo, Finland.

出版信息

Neuroscience. 1999;91(1):21-31. doi: 10.1016/s0306-4522(98)00521-1.

Abstract

Cooperation between vision and somatomotor behavior, such as manual exploration of objects, suggests close functional coupling between the visual and sensorimotor systems. We observed this type of interaction in human volunteers during binocular rivalry while following the level of sensorimotor mu rhythm with a whole-scalp neuromagnetometer. The observers viewed a weak vertical grating in the lower visual field of one eye and a strong horizontal grating in the same spatial window of the other eye. When stationary, the weak grating was permanently invisible because of its low contrast and spatial frequency. A sudden brief drifting movement of the weak grating wiped out the dominant grating, and the weak grating became visible for less than the 3-s interval between the movements. The postcentral 8- to 15-Hz mu rhythm was found in six of nine observers, and its level increased transiently by 10-15%, starting about 450 ms after the beginning of the movement. The mu level was also enhanced by the actual disappearance of the stronger stimulus, when it occurred in random order with the rivalry stimuli. Identical visual motion, when not accompanied by a perceptual dominance change, produced only minor effects on the mu rhythm. Our results show that a change in visual percept, even with no real or imagined motor response, is associated with modified activity of the postcentral gyrus. This modification may reflect visuohaptic interactions and/or activity of the distributed cortical network implementing visually guided movements.

摘要

视觉与躯体运动行为之间的协作,比如对物体的手动探索,表明视觉系统与感觉运动系统之间存在紧密的功能耦合。我们在人类志愿者进行双眼竞争期间,使用全头皮神经磁强计追踪感觉运动μ节律水平时,观察到了这种类型的相互作用。观察者在一只眼睛的下视野中观看一个弱的垂直光栅,而在另一只眼睛的相同空间窗口中观看一个强的水平光栅。静止时,由于其低对比度和空间频率,弱光栅始终不可见。弱光栅突然短暂的漂移运动消除了占主导地位的光栅,并且弱光栅在两次运动之间的3秒间隔内可见时间不到3秒。在9名观察者中有6名发现中央后回8至15赫兹的μ节律,其水平在运动开始后约450毫秒开始短暂增加10%至15%。当较强刺激与竞争刺激随机出现时,其实际消失也会增强μ节律水平。相同的视觉运动,若不伴随感知优势变化,对μ节律仅产生微小影响。我们的结果表明,即使没有真实或想象的运动反应,视觉感知的变化也与中央后回活动的改变有关。这种改变可能反映了视觉触觉相互作用和/或执行视觉引导运动的分布式皮质网络的活动。

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