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手的视觉和触觉信号在人脑内的整合:一项 fMRI 研究。

Integration of visual and tactile signals from the hand in the human brain: an FMRI study.

机构信息

Brain, Body and Self Laboratory, Department of Neuroscience, Karolinska Institutet, Stockholm, Sweden.

出版信息

J Neurophysiol. 2011 Feb;105(2):910-22. doi: 10.1152/jn.00840.2010. Epub 2010 Dec 8.

Abstract

In the non-human primate brain, a number of multisensory areas have been described where individual neurons respond to visual, tactile and bimodal visuotactile stimulation of the upper limb. It has been shown that such bimodal neurons can integrate sensory inputs in a linear or nonlinear fashion. In humans, activity in a similar set of brain regions has been associated with visuotactile stimulation of the hand. However, little is known about how these areas integrate visual and tactile information. In this functional magnetic resonance imaging experiment, we employed tactile, visual, and visuotactile stimulation of the right hand in an ecologically valid setup where participants were looking directly at their upper limb. We identified brain regions that were activated by both visual and tactile stimuli as well as areas exhibiting greater activity in the visuotactile condition than in both unisensory ones. The posterior and inferior parietal, dorsal, and ventral premotor cortices, as well as the cerebellum, all showed evidence of multisensory linear (additive) responses. Nonlinear, superadditive responses were observed in the cortex lining the left anterior intraparietal sulcus, the insula, dorsal premotor cortex, and, subcortically, the putamen. These results identify a set of candidate frontal, parietal and subcortical regions that integrate visual and tactile information for the multisensory perception of one's own hand.

摘要

在非人类灵长类动物的大脑中,已经描述了许多多感觉区域,其中个体神经元对上肢的视觉、触觉和双模态视触刺激有反应。已经表明,这种双模态神经元可以以线性或非线性的方式整合感觉输入。在人类中,与手部视触刺激相关的类似一组脑区的活动已经被发现。然而,对于这些区域如何整合视觉和触觉信息,我们知之甚少。在这项功能磁共振成像实验中,我们在一个生态有效的设置中对手的触觉、视觉和视触刺激进行了研究,参与者直接观察自己的上肢。我们确定了既被视觉刺激又被触觉刺激激活的脑区,以及在视触条件下比在单一感觉条件下表现出更高活动的区域。后顶叶和下顶叶、背侧和腹侧运动前皮质以及小脑都表现出多感觉线性(加性)反应的证据。在左侧前内顶叶沟、脑岛、背侧运动前皮质和皮质下的壳核中观察到非线性、超加性反应。这些结果确定了一组候选的额、顶叶和皮质下区域,它们整合视觉和触觉信息,用于对手的多感觉感知。

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