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形状和粗糙度会激活人类大脑中不同的体感区域。

Shape and roughness activate different somatosensory areas in the human brain.

作者信息

Roland P E, O'Sullivan B, Kawashima R

机构信息

Division of Human Brain Research, Department of Neuroscience, The Karolinska Institute, S-171 77 Stockholm, Sweden.

出版信息

Proc Natl Acad Sci U S A. 1998 Mar 17;95(6):3295-300. doi: 10.1073/pnas.95.6.3295.

Abstract

Somatosensory stimuli are known to activate the postcentral gyrus, and neurons there fire when the skin is in contact with objects. Also neurons in the lateral fissure, the parietal operculum, fire when rough surfaces are felt. However the localization of somatosensory association areas in humans is largely unknown and differences in functional contributions between somatosensory association areas has not been previously demonstrated. For these reasons the regional cerebral blood flow was measured with 15O-butanol and positron-emission tomography in two groups of young volunteers discriminating the lengths, shapes, and roughness of objects with their right hand. Roughness discrimination activated the lateral parietal opercular cortex significantly more than did length or shape discrimination. A Boolean intersection of the cluster images showing the statistical significant increases of length and shape discrimination demonstrated that shape and length discrimination activated the same cortical field lining the anterior part of the intraparietal sulcus (IPA). Shape and length discrimination activated IPA significantly more than did roughness discriminaton. These findings demonstrate a separation in functional contributions of lateral parietal opercular cortex and IPA. The results indicate different cortical processing streams for the somatosensory submodalities microgeometry and macrogeometry.

摘要

已知体感刺激会激活中央后回,当皮肤与物体接触时,该区域的神经元会放电。同样,当感觉到粗糙表面时,外侧裂和顶叶岛盖中的神经元也会放电。然而,人类体感联合区的定位在很大程度上尚不清楚,且此前尚未证明体感联合区在功能贡献上的差异。基于这些原因,我们使用15O-丁醇和正电子发射断层扫描技术,对两组年轻志愿者进行了测量,他们用右手辨别物体的长度、形状和粗糙度。与长度或形状辨别相比,粗糙度辨别显著激活了外侧顶叶岛盖皮质。显示长度和形状辨别统计显著增加的聚类图像的布尔交集表明,形状和长度辨别激活了顶内沟(IPA)前部相同的皮质区域。形状和长度辨别比粗糙度辨别更显著地激活了IPA。这些发现表明外侧顶叶岛盖皮质和IPA在功能贡献上存在分离。结果表明,体感亚模态微观几何和宏观几何存在不同的皮质处理流。

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