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Functional Lateralization of Face, Hand, and Trunk Representation in Anatomically Defined Human Somatosensory Areas

机译:在解剖学上定义的人体感官区域中,面部,手部和躯干代表的功能侧向化

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摘要

We used functional magnetic resonance imaging (fMRI) and cytoarchitectonic probability maps to investigate the responsiveness of individual areas in the human primary and secondary somatosensory cortices to hand, face, or trunk stimulation of either body-side. A Bayesian modeling approach to quantify the probability of ipsilateral activations revealed that areas OP 1, OP 4, and OP 3 of the SII cortex as well as the trunk and face representations within all SI subareas (areas 3b, 1, and 2) show robust bilateral responses to unilateral stimulation. Such bilateral response properties are in good agreement with the transcallosal projections demonstrated for these areas in nonhuman primates and other mammals. In contrast, the SI hand region showed a different pattern. Whereas ipsilateral areas 3b and 1 were deactivated by tactile hand stimulation, particularly on the left, there was strong evidence for ipsilateral processing of information from the right hand in area 2. These results demonstrate not only the behavioral importance of the hand representation, but also suggest that area 2 may have particularly evolved to form the cortical substrate of these specialized demands, in line with recent studies on cortical evolution hypothesizing that area 2 has developed with increasing manual abilities in anthropoid primates featuring opposable thumbs.
机译:我们使用功能磁共振成像(fMRI)和细胞结构概率图来研究人类主要和次要体感皮层中各个区域对身体任一侧的手,脸或躯干刺激的反应性。一种贝叶斯建模方法来量化同侧激活的可能性,发现SII皮质的区域OP 1,OP 4和OP 3以及所有SI子区域(区域3b,1和2)内的躯干和面部表示均显示出鲁棒性双边对单方面刺激的反应。这种双边反应特性与在非人类灵长类动物和其他哺乳动物中针对这些区域的透皮projection虫预测非常吻合。相反,SI手区域显示出不同的模式。尽管同侧区域3b和1通过触觉手刺激而失活,尤其是在左侧,但是有强有力的证据表明,同侧区域2中来自右手的信息得到处理。这些结果不仅证明了手表示的行为重要性,而且还证明了其重要性。根据最近对皮质进化的研究,假设区域2可能已经发展为形成这些特殊需求的皮质基底,该研究假设区域2在具有可逆拇指的类人猿灵长类动物的手能力提高的情况下发展。

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