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Corpus callosum size is linked to dichotic deafness and hemisphericity, not sex or handedness

机译:us体大小与双歧性耳聋和半球性有关,与性别或惯用性无关

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摘要

Individuals differ in the number of corpus callosum (CC) nerve fibers interconnecting their cerebral hemispheres by about threefold. Early reports suggested that males had smaller CCs than females. This was often interpreted to support the concept that the male brain is more "lateralized" or "specialized," thus accounting for presumed male predominance in mathematics, as well as for aggressive behavior. Ultimately, meta-analyses of these many reports found no significant overall sex differences in inter-cerebral information carrying capacity. Here, using quantitative MRI, we found the midline CC area of 113 subjects was significantly correlated, not with handedness or sex, but with dichotic deafness, and even more so with redefined hemisphericity, the latter accounting for over 19% of CC variability. That is, both dichotic hearing and right brain-oriented individuals of either sex had significantly larger CCs than dichotically deaf or left brain-oriented persons. Thus, current traditions of brain laterality and gender may benefit from revisions that include redefined hemisphericity.
机译:个体将大脑半球相互连接的(体(CC)神经纤维的数量相差约三倍。早期的报道表明,男性的CC小于女性。这通常被解释为支持男性大脑更“偏侧化”或“专门化”的概念,从而解释了在数学中假定男性占主导地位以及激进行为的原因。最终,对这些许多报告的荟萃分析发现,大脑间信息的承载能力没有明显的总体性别差异。在这里,使用定量MRI,我们发现113位受试者的中线CC面积与相关性,性别和双歧性耳聋之间没有显着相关性,而与重新定义的半球性更为相关,后者占CC变异性的19%以上。就是说,与两耳性聋或左脑定向者相比,两性的双耳听力和右脑定向个体的CC均明显更大。因此,当前的大脑偏侧性和性别传统可以从包括重新定义的半球性在内的修订中受益。

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