Xiang Li, Crow Timothy J, Hopkins William D, Roberts Neil
School of Clinical Sciences, University of Edinburgh, Edinburgh EH16 4TJ, UK.
POWIC, Department of Psychiatry, Warneford Hospital, Oxford OX3 7JX, UK.
Cereb Cortex. 2020 Oct 7;34(2). doi: 10.1093/cercor/bhaa202.
Comparative study of the structural asymmetry of the human and chimpanzee brain may shed light on the evolution of language and other cognitive abilities in humans. Here we report the results of vertex-wise and ROI-based analyses that compared surface area (SA) and cortical thickness (CT) asymmetries in 3D MR images obtained for 91 humans and 77 chimpanzees. The human brain is substantially more asymmetric than the chimpanzee brain. In particular, the human brain has 1) larger total SA in the right compared with the left cerebral hemisphere, 2) a global torque-like asymmetry pattern of widespread thicker cortex in the left compared with the right frontal and the right compared with the left temporo-parieto-occipital lobe, and 3) local asymmetries, most notably in medial occipital cortex and superior temporal gyrus, where rightward asymmetry is observed for both SA and CT. There is also 4) a prominent asymmetry specific to the chimpanzee brain, namely, rightward CT asymmetry of precentral cortex. These findings provide evidence of there being substantial differences in asymmetry between the human and chimpanzee brain. The unique asymmetries of the human brain are potential neural substrates for cognitive specializations, and the presence of significant CT asymmetry of precentral gyrus in the chimpanzee brain should be further investigated.
对人类和黑猩猩大脑结构不对称性的比较研究可能会揭示人类语言和其他认知能力的进化过程。在此,我们报告了基于顶点和感兴趣区域的分析结果,这些分析比较了91名人类和77只黑猩猩的三维磁共振图像中的表面积(SA)和皮质厚度(CT)不对称性。人类大脑的不对称程度明显高于黑猩猩大脑。具体而言,人类大脑具有以下特点:1)右侧大脑半球的总表面积大于左侧;2)存在一种类似全局扭矩的不对称模式,即左侧额叶皮质普遍比右侧厚,右侧颞顶枕叶比左侧厚;3)存在局部不对称性,最明显的是枕内侧皮质和颞上回,在这两个区域,SA和CT均表现为右侧不对称。此外,4)黑猩猩大脑存在一种显著的特异性不对称,即中央前回的CT右侧不对称。这些发现证明了人类和黑猩猩大脑在不对称性方面存在显著差异。人类大脑独特的不对称性是认知特化的潜在神经基础,黑猩猩大脑中央前回显著的CT不对称性有待进一步研究。