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黑猩猩和猕猴大脑皮质沟回的不对称性:旧观念的新视角。

Cortical sulci asymmetries in chimpanzees and macaques: a new look at an old idea.

机构信息

Division of Developmental and Cognitive Neuroscience, Yerkes National Primate Research Center, Atlanta, GA 30322, USA.

出版信息

Neuroimage. 2012 Jul 2;61(3):533-41. doi: 10.1016/j.neuroimage.2012.03.082. Epub 2012 Apr 5.

Abstract

Functional and neuroanatomical asymmetries are an important characteristic of the human brain. The evolution of such specializations in the human cortex has provoked great interest in primate brain evolution. Most research on cortical sulci has revolved around linear measurements, which represent only one dimension of sulci organization. Here, we used a software program (BrainVISA) to quantify asymmetries in cortical depth and surface area from magnetic resonance images in a sample of 127 chimpanzees and 49 macaques. Population brain asymmetries were determined from 11 sulci in chimpanzees and seven sulci in macaques. Sulci were taken from the frontal, temporal, parietal, and occipital lobes. Population-level asymmetries were evident in chimpanzees for several sulci, including the fronto-orbital, superior precentral, and sylvian fissure sulci. The macaque population did not reveal significant population-level asymmetries, except for surface area of the superior temporal sulcus. The overall results are discussed within the context of the evolution of higher order cognition and motor functions.

摘要

功能和神经解剖学的不对称是人类大脑的一个重要特征。这种人类大脑皮层的专门化进化引起了人们对灵长类动物大脑进化的极大兴趣。大多数关于脑回的研究都集中在线性测量上,而线性测量只代表脑回组织的一个维度。在这里,我们使用一个名为 BrainVISA 的软件程序,从 127 只黑猩猩和 49 只猕猴的磁共振图像中定量分析了皮质深度和表面积的不对称性。在黑猩猩中,我们从 11 个脑回和猕猴的 7 个脑回中确定了群体脑不对称性。脑回取自额叶、颞叶、顶叶和枕叶。在黑猩猩中,几个脑回表现出明显的群体水平不对称性,包括额眶回、上中央前回和大脑外侧裂回。除了颞上沟的表面积外,猕猴群体没有表现出明显的群体水平不对称性。总体结果在更高阶认知和运动功能进化的背景下进行了讨论。

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