Department of Anthropology, The George Washington University, Washington, DC 20052, USA.
Proc Biol Sci. 2010 Jul 22;277(1691):2165-74. doi: 10.1098/rspb.2010.0011. Epub 2010 Mar 17.
Human language is distinctive compared with the communication systems of other species. Yet, several questions concerning its emergence and evolution remain unresolved. As a means of evaluating the neuroanatomical changes relevant to language that accompanied divergence from the last common ancestor of chimpanzees, bonobos and humans, we defined the cytoarchitectonic boundaries of area Tpt, a component of Wernicke's area, in 12 common chimpanzee brains and used design-based stereologic methods to estimate regional volumes, total neuron number and neuron density. In addition, we created a probabilistic map of the location of area Tpt in a template chimpanzee brain coordinate space. Our results show that chimpanzees display significant population-level leftward asymmetry of area Tpt in terms of neuron number, with volume asymmetry approaching significance. Furthermore, asymmetry in the number of neurons in area Tpt was positively correlated with asymmetry of neuron numbers in Brodmann's area 45, a component of Broca's frontal language region. Our findings support the conclusion that leftward asymmetry of Wernicke's area originated prior to the appearance of modern human language and before our divergence from the last common ancestor. Moreover, this study provides the first evidence of covariance between asymmetry of anterior and posterior cortical regions that in humans are important to language and other higher order cognitive functions.
与其他物种的交流系统相比,人类语言具有独特性。然而,语言的起源和进化仍有几个问题尚未解决。为了评估与黑猩猩、倭黑猩猩和人类的最后共同祖先分歧相关的与语言有关的神经解剖学变化,我们在 12 只普通黑猩猩大脑中定义了颞上回(Wernicke 区的一个组成部分)的细胞构筑边界,并使用基于设计的立体学方法来估计区域体积、总神经元数量和神经元密度。此外,我们在模板黑猩猩脑坐标空间中创建了颞上回位置的概率图。我们的结果表明,黑猩猩在神经元数量方面表现出明显的左侧颞上回群体水平不对称,体积不对称接近显著。此外,颞上回神经元数量的不对称性与布罗卡氏区(Broca)前部语言区域的组成部分布罗德曼氏区 45 的神经元数量不对称呈正相关。我们的发现支持了这样的结论,即 Wernicke 区的左侧不对称性起源于现代人类语言出现之前,也早于我们与最后一个共同祖先的分歧。此外,这项研究首次提供了证据,证明了人类语言和其他高级认知功能中重要的前、后皮质区域之间的不对称性存在协变关系。