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灵长类动物大脑皮层的发育机制

Developmental mechanics of the primate cerebral cortex.

作者信息

Hilgetag Claus C, Barbas Helen

机构信息

School of Eng. & Science, Internat'l Univ. Bremen, Campus Ring 6, RII-116, 28759 Bremen, Germany.

出版信息

Anat Embryol (Berl). 2005 Dec;210(5-6):411-7. doi: 10.1007/s00429-005-0041-5.

Abstract

The idea that the brain is shaped through the interplay of predetermined ontogenetic factors and mechanisms of self-organization has a long tradition in biology, going back to the late-nineteenth century. Here we illustrate the substantial impact of mechanical forces on the development, morphology, and functioning of the primate cerebral cortex. Based on the analysis of quantitative structural data for prefrontal cortices of the adult rhesus monkey, we demonstrate that (1) the characteristic shape of cortical convolutions can be explained by the global minimization of axonal tension in corticocortical projections; (2) mechanical forces resulting from cortical folding have a significant impact on the relative and absolute thickness of cortical layers in gyri and sulci; (3) folding forces may affect the cellular migration during cortical development, resulting in a significantly larger number of neurons in gyral compared to non-gyral regions; and (4) mechanically induced variations of morphology at the cellular level may result in different modes of neuronal functioning in gyri and sulci. These results underscore the significant contribution of mechanical forces during the self-organization of the primate cerebral cortex. Taking such factors into account within a framework of developmental mechanics can lead to a better understanding of how genetic specification, the layout of connections, brain shape as well as brain function are linked in normal and pathologically transformed brains.

摘要

大脑通过预定的个体发育因素和自组织机制的相互作用而形成,这一观点在生物学领域有着悠久的传统,可追溯到19世纪末。在此,我们阐述了机械力对灵长类动物大脑皮层发育、形态和功能的重大影响。基于对成年恒河猴前额叶皮层定量结构数据的分析,我们证明:(1)皮质卷曲的特征形状可通过皮质-皮质投射中轴突张力的全局最小化来解释;(2)皮质折叠产生的机械力对脑回和脑沟中皮质层的相对厚度和绝对厚度有显著影响;(3)折叠力可能影响皮质发育过程中的细胞迁移,导致脑回区域的神经元数量比非脑回区域显著增多;(4)机械诱导的细胞水平形态变化可能导致脑回和脑沟中神经元功能的不同模式。这些结果强调了机械力在灵长类动物大脑皮层自组织过程中的重要作用。在发育力学框架内考虑这些因素,有助于更好地理解在正常和病理转化的大脑中,基因规范、连接布局、脑形状以及脑功能是如何相互关联的。

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