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首页> 外文期刊>Anatomy and embryology >Developmental mechanics of the primate cerebral cortex.
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Developmental mechanics of the primate cerebral cortex.

机译:灵长类动物大脑皮层的发育力学。

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摘要

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.
机译:大脑是通过预先确定的个体发生因素和自组织机制相互作用而形成的,这一思想在生物学中具有悠久的历史,可以追溯到19世纪末。在这里,我们说明了机械力对灵长类大脑皮层的发育,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)皮层卷积的特征形状可以通过皮层皮层投射中轴突张力的整体最小化来解释; (2)皮质折叠产生的机械力对回旋和龈沟中皮质层的相对厚度和绝对厚度有重大影响; (3)折叠力可能会影响皮质发育过程中的细胞迁移,从而导致回旋神经元的数量明显多于非回旋区域; (4)在细胞水平上机械诱导的形态变化可能会导致回旋和沟神经元功能的不同模式。这些结果强调了在灵长类大脑皮层自组织过程中机械力的重大贡献。在发育力学的框架内考虑这些因素可以使人们更好地了解正常和经病理学改造的大脑中遗传规范,连接布局,大脑形状以及大脑功能之间的联系。

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