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首页> 外文期刊>Nature reviews neuroscience >Deconstructing cortical folding: genetic, cellular and mechanical determinants
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Deconstructing cortical folding: genetic, cellular and mechanical determinants

机译:解构皮质折叠:遗传,细胞和机械决定簇

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摘要

Folding of the cerebral cortex is a fundamental milestone of mammalian brain evolution and is associated with dramatic increases in size and complexity. New animal models, genetic tools and bioengineering materials have moved the study of cortical folding from simple phenomenological observation to sophisticated experimental testing. Here, we provide an overview of how genetics, cell biology and biomechanics shape this complex and multifaceted process and affect each other. We discuss the evolution of cortical folding and the genomic changes in the primate lineage that seem to be responsible for the advent of larger brains and cortical folding. Emerging technologies now provide unprecedented tools to analyse and manipulate cortical folding, with the promise of elucidating the mechanisms underlying the stereotyped folding of the cerebral cortex in its full complexity.
机译:脑皮层的折叠是哺乳动物脑进化的基本里程碑,与大小和复杂性的剧烈增加有关。 新的动物模型,遗传工具和生物工程材料已经从简单的现象学观察到复杂的实验测试,移动了皮质折叠的研究。 在这里,我们概述了遗传学,细胞生物学和生物力学如何形状的这种复杂和多方面的过程并相互影响。 我们讨论皮质折叠的演变和灵长类动物血统的基因组变化,似乎负责大脑的出现和皮质折叠。 新兴技术现在提供了前所未有的工具来分析和操纵皮质折叠,并承诺在其全部复杂性中阐明脑皮层的刻板折叠的机制。

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