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Growth and folding of the mammalian cerebral cortex: from molecules to malformationsTao Sun and Robert F. Hevner

机译:哺乳动物大脑皮层的生长和折叠:从分子到畸形Tao Sun和Robert F. Hevner

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摘要

The size and extent of folding of the mammalian cerebral cortex are important factors that influence a species' cognitive abilities and sensorimotor skills. Studies in various animal models and in humans have provided insight into the mechanisms that regulate cortical growth and folding. Both protein-coding genes and microRNAs control cortical size, and recent progress in characterizing basal progenitor cells and the genes that regulate their proliferation has contributed to our understanding of cortical folding. Neurological disorders linked to disruptions in cortical growth and folding have been associated with novel neurogenetic mechanisms and aberrant signalling pathways, and these findings have changed concepts of brain evolution and may lead to new medical treatments for certain disorders.
机译:哺乳动物大脑皮层折叠的大小和程度是影响物种的认知能力和感觉运动技能的重要因素。对各种动物模型和人类的研究为调节皮质生长和折叠的机制提供了见识。蛋白质编码基因和microRNA均可控制皮层大小,最近在表征基础祖细胞和调节其增殖的基因方面的进展为我们对皮层折叠的理解做出了贡献。与皮层生长和折叠破坏有关的神经系统疾病与新的神经遗传机制和异常的信号通路有关,这些发现改变了大脑进化的概念,并可能导致对某些疾病的新治疗。

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