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A dual comparative approach: Integrating lines of evidence from human evolutionary neuroanatomy and neurodevelopmental disorders

机译:双重比较方法:整合人类进化神经解剖学和神经发育障碍的证据

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The evolution of the human brain has been marked by a nearly 3-fold increase in size since our divergence from the last common ancestor shared with chimpanzees and bonobos. Despite increased interest in comparative neuroanatomy and phylogenetic methods, relatively little is known regarding the effects that this enlargement has had on its internal organization, and how certain areas of the brain have differentially expanded over evolutionary time. Analyses of the microstructure of several regions of the human cortex and subcortical structures have demonstrated subtle changes at the cellular and molecular level, suggesting that the human brain is more than simply a 'scaled-up' primate brain. Ongoing research in comparative neuroanatomy has much to offer regarding our understanding of human brain evolution. Through analysis of the neuroanatomical phenotype at the level of reorganization in cytoarchitecture and cellular morphology, new data continue to highlight changes in cell density and organization associated with volumetric changes in discrete regions. An understanding of the functional significance of variation in neural circuitry can further be approached through studies of atypical human development. Many neurodevelopmental disorders cause disruption in systems associated with uniquely human features of cognition, including language and social cognition. Understanding the genetic and developmental mechanisms that underlie variation in the human cognitive phenotype can help to clarify the functional significance of interspecific variation. By uniting approaches from comparative neuroanatomy and neuropathology, insights can be gained that clarify trends in human evolution. Here, we explore these lines of evidence and their significance for understanding functional variation between species as well as within neuropathological variation in the human brain.
机译:自从我们与黑猩猩和bo黑猩猩共享的最后一个共同祖先开始分化以来,人类大脑的进化就以大小增加了近3倍为特征。尽管人们对比较神经解剖学和系统发生学方法的兴趣日益浓厚,但关于这种扩大对其内部组织的影响以及大脑的某些区域在进化过程中的差异性扩张的了解相对较少。对人类皮质几个区域的微观结构和皮质下结构的分析表明,它们在细胞和分子水平上都有细微的变化,这表明人脑不仅仅是简单的“放大”的灵长类动物脑。关于我们对人类大脑进化的理解,正在进行中的比较神经解剖学研究提供了很多东西。通过在细胞结构和细胞形态的重组水平上分析神经解剖表型,新数据继续强调细胞密度和组织的变化,以及离散区域的体积变化。通过研究非典型人类发育,可以进一步了解神经回路变异的功能重要性。许多神经发育障碍会导致与人类独特的认知特征(包括语言和社交认知)相关的系统中断。了解人类认知表型变异背后的遗传和发育机制有助于阐明种间变异的功能意义。通过将比较神经解剖学和神经病理学的方法结合起来,可以获得洞察力,以阐明人类进化的趋势。在这里,我们探讨了这些证据线及其对理解物种之间以及人类大脑中神经病理学变异内的功能变异的意义。

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