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Genetics of primary cerebral gyrification: Heritability of length, depth and area of primary sulci in an extended pedigree of Papio baboons

机译:原发性脑回旋的遗传学:狒狒狒狒的扩展谱系中的主要沟的长度,深度和面积的遗传力

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摘要

Genetic control over morphological variability of primary sulci and gyri is of great interest in the evolutionary, developmental and clinical neurosciences. Primary structures emerge early in development and their morphology is thought to be related to neuronal differentiation, development of functional connections and cortical lateralization. We measured the proportional contributions of genetics and environment to regional variability, testing two theories regarding regional modulation of genetic influences by ontogenic and phenotypic factors. Our measures were surface area, and average length and depth of eleven primary cortical sulci from high-resolution MR images in 180 pedigreed baboons. Average heritability values for sulcal area, depth and length (h(2)(Area)=.38+/-.22; h(2)(Depth)=.42+/-.23; h(2)(Length)=.34+/-.22) indicated that regional cortical anatomy is under genetic control. The regional pattern of genetic contributions was complex and, contrary to previously proposed theories, did not depend upon sulcal depth, or upon the sequence in which structures appear during development. Our results imply that heritability of sulcal phenotypes may be regionally modulated by arcuate U-fiber systems. However, further research is necessary to unravel the complexity of genetic contributions to cortical morphology.
机译:对原代沟和回头的形态变异的遗传控制在进化,发育和临床神经科学中引起了极大的兴趣。初级结构出现在发育的早期,其形态被认为与神经元分化,功能性连接的发展和皮层外侧化有关。我们测量了遗传学和环境对区域变异性的比例贡献,测试了两种关于通过个体基因和表型因素对遗传影响进行区域调节的理论。我们的测量是在180个纯种狒狒的高分辨率MR图像中的表面积以及11个初级皮质沟的平均长度和深度。沟区域,深度和长度的平均遗传力值(h(2)(面积)=。38 +/-。22; h(2)(深度)=。42 +/-。23; h(2)(长度) = .34 +/-。22)表示区域皮质解剖处于遗传控制之下。遗传贡献的区域模式是复杂的,并且与先前提出的理论相反,其不依赖于沟渠深度或发育过程中出现结构的顺序。我们的研究结果暗示,弓形U纤维系统可能会局部调节龈沟表型的遗传力。但是,有必要进一步研究以阐明遗传对皮层形态的贡献的复杂性。

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