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Automatic analysis of cross‐sectional cerebral asymmetry on 3D in vivo MRI scans of human and chimpanzee

机译:人类和黑猩猩的体内MRI扫描中3D横截面脑不对称的自动分析

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Abstract One prominent feature of human brain asymmetry is the cerebral torque. To investigate whether this characteristic is shared with chimpanzees who are our closest extant relative, we developed an automatic method to compute cerebral hemisphere width and perimeter length on consecutive 2D sections through 3D MR images obtained in vivo for 91 human and 78 chimpanzee brains. In brief, contiguous inter‐hemispheric width and perimeter asymmetries were calculated on coronal sections, which in profile allow us to examine asymmetry in relation to speciation. The right frontal and left occipital asymmetry (greater posteriorly in females) distinguishes humans from chimpanzees. This result is consistent with a major saltational (discontinuity) event occurring at some point after the separation of humanity and the great apes in the last 6 million years.
机译:摘要人脑不对称的一个突出特征是脑扭矩。 为了调查这种特征是否与我们最接近的基础相对的黑猩猩共享,我们开发了一种自动方法,以通过在体内获得91人和78黑猩猩大脑中获得的3D MR图像来计算连续的2D部分上的脑半球宽度和周长长度。 简而言之,在冠状截面上计算连续的半球宽度和周边不对称,其在型材中允许我们研究与物种相关的不对称性。 右前部和左侧枕骨不对称(更大于女性)将人类与黑猩猩区分开来。 这一结果与在人性分离后的某些角度和过去600万年中的伟大猿发生在某些角度的主要盐酸群岛。

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