人胼胝体与前连合的形态计量学分析。

Human neurobiology Pub Date : 1988-01-01
S Demeter, J L Ringo, R W Doty
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引用次数: 0

摘要

通过计算机辅助形态测量法测定尸检获得的正常人大脑胼胝体(CC)和前连合(AC)的横截面积。此外,每个CC的形状由三个“盲”观察者进行定性检查。在CC的横截面积上观察到两倍的变化。令人惊讶的是,胼胝体横截面积与脑重量没有显著相关。此外,与最近的报道相反,简单的检查和形态测量都没有发现与性别有关的结构变异。在AC横截面积上观察到惊人的7倍变化。然而,AC横截面积与脑重量或CC横截面积无关。AC截面积呈两性二态化趋势,雄性AC较大。由于在很大程度上,半球间通讯是由连接两个半球不同皮层区域的纤维组成的,这些观察结果表明,半球间通讯横截面积的变化不仅仅与大脑重量或性别有关,而是反映了皮层结构某些方面的类似程度的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Morphometric analysis of the human corpus callosum and anterior commissure.

The cross-sectional areas of the corpus callosum (CC) and anterior commissure (AC) were determined by computer-assisted morphometry in normal human brains obtained at autopsy. In addition, the shape of each CC was examined qualitatively by three "blind" observers. A two-fold variation was observed in the cross-sectional area of the CC. Surprisingly, callosal cross-sectional area was not significantly related to brain weight. Moreover, contrary to recent reports, neither simple inspection nor morphometry revealed structural variation related to sex. A striking, seven-fold, variation was observed in the cross-sectional area of the AC. However, AC cross-sectional area was not related either to brain weight or CC cross-sectional area. A trend toward sexual dimorphism in AC cross-sectional area was observed, with males having the larger AC's. Since the interhemispheric commissures are composed, to a large extent, of fibers that link the various cortical areas of the two hemispheres, these observations suggest that variation in the cross-sectional area of the interhemispheric commissures is not simply related to brain weight or sex but, rather, reflects a similar degree of variation in some aspect of cortical structure.

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