首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >A comparative study of corpus callosum size and signal intensity in capuchin monkeys (Cebus apella) and chimpanzees (Pan troglodytes).
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A comparative study of corpus callosum size and signal intensity in capuchin monkeys (Cebus apella) and chimpanzees (Pan troglodytes).

机译:对卷尾猴(Cebus apella)和黑猩猩(Pan穴居人)的call体大小和信号强度的比较研究。

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摘要

The evolution of corpus callosum (CC) was integral to the development of higher cognitive processes and hemispheric specialization. An examination of CC morphology and organization across different primate species will further our understanding of the evolution of these specified functions. Using magnetic resonance imaging (MRI) as a non-invasive technique to measure CC size and to approximate the degree of myelination in the corpus callosum, we report differences in CC morphology and organization in capuchin monkeys and chimpanzees, two divergent primate species that have independently evolved several behavioral and anatomical characteristics. Species differences in CC morphology were detected, with chimpanzees having a larger overall CC compared to capuchin monkeys. Additionally, chimpanzees had the genu as the largest subdivision; in capuchin monkeys, the genu and splenium were the largest subdivisions. Sex differences in signal intensity were detected; capuchin monkey males had higher signal intensity values whereas chimpanzee females had higher signal intensity values. Thus, while capuchin monkeys and chimpanzees show some similarity in patterns of CC morphology, these species differ significantly in the regional organization of the CC.
机译:call体(CC)的进化是高级认知过程和半球专业化发展不可或缺的部分。对跨不同灵长类物种的CC形态和组织的研究将使我们进一步了解这些特定功能的进化。我们使用磁共振成像(MRI)作为一种非侵入性技术来测量CC大小并估算call体的髓鞘化程度,我们报道了卷尾猴和黑猩猩(两个具有独立的灵长类动物)的CC形态和组织结构差异演变了几个行为和解剖特征。检测到CC形态上的物种差异,与卷尾猴相比,黑猩猩的整体CC更大。此外,黑猩猩拥有最大的细分类别。在卷尾猴中,属和脾是最大的细分。检测到信号强度的性别差异;卷尾猴的雄性具有较高的信号强度值,而黑猩猩的雌性具有较高的信号强度值。因此,尽管卷尾猴和黑猩猩在CC形态上显示出一些相似性,但这些物种在CC的区域组织中却存在显着差异。

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