An MRI Study of Morphology, Asymmetry, and Sex Differences of Inferior Precentral Sulcus.

IF 2.3 3区 医学 Q3 CLINICAL NEUROLOGY Brain Topography Pub Date : 2024-09-01 Epub Date: 2024-02-19 DOI:10.1007/s10548-024-01035-5
Xinran Zhao, Yu Wang, Xiaokang Wu, Shuwei Liu
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Abstract

Numerous studies utilizing magnetic resonance imaging (MRI) have observed sex and interhemispheric disparities in sulcal morphology, which could potentially underpin certain functional disparities in the human brain. Most of the existing research examines the precentral sulcus comprehensively, with a rare focus on its subsections. To explore the morphology, asymmetry, and sex disparities within the inferior precentral sulcus (IPCS), we acquired 3.0T magnetic resonance images from 92 right-handed Chinese adolescents. Brainvisa was used to reconstruct the IPCS structure and calculate its mean depth (MD). Based on the morphological patterns of IPCS, it was categorized into five distinct types. Additionally, we analyzed four different types of spatial relationships between IPCS and inferior frontal sulcus (IFS). There was a statistically significant sex disparity in the MD of IPCS, primarily observed in the right hemisphere. Females exhibited significantly greater asymmetry in the MD of IPCS compared to males. No statistically significant sex or hemispheric variations were identified in sulcal patterns. Our findings expand the comprehension of inconsistencies in sulcal structure, while also delivering an anatomical foundation for the study of related regions' function.

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下前脑沟形态、不对称和性别差异的核磁共振成像研究。
利用磁共振成像(MRI)进行的大量研究观察到了大脑沟形态的性别差异和半球间差异,这可能是人脑某些功能差异的潜在基础。现有研究大多全面研究了前中央沟,很少关注其分支。为了探索下额沟的形态、不对称性和性别差异,我们采集了92名右撇子中国青少年的3.0T磁共振图像。Brainvisa 用于重建 IPCS 结构并计算其平均深度(MD)。根据IPCS的形态模式,我们将其分为五种不同的类型。此外,我们还分析了IPCS与额下沟(IFS)之间四种不同类型的空间关系。在统计学上,IPCS的MD存在明显的性别差异,主要在右半球观察到。女性与男性相比,IPCS的MD不对称程度明显更高。在脑沟模式方面,没有发现有统计学意义的性别或半球差异。我们的发现拓展了对脑沟结构不一致性的理解,同时也为研究相关区域的功能提供了解剖学基础。
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来源期刊
Brain Topography
Brain Topography 医学-临床神经学
CiteScore
4.70
自引率
7.40%
发文量
41
审稿时长
3 months
期刊介绍: Brain Topography publishes clinical and basic research on cognitive neuroscience and functional neurophysiology using the full range of imaging techniques including EEG, MEG, fMRI, TMS, diffusion imaging, spectroscopy, intracranial recordings, lesion studies, and related methods. Submissions combining multiple techniques are particularly encouraged, as well as reports of new and innovative methodologies.
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