额叶斜径的不对称取决于手的灵活性

Mohammad Taghvaei, Craig K Jones, Licia P Luna, Sachin K Gujar, Haris I Sair
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引用次数: 0

摘要

背景和目的:人脑两半球在结构和功能上存在差异,这种不对称一直延伸到额叶斜束。它在多种认知功能中发挥作用,包括语音生成、语言处理和执行功能。然而,影响额叶斜束偏侧性的因素仍不完全清楚。鉴于额叶斜束同时参与语言和运动控制,因此假设手性会影响额叶斜束的侧向性。在这项研究中,我们旨在调查手性与额叶斜束侧化之间的关系,从而深入了解大脑组织的这一方面:我们使用自动迹线分析管道(Automated Tractography Pipeline)从公开的 "人类老龄化连接组计划 "数据库中获取了720名受试者的数据,用于生成左右半球的额叶斜束。随后,提取了研究人群中每个人的左右额叶斜束的宏观和微观结构参数。研究使用爱丁堡手性量表评分对手性进行分类,并对不同手性组别进行比较分析:结果:研究对象的宏观结构参数和微观结构完整性都出现了与年龄相关的下降。与女性受试者相比,男性受试者的额叶斜束体积更大、直径更大。此外,在一般人群中还观察到额叶斜束的左侧性。在右利手组中,左侧额叶斜束的体积(P P = .004)高于右侧额叶斜束。相反,在左撇子组中,左侧额叶斜束的体积(P = .040)和直径(P = .032)均低于右侧额叶斜束。此外,在右撇子组中,额叶斜束的体积和直径呈现左侧偏移,而在左撇子组中,右侧偏移明显:结论:额叶斜束的侧向性似乎随惯用手的不同而不同。这一发现凸显了大脑侧化与手性之间复杂的相互作用,强调了将手性作为评估大脑结构和功能的一个因素的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Asymmetry of the Frontal Aslant Tract Depends on Handedness.

Background and purpose: The human brain displays structural and functional disparities between its hemispheres, with such asymmetry extending to the frontal aslant tract. This plays a role in a variety of cognitive functions, including speech production, language processing, and executive functions. However, the factors influencing the laterality of the frontal aslant tract remain incompletely understood. Handedness is hypothesized to impact frontal aslant tract laterality, given its involvement in both language and motor control. In this study, we aimed to investigate the relationship between handedness and frontal aslant tract lateralization, providing insight into this aspect of brain organization.

Materials and methods: The Automated Tractography Pipeline was used to generate the frontal aslant tract for both right and left hemispheres in a cohort of 720 subjects sourced from the publicly available Human Connectome Project in Aging database. Subsequently, macrostructural and microstructural parameters of the right and left frontal aslant tract were extracted for each individual in the study population. The Edinburgh Handedness Inventory scores were used for the classification of handedness, and a comparative analysis across various handedness groups was performed.

Results: An age-related decline in both macrostructural parameters and microstructural integrity was noted within the studied population. The frontal aslant tract demonstrated a greater volume and larger diameter in male subjects compared with female participants. Additionally, a left-side laterality of the frontal aslant tract was observed within the general population. In the right-handed group, the volume (P < .001), length (P < .001), and diameter (P = .004) of the left frontal aslant tract were found to be higher than those of the right frontal aslant tract. Conversely, in the left-handed group, the volume (P = .040) and diameter (P = .032) of the left frontal aslant tract were lower than those of the right frontal aslant tract. Furthermore, in the right-handed group, the volume and diameter of the frontal aslant tract showed left-sided lateralization, while in the left-handed group, a right-sided lateralization was evident.

Conclusions: The laterality of the frontal aslant tract appears to differ with handedness. This finding highlights the complex interaction between brain lateralization and handedness, emphasizing the importance of considering handedness as a factor in evaluating brain structure and function.

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