Sex differences in patterns of white matter neuroplasticity after balance training in young adults

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-08-27 DOI:10.3389/fnhum.2024.1432830
Eric D. Kirby, Justin W. Andrushko, Lara A. Boyd, Karl Koschutnig, Ryan C. N. D’Arcy
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Abstract

IntroductionIn past work we demonstrated different patterns of white matter (WM) plasticity in females versus males associated with learning a lab-based unilateral motor skill. However, this work was completed in neurologically intact older adults. The current manuscript sought to replicate and expand upon these WM findings in two ways: (1) we investigated biological sex differences in neurologically intact young adults, and (2) participants learned a dynamic full-body balance task.Methods24 participants (14 female, 10 male) participated in the balance training intervention, and 28 were matched controls (16 female, 12 male). Correlational tractography was used to analyze changes in WM from pre- to post-training.ResultsBoth females and males demonstrated skill acquisition, yet there were significant differences in measures of WM between females and males. These data support a growing body of evidence suggesting that females exhibit increased WM neuroplasticity changes relative to males despite comparable changes in motor behavior (e.g., balance).DiscussionThe biological sex differences reported here may represent an important factor to consider in both basic research (e.g., collapsing across females and males) as well as future clinical studies of neuroplasticity associated with motor function (e.g., tailored rehabilitation approaches).
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青壮年平衡训练后白质神经可塑性模式的性别差异
导言在过去的研究中,我们证明了女性与男性在学习实验室单侧运动技能时白质(WM)可塑性的不同模式。然而,这项工作是在神经系统完好的老年人身上完成的。本稿件试图从两个方面复制和扩展这些白质研究结果:(1)我们调查了神经系统完好的年轻成年人的生物性别差异;(2)参与者学习了动态全身平衡任务。方法24名参与者(14名女性,10名男性)参加了平衡训练干预,28名参与者为匹配对照组(16名女性,12名男性)。结果女性和男性都掌握了技能,但女性和男性的 WM 测量结果存在显著差异。这些数据支持了越来越多的证据,这些证据表明,尽管运动行为(如平衡)发生了类似的变化,但女性的 WM 神经可塑性变化相对于男性有所增加。讨论本文报告的生物性别差异可能是基础研究(如女性和男性之间的折叠)以及未来与运动功能相关的神经可塑性临床研究(如量身定制的康复方法)中需要考虑的一个重要因素。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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