Enhanced brain network flexibility by physical exercise in female methamphetamine users.

IF 3.1 3区 工程技术 Q2 NEUROSCIENCES Cognitive Neurodynamics Pub Date : 2024-12-01 Epub Date: 2022-07-26 DOI:10.1007/s11571-022-09848-5
Xiaoying Qi, Yingying Wang, Yingzhi Lu, Qi Zhao, Yifan Chen, Chenglin Zhou, Yuguo Yu
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Abstract

Methamphetamine (MA) abuse is increasing worldwide, and evidence indicates that MA causes degraded cognitive functions such as executive function, attention, and flexibility. Recent studies have shown that regular physical exercise can ameliorate the disturbed functions. However, the potential functional network alterations resulting from physical exercise have not been extensively studied in female MA users. We collaborated with a drug rehabilitation center for this study to investigate changes in brain activity and network dynamics after two types of acute and long-term exercise interventions based on 64-channel electroencephalogram recordings of seventy-nine female MA users, who were randomly divided into three groups: control group (CG), dancing group (DG) and bicycling group (BG). Over a 12-week period, we observed a clear drop in the rate of brain activity in the exercise groups, especially in the frontal and temporal regions in the DG and the frontal and occipital regions in the BG, indicating that exercise might suppress hyperactivity and that different exercise types have distinct impacts on brain networks. Importantly, both exercise groups demonstrated enhancements in brain flexibility and network connectivity entropy, particularly after the acute intervention. Besides, a significantly negative correlation was found between Δattentional bias and Δbrain flexibility after acute intervention in both DG and BG. Analysis strongly suggested that exercise programs can reshape patient brains into a highly energy-efficient state with a lower activity rate but higher information communication capacity and more plasticity for potential cognitive functions. These results may shed light on the potential therapeutic effects of exercise interventions for MA users.

Supplementary information: The online version contains supplementary material available at 10.1007/s11571-022-09848-5.

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通过体育锻炼增强女性冰毒使用者的大脑网络灵活性
甲基苯丙胺(MA)滥用在世界范围内呈上升趋势,有证据表明,MA会导致认知功能的退化,如执行功能、注意力和灵活性。最近的研究表明,有规律的体育锻炼可以改善受到干扰的功能。然而,体育锻炼导致的潜在功能网络改变尚未在女性MA使用者中得到广泛研究。我们与戒毒康复中心合作,对79名女性MA使用者随机分为对照组(CG)、舞蹈组(DG)和自行车组(BG),通过64通道脑电图记录,研究两种急性和长期运动干预后脑活动和网络动态的变化。在12周的时间里,我们观察到运动组的大脑活动率明显下降,特别是在DG的额叶和颞叶区域以及BG的额叶和枕叶区域,这表明运动可能抑制多动症,不同的运动类型对大脑网络有不同的影响。重要的是,两个锻炼组都表现出大脑灵活性和网络连接熵的增强,特别是在急性干预之后。此外,急性干预后DG和BG的Δattentional偏倚和Δbrain柔韧性均呈显著负相关。分析强烈表明,锻炼计划可以重塑患者的大脑,使其进入一种高能效状态,其活动率较低,但信息沟通能力较高,对潜在的认知功能更具可塑性。这些结果可能揭示了运动干预对MA使用者的潜在治疗效果。补充信息:在线版本包含补充资料,下载地址:10.1007/s11571-022-09848-5。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cognitive Neurodynamics
Cognitive Neurodynamics 医学-神经科学
CiteScore
6.90
自引率
18.90%
发文量
140
审稿时长
12 months
期刊介绍: Cognitive Neurodynamics provides a unique forum of communication and cooperation for scientists and engineers working in the field of cognitive neurodynamics, intelligent science and applications, bridging the gap between theory and application, without any preference for pure theoretical, experimental or computational models. The emphasis is to publish original models of cognitive neurodynamics, novel computational theories and experimental results. In particular, intelligent science inspired by cognitive neuroscience and neurodynamics is also very welcome. The scope of Cognitive Neurodynamics covers cognitive neuroscience, neural computation based on dynamics, computer science, intelligent science as well as their interdisciplinary applications in the natural and engineering sciences. Papers that are appropriate for non-specialist readers are encouraged. 1. There is no page limit for manuscripts submitted to Cognitive Neurodynamics. Research papers should clearly represent an important advance of especially broad interest to researchers and technologists in neuroscience, biophysics, BCI, neural computer and intelligent robotics. 2. Cognitive Neurodynamics also welcomes brief communications: short papers reporting results that are of genuinely broad interest but that for one reason and another do not make a sufficiently complete story to justify a full article publication. Brief Communications should consist of approximately four manuscript pages. 3. Cognitive Neurodynamics publishes review articles in which a specific field is reviewed through an exhaustive literature survey. There are no restrictions on the number of pages. Review articles are usually invited, but submitted reviews will also be considered.
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