增强运动学习和皮质脊髓兴奋性:电针和运动训练在健康志愿者中的作用

IF 3.1 4区 医学 Q1 Medicine Medical Science Monitor Pub Date : 2024-06-10 DOI:10.12659/MSM.943748
Jiahui Lin, Jiemei Li, Jianpeng Huang, Sheng Li, Jian Sun, Jianhua Liu
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引用次数: 0

摘要

背景 本研究进行了一项创新性探索,以阐明电针(EA)与运动训练(MT)相结合对提高皮质脊髓兴奋性和运动学习的影响。这项研究的核心是平衡性和非平衡性变态反应过程之间的相互作用,从而深入了解这些综合干预措施如何影响神经可塑性和运动技能的习得。材料和方法 该研究招募了 20 名健康志愿者,对他们进行了 4 种不同的干预,以分析 EA 和 MT 的个体效应和综合效应。这些干预措施分别是单独 EA、单独 MT、先 EA 后 MT 和先 MT 后 EA。通过运动诱发电位(MEPs)评估初级运动皮层(M1)兴奋性的变化,同时使用凹槽钉板测试(GPT)评估运动表现的改变。结果 研究结果表明,EA 和 MT 可独立增强 M1 兴奋性和运动表现。然而,额外的 EA 或 MT 刺激并没有进一步调节 MEPs 的振幅。值得注意的是,EA-priming 与 GPT 完成时间的改善有关,强调了其在促进运动学习方面的潜力。结论 该研究强调,虽然 EA 和 MT 可单独增强运动皮层的兴奋性和表现,但它们的协同应用并不会进一步增强或抑制皮层的兴奋性。这表明存在非同种异构机制。尽管如此,EA 仍是防止 M1 过度刺激,从而持续促进运动学习的重要工具。研究结果要求进一步研究在临床环境中如何战略性地应用 EA(无论是单独应用还是与 MT 共同应用),以优化康复效果。
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Enhancement of Motor Learning and Corticospinal Excitability: The Role of Electroacupuncture and Motor Training in Healthy Volunteers.

BACKGROUND This study embarked on an innovative exploration to elucidate the effects of integrating electroacupuncture (EA) with motor training (MT) on enhancing corticospinal excitability and motor learning. Central to this investigation is the interplay between homeostatic and non-homeostatic metaplasticity processes, providing insights into how these combined interventions may influence neural plasticity and motor skill acquisition. MATERIAL AND METHODS The investigation enrolled 20 healthy volunteers, subjecting them to 4 distinct interventions to parse out the individual and combined effects of EA and MT. These interventions were EA alone, MT alone, EA-priming followed by MT, and MT-priming followed by EA. The assessment of changes in primary motor cortex (M1) excitability was conducted through motor-evoked potentials (MEPs), while the grooved pegboard test (GPT) was used to evaluate alterations in motor performance. RESULTS The findings revealed that EA and MT independently contributed to enhanced M1 excitability and motor performance. However, the additional priming with EA or MT did not yield further modulation in MEPs amplitudes. Notably, EA-priming was associated with improved GPT completion times, underscoring its potential in facilitating motor learning. CONCLUSIONS The study underscores that while EA and MT individually augment motor cortex excitability and performance, their synergistic application does not further enhance or inhibit cortical excitability. This points to the involvement of non-homeostatic metaplasticity mechanisms. Nonetheless, EA emerges as a critical tool in preventing M1 overstimulation, thereby continuously fostering motor learning. The findings call for further research into the strategic application of EA, whether in isolation or with MT, within clinical settings to optimize rehabilitation outcomes.

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来源期刊
Medical Science Monitor
Medical Science Monitor MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
6.40
自引率
3.20%
发文量
514
审稿时长
3.0 months
期刊介绍: Medical Science Monitor (MSM) established in 1995 is an international, peer-reviewed scientific journal which publishes original articles in Clinical Medicine and related disciplines such as Epidemiology and Population Studies, Product Investigations, Development of Laboratory Techniques :: Diagnostics and Medical Technology which enable presentation of research or review works in overlapping areas of medicine and technology such us (but not limited to): medical diagnostics, medical imaging systems, computer simulation of health and disease processes, new medical devices, etc. Reviews and Special Reports - papers may be accepted on the basis that they provide a systematic, critical and up-to-date overview of literature pertaining to research or clinical topics. Meta-analyses are considered as reviews. A special attention will be paid to a teaching value of a review paper. Medical Science Monitor is internationally indexed in Thomson-Reuters Web of Science, Journals Citation Report (JCR), Science Citation Index Expanded (SCI), Index Medicus MEDLINE, PubMed, PMC, EMBASE/Excerpta Medica, Chemical Abstracts CAS and Index Copernicus.
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