研究双靶点电刺激治疗脑卒中后膝骨关节炎的疗效及其对大脑皮质活动的影响:一项随机对照试验。

IF 3.7 4区 医学 Q2 Medicine
Neural Plasticity Pub Date : 2025-08-06 eCollection Date: 2025-01-01 DOI:10.1155/np/2886215
Chun-Ya Xia, Hui-Fang Tian, Xu-Yan Ren, Zhi-Hang Xiao, Hui-An Chen, Yi-Jia Yin, Le-Chi Zhang, Si-Yan Cai, Ting-Ting Li, Jun Zou, Jie Bao, Min Su
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引用次数: 0

摘要

经颅直流电刺激(tDCS)和经皮神经电刺激(TENS)均具有镇痛作用;然而,有证据表明,当应用于中风后膝骨关节炎(KOA)时,其疗效有限。本研究旨在评估双靶点电刺激联合tDCS和TENS治疗脑卒中后KOA的疗效和对皮质活动的影响。我们假设tDCS联合TENS可以通过诱导神经振荡来增强脑活动,从而更有效地解决卒中后KOA。为了验证这一假设,一项双盲随机试验对30名参与者进行了为期8周的试验,从周一到周五,接受了TENS + tDCS或TENS +假tDCS。收集刺激前后的脑电图(eeg)、短暂疼痛量表(BPI)、视觉模拟量表(VAS)、步幅、节奏、6分钟步行测试(6mwt)、膝关节活动度(ROM)和股四头肌力量。对连续变量使用t检验,对分类变量使用卡方检验,对疼痛指标进行分析,并使用重复测量方差分析来探索随时间的变化和相互作用。脑电图分析采用配对t检验研究患侧治疗前后脑区变化,随后进行视觉分析。结果表明,联合治疗对患脑半球有明显改善,α1、α2和β幂均有明显变化。此外,BPI、VAS、步幅、节奏和6MWT均存在显著的组间交互效应。本研究认为,tDCS联合TENS双靶点电刺激通过作用于大脑皮层和靶器官,显著改善脑卒中后膝关节炎症。试验注册:中国临床试验注册:ChiCTR2200064735。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Investigate the Efficacy of Dual-Target Electrical Stimulation in the Treatment of Knee Osteoarthritis After Stroke and its Effect on Cerebral Cortical Activity: A Randomized Controlled Trial.

Investigate the Efficacy of Dual-Target Electrical Stimulation in the Treatment of Knee Osteoarthritis After Stroke and its Effect on Cerebral Cortical Activity: A Randomized Controlled Trial.

Investigate the Efficacy of Dual-Target Electrical Stimulation in the Treatment of Knee Osteoarthritis After Stroke and its Effect on Cerebral Cortical Activity: A Randomized Controlled Trial.

Investigate the Efficacy of Dual-Target Electrical Stimulation in the Treatment of Knee Osteoarthritis After Stroke and its Effect on Cerebral Cortical Activity: A Randomized Controlled Trial.

Transcranial direct current stimulation (tDCS) and transcutaneous electrical nerve stimulation (TENS) are both recognized for their analgesic effects; however, evidence suggests limitations in their efficacy when applied to knee osteoarthritis (KOA) after stroke. This study aimed to assess the efficacy and cortical activity impact of a dual-target electrical stimulation approach combining tDCS and TENS in the treatment of KOA after stroke. We hypothesized that the combination of tDCS with TENS could more effectively address KOA after stroke by enhancing brain activity through the induction of neural oscillations. To test this hypothesis, a double-blind, randomized trial was conducted with 30 participants receiving either TENS + tDCS or TENS + sham tDCS over an 8-week period, from Monday to Friday. Electroencephalograms (EEGs), Brief Pain Inventory (BPI), visual analog scale (VAS), stride length, cadence, 6-min walk test (6 MWT), knee range of motion (ROM), and quadriceps strength were collected pre- and poststimulation. Pain indicators were analyzed using t-tests for continuous variables and chi-square tests for categorical variables, with repeated measures ANOVA employed to explore changes and interactions over time. For EEG analysis, paired t-tests were utilized to investigate changes in brain regions before and after treatment on the affected side, with visual analysis conducted subsequently. The results indicated that the combined treatment led to significant improvements in the affected hemisphere, with significant changes observed in α1, α2, and β power. Additionally, significant group× time interaction effects were noted for BPI, VAS, stride length, cadence, and 6MWT. The study concludes that dual-target electrostimulation using tDCS combined with TENS significantly ameliorates knee joint inflammation following stroke by acting on the cerebral cortex and target organs. Trial Registration: Chinese Clinical Trial Registry: ChiCTR2200064735.

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来源期刊
Neural Plasticity
Neural Plasticity Neuroscience-Neurology
CiteScore
5.70
自引率
0.00%
发文量
0
审稿时长
1 months
期刊介绍: Neural Plasticity is an international, interdisciplinary journal dedicated to the publication of articles related to all aspects of neural plasticity, with special emphasis on its functional significance as reflected in behavior and in psychopathology. Neural Plasticity publishes research and review articles from the entire range of relevant disciplines, including basic neuroscience, behavioral neuroscience, cognitive neuroscience, biological psychology, and biological psychiatry.
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