Differences in brain activation and connectivity during unaffected hand exercise in subacute and convalescent stroke patients

IF 2.9 3区 医学 Q2 NEUROSCIENCES Neuroscience Pub Date : 2024-11-17 DOI:10.1016/j.neuroscience.2024.11.038
Yuqin Ma , Dongyan Xie , Yang Yu , Kexin Yao , Shuting Zhang , Qiqi Li , Yongfeng Hong , Xianshan Shen
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Abstract

Patients experiencing severe hemiplegia following a stroke struggle to rehabilitate their affected limbs. Cross-education (CE) training emerges as a promising rehabilitation method due to its safety, simplicity, low risk, and ability to effectively improve muscle strength in the affected limb. However, controversy surrounds the neural mechanisms and clinical applications of CE. To address this, we employed functional near-infrared spectroscopy to monitor the response of regions of interest (ROI) and functional connectivity in patients with stroke experiencing severe hemiplegia during one session of 50% maximal voluntary contraction (MVC) strength training with less-affected hand in both subacute and convalescent phases. Our objective was to compare the two stroke groups to gain insight into the potential utility for unilateral training of the less-affected limb as an effective rehabilitation approach during different phases post of stroke.
The findings revealed varying degrees of activation in the ROIs within the affected hemisphere across both groups during the task. Additionally, we found that the subacute stroke patients with severe hemiplegia (SPS) had higher blood oxygen levels in the ipsilesional primary motor (iM1), ipsilesional pre-motor and supplementary motor area (iP-SMA) and contralesional P-SMA (cP-SMA). Functional connectivity strength between the iM1 and contralesional brain regions, as well as between the iP-SMA and ipsilesional ROIs, showed statistically significant differences in SPS compared to convalescent stroke patients with severe hemiplegia (CPS) during a 50% MVC strength training session using the less-affected hand.

Significance statement

Exploring the neural mechanisms underlying one session of 50% MVC strength training with less-affected hand sheds light on a safe therapy. The study enhances our understanding of less-affected hand training and investigates the feasibility as a future rehabilitation approach. Analyzing how one session of 50% MVC strength training with less-affected hand affects brain activation and connectivity could lead to more tailored and effective rehabilitation strategies.
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亚急性和康复期脑卒中患者在进行无影响手部运动时大脑激活和连接的差异。
中风后严重偏瘫的患者在进行患肢康复时十分困难。交叉教育(CE)训练因其安全、简单、低风险以及能有效改善患肢肌力而成为一种很有前景的康复方法。然而,围绕交叉肌力训练的神经机制和临床应用还存在争议。为了解决这个问题,我们采用了功能性近红外光谱技术来监测中风重度偏瘫患者在亚急性期和康复期使用受影响较小的手进行一次 50%最大自主收缩(MVC)力量训练时感兴趣区(ROI)的反应和功能连通性。我们的目的是对两组中风患者进行比较,以深入了解在中风后的不同阶段,单侧训练受影响较小的肢体作为一种有效康复方法的潜在效用。研究结果表明,在任务过程中,两组受影响半球内的 ROI 均有不同程度的激活。此外,我们还发现严重偏瘫的亚急性中风患者的同侧初级运动区(iM1)、同侧运动前区和辅助运动区(iP-SMA)以及对侧 P-SMA (cP-SMA)的血氧水平较高。iM1 和对侧脑区之间以及 iP-SMA 和同侧 ROI 之间的功能连接强度显示,在使用受影响较小的手进行 50% MVC 力量训练过程中,SPS 与严重偏瘫的中风康复患者(CPS)相比存在显著的统计学差异。意义说明:探索使用受影响较小的手进行一次 50% MVC 力量训练的神经机制,为安全疗法提供了启示。这项研究加深了我们对受影响较小的手部训练的理解,并探讨了作为未来康复方法的可行性。通过分析用受影响较小的手进行一次50% MVC力量训练如何影响大脑激活和连接,可以制定出更有针对性、更有效的康复策略。
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来源期刊
Neuroscience
Neuroscience 医学-神经科学
CiteScore
6.20
自引率
0.00%
发文量
394
审稿时长
52 days
期刊介绍: Neuroscience publishes papers describing the results of original research on any aspect of the scientific study of the nervous system. Any paper, however short, will be considered for publication provided that it reports significant, new and carefully confirmed findings with full experimental details.
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