脑卒中后双足任务中顶叶-前中枢连接与 MRCP 和步态之间的时间同步性。

IF 5.2 2区 医学 Q1 ENGINEERING, BIOMEDICAL Journal of NeuroEngineering and Rehabilitation Pub Date : 2024-06-13 DOI:10.1186/s12984-024-01330-z
Chun-Ren Phang, Kai-Hsiang Su, Yuan-Yang Cheng, Chia-Hsin Chen, Li-Wei Ko
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引用次数: 0

摘要

背景:在脑卒中后康复治疗中,功能连接(FC)、运动相关皮质电位(MRCP)和步态活动是与康复效果相关的常见测量指标。然而,功能连接、运动相关皮层电位、步态活动和双足分辨能力之间的相互关系还有待研究:方法:10 名参与者在执行下肢运动准备(MP)和运动执行(ME)任务时配备了脑电图设备和惯性测量单元(IMU)。从脑电图信号中提取MRCP、FCs和双足可分辨性,同时从步态数据中计算ME阶段膝关节程度的变化。利用成对的皮尔逊相关性分析FC,并将全脑FC输入支持向量机(SVM)进行双足分类:结果:顶叶-前中央连接(PFCC)失调和MRCP不同步分别与MP和ME阶段有关。偏瘫肢体运动比非偏瘫肢体运动表现出更高的PFCC强度。双足分类在运动前阶段有一个短暂的峰值(75.1%)。这些结果有助于更好地理解运动任务过程中的神经生理功能,包括局部 MRCP 和非局部 FC 活动。双侧肢体的 PFCCs 差异可作为了解脑卒中后患者大脑运动功能的标记:在这项研究中,我们发现 PFCCs 与下肢步态运动和 MRCP 具有时间依赖性。结论:本研究发现,PFCCs 与下肢步态运动和 MRCP 具有时间依赖性,同时 PFCCs 还与脑卒中后患者的下肢运动表现有关。通过检测运动意向,可以开发用于下肢主动康复的双足脑控外骨骼。
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Time synchronization between parietal-frontocentral connectivity with MRCP and gait in post-stroke bipedal tasks.

Background: In post-stroke rehabilitation, functional connectivity (FC), motor-related cortical potential (MRCP), and gait activities are common measures related to recovery outcomes. However, the interrelationship between FC, MRCP, gait activities, and bipedal distinguishability have yet to be investigated.

Methods: Ten participants were equipped with EEG devices and inertial measurement units (IMUs) while performing lower limb motor preparation (MP) and motor execution (ME) tasks. MRCP, FCs, and bipedal distinguishability were extracted from the EEG signals, while the change in knee degree during the ME phase was calculated from the gait data. FCs were analyzed with pairwise Pearson's correlation, and the brain-wide FC was fed into support vector machine (SVM) for bipedal classification.

Results: Parietal-frontocentral connectivity (PFCC) dysconnection and MRCP desynchronization were related to the MP and ME phases, respectively. Hemiplegic limb movement exhibited higher PFCC strength than nonhemiplegic limb movement. Bipedal classification had a short-lived peak of 75.1% in the pre-movement phase. These results contribute to a better understanding of the neurophysiological functions during motor tasks, with respect to localized MRCP and nonlocalized FC activities. The difference in PFCCs between both limbs could be a marker to understand the motor function of the brain of post-stroke patients.

Conclusions: In this study, we discovered that PFCCs are temporally dependent on lower limb gait movement and MRCP. The PFCCs are also related to the lower limb motor performance of post-stroke patients. The detection of motor intentions allows the development of bipedal brain-controlled exoskeletons for lower limb active rehabilitation.

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来源期刊
Journal of NeuroEngineering and Rehabilitation
Journal of NeuroEngineering and Rehabilitation 工程技术-工程:生物医学
CiteScore
9.60
自引率
3.90%
发文量
122
审稿时长
24 months
期刊介绍: Journal of NeuroEngineering and Rehabilitation considers manuscripts on all aspects of research that result from cross-fertilization of the fields of neuroscience, biomedical engineering, and physical medicine & rehabilitation.
期刊最新文献
Comparison of synergy extrapolation and static optimization for estimating multiple unmeasured muscle activations during walking. Immersive virtual reality for learning exoskeleton-like virtual walking: a feasibility study. Instrumented assessment of lower and upper motor neuron signs in amyotrophic lateral sclerosis using robotic manipulation: an explorative study. Rest the brain to learn new gait patterns after stroke. Effects of virtual reality rehabilitation after spinal cord injury: a systematic review and meta-analysis.
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