Characteristics of central cortex and upper-limb flexors synchrony oxygenation during grasping in people with stroke: a controlled trial study protocol

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-08-29 DOI:10.3389/fnhum.2024.1409148
Jiang-Li Zhao, Pei-Ming Chen, Tao Zhang, Hao Xie, Wen-Wu Xiao, Shamay S. M Ng, Chu-Huai Wang
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Abstract

BackgroundUpper limb motor impairment is a common consequence of stroke, and the effectiveness and underlying mechanisms of rehabilitation therapy for improving upper limb function remain uncertain. Functional near-infrared spectroscopy, a reliable wearable neuroimaging technique, holds promise for investigating brain activity during functional tasks. This study aims to explore the synchronous oxygenation characteristics of the central cortex and upper-limb flexors during a grasping task and investigate the rehabilitation mechanisms of upper limb motor function in individuals with stroke.MethodsParticipants with stroke who demonstrate the ability to grasp and lift cubic wood blocks of different sizes (2.5cm3, 5cm3, and 10cm3) using their affected hand will be divided into three groups: A, B, and C. Each group will consist of twenty stroke patients, resulting in a total of sixty participants with stroke. Additionally, twenty matched healthy subjects will be enrolled as a control group. Comprehensive assessments will be conducted before and after the intervention, including blood oxygen parameter monitoring of the cerebral cortex and upper limb flexors using fNIRS during the grasping task. Other assessments will include MyotonPRO, the Modified Ashworth Scale, the upper extremity section of the Fugl–Meyer Assessment, the Action Research Arm Test, and the Modified Barthel Index. The study will be undertaken between January 2024 and September 2025.ConclusionsThe results of this trial will provide an in-depth understanding of the Characteristics of central cortex and upper-limb flexors synchronous oxygenation during grasping task and how it may relate to the rehabilitation mechanism of upper limb motor function in people with stroke.Clinical trial registrationhttps://www.chictr.org.cn, identifier ChiCTR2400080619.
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中风患者抓握时中枢皮层和上肢屈肌同步氧合的特征:对照试验研究方案
背景上肢运动障碍是脑卒中的常见后果,而康复治疗对改善上肢功能的效果和内在机制仍不确定。功能性近红外光谱是一种可靠的可穿戴神经成像技术,有望用于研究功能性任务中的大脑活动。本研究旨在探索中风患者在完成抓握任务时中枢皮层和上肢屈肌的同步氧合特征,并研究中风患者上肢运动功能的康复机制。方法将表现出能用患手抓握和举起不同大小(2.5 立方厘米、5 立方厘米和 10 立方厘米)的立方体木块的中风患者分为三组,每组 A、B 和 C:每组 20 名中风患者,共 60 名中风患者。此外,还将招募二十名匹配的健康受试者作为对照组。干预前后将进行综合评估,包括在抓握任务中使用 fNIRS 监测大脑皮层和上肢屈肌的血氧参数。其他评估包括 MyotonPRO、改良阿什沃斯量表、福格尔-迈耶评估的上肢部分、行动研究手臂测试和改良巴特尔指数。该研究将于2024年1月至2025年9月期间进行。结论该试验的结果将使人们深入了解抓握任务中中枢皮层和上肢屈肌同步氧合的特点,以及它与中风患者上肢运动功能康复机制的关系。临床试验注册https://www.chictr.org.cn,标识符为ChiCTR2400080619。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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