Effectiveness of FES-supported leg exercise for promotion of paralysed lower limb muscle and bone health-a systematic review.

IF 1.3 4区 医学 Q4 ENGINEERING, BIOMEDICAL
Morufu Olusola Ibitoye, Nur Azah Hamzaid, Yusuf Kola Ahmed
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Abstract

Leg exercises through standing, cycling and walking with/without FES may be used to preserve lower limb muscle and bone health in persons with physical disability due to SCI. This study sought to examine the effectiveness of leg exercises on bone mineral density and muscle cross-sectional area based on their clinical efficacy in persons with SCI. Several literature databases were searched for potential eligible studies from the earliest return date to January 2022. The primary outcome targeted was the change in muscle mass/volume and bone mineral density as measured by CT, MRI and similar devices. Relevant studies indicated that persons with SCI that undertook FES- and frame-supported leg exercise exhibited better improvement in muscle and bone health preservation in comparison to those who were confined to frame-assisted leg exercise only. However, this observation is only valid for exercise initiated early (i.e., within 3 months after injury) and for ≥30 min/day for ≥ thrice a week and for up to 24 months or as long as desired and/or tolerable. Consequently, apart from the positive psychological effects on the users, leg exercise may reduce fracture rate and its effectiveness may be improved if augmented with FES.

fes支持的腿部运动对促进瘫痪下肢肌肉和骨骼健康的有效性-系统综述。
在有/没有FES的情况下,通过站立、骑自行车和步行进行腿部锻炼可以用来保护因脊髓损伤而身体残疾的人的下肢肌肉和骨骼健康。本研究旨在根据脊髓损伤患者的临床疗效,探讨腿部运动对骨密度和肌肉横截面积的影响。从最早返回日期到2022年1月,检索了几个文献数据库,寻找潜在的符合条件的研究。主要目标是通过CT、MRI和类似设备测量肌肉质量/体积和骨矿物质密度的变化。相关研究表明,与仅局限于框架辅助腿部运动的SCI患者相比,进行FES和框架支撑腿部运动的SCI患者在肌肉和骨骼健康保护方面表现出更好的改善。然而,这一观察结果仅适用于早期运动(即受伤后3个月内),≥30分钟/天,每周≥3次,持续24个月或根据需要和/或可耐受的时间。因此,除了对使用者有积极的心理影响外,腿部运动可以降低骨折率,如果辅以FES,其效果可能会得到提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.50
自引率
5.90%
发文量
58
审稿时长
2-3 weeks
期刊介绍: Biomedical Engineering / Biomedizinische Technik (BMT) is a high-quality forum for the exchange of knowledge in the fields of biomedical engineering, medical information technology and biotechnology/bioengineering. As an established journal with a tradition of more than 60 years, BMT addresses engineers, natural scientists, and clinicians working in research, industry, or clinical practice.
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