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一项关于神经肌肉电刺激改善脑瘫步态的范围综述:进展历程与未来策略

A Scoping Review of Neuromuscular Electrical Stimulation to Improve Gait in Cerebral Palsy: The Arc of Progress and Future Strategies.

作者信息

Mooney Jake A, Rose Jessica

机构信息

Department of Orthopaedic Surgery, Stanford University, Stanford, CA, United States.

Motion & Gait Analysis Lab, Lucile Packard Children's Hospital, Stanford Children's Health, Stanford, CA, United States.

出版信息

Front Neurol. 2019 Aug 21;10:887. doi: 10.3389/fneur.2019.00887. eCollection 2019.

Abstract

Neuromuscular deficits of children with spastic cerebral palsy (CP) limits mobility, due to muscle weakness, short muscle-tendon unit, spasticity, and impaired selective motor control. Surgical and pharmaceutical strategies have been partially effective but often cause further weakness. Neuromuscular electrical stimulation (NMES) is an evolving technology that can improve neuromuscular physiology, strength, and mobility. This review aims to identify gaps in knowledge to motivate future NMES research. Research publications from 1990- July 20th 2019 that investigated gait-specific NMES in CP were reviewed using the PubMed and Google Scholar databases. Results were filtered by the National Institute of Neurological Disorder and Stroke common data elements guidelines for CP. The Oxford Centre for Evidence Based Medicine guidelines were used to determine levels of evidence for each outcome. Gait-specific NMES research protocols and trends are described, with implications for future research. Eighteen studies met inclusion criteria, reporting on 212 participants, 162 of whom received NMES while walking, average age of 9.8 years, GMFCS levels I-III. Studies included 4 randomized control trials, 9 cohort studies and 5 case studies. A historical trend emerged that began with experimental multi-channel NMES device development, followed by the commercial development of single-channel devices with inertial sensor-based gait event detection to facilitate ankle dorsiflexion in swing phase. This research reported strong evidence demonstrating improved ankle dorsiflexion kinematics in swing and at initial contact. Improved walking speed, step length, and muscle volume were also reported. However, improvements in global walking scores were not consistently found, motivating a recent return to investigating multi-channel gait-specific NMES applications. Research on single-channel gait-specific NMES found that it improved ankle motion in swing but was insufficient to address more complex gait abnormalities common in CP, such as flexed-knee and stiff-knee gait. Early evidence indicates that multi-channel gait-specific NMES may improve gait patterns in CP, however significantly more research is needed. The conclusions of this review are highly limited by the low level of evidence of the studies available. This review provides a historical record of past work and a technical context, with implications for future research on gait-specific NMES to improve walking patterns and mobility in CP.

摘要

痉挛型脑瘫(CP)患儿的神经肌肉功能缺陷会限制其活动能力,原因包括肌肉无力、肌腱单元短缩、痉挛以及选择性运动控制受损。手术和药物治疗策略虽有一定效果,但往往会导致进一步的肌肉无力。神经肌肉电刺激(NMES)是一项不断发展的技术,能够改善神经肌肉生理功能、增强力量并提高活动能力。本综述旨在找出知识空白,以推动未来的NMES研究。利用PubMed和谷歌学术数据库,对1990年至2019年7月20日期间研究CP中特定步态NMES的研究出版物进行了综述。结果按照美国国立神经疾病和中风研究所CP通用数据元素指南进行筛选。采用牛津循证医学中心指南来确定每个结果的证据水平。描述了特定步态NMES的研究方案和趋势,并对未来研究提出了建议。18项研究符合纳入标准,报告了212名参与者,其中162人在行走时接受了NMES,平均年龄为9.8岁,GMFCS水平为I - III级。研究包括4项随机对照试验、9项队列研究和5项病例研究。出现了一种历史趋势,始于实验性多通道NMES设备的开发,随后是基于惯性传感器步态事件检测的单通道设备的商业开发,以促进摆动期的踝关节背屈。该研究报告了有力证据,表明摆动期和初始接触时踝关节背屈运动学得到改善。还报告了步行速度、步长和肌肉体积的改善。然而,并未始终发现整体步行评分有所提高,这促使最近又重新开始研究多通道特定步态NMES应用。对单通道特定步态NMES的研究发现,它改善了摆动期的踝关节运动,但不足以解决CP中常见的更复杂的步态异常,如屈膝和僵膝步态。早期证据表明,多通道特定步态NMES可能改善CP中的步态模式,然而仍需要大量的研究。本综述的结论受到现有研究证据水平较低的严重限制。本综述提供了过去工作的历史记录和技术背景,对未来关于特定步态NMES以改善CP中步行模式和活动能力的研究具有启示意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9247/6712587/cc83072ed243/fneur-10-00887-g0001.jpg

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