Cebrián-Ponce Álex, Irurtia Alfredo, Carrasco-Marginet Marta, Saco-Ledo Gonzalo, Girabent-Farrés Montserrat, Castizo-Olier Jorge
Barcelona Sports Sciences Research Group, Institut Nacional d'Educació Física de Catalunya (INEFC), Universitat de Barcelona (UB), Barcelona, Spain.
Bioenergy and Motion Analysis Laboratory, National Research Center on Human Evolution (CENIEH), Burgos, Spain.
Front Physiol. 2021 Sep 14;12:740877. doi: 10.3389/fphys.2021.740877. eCollection 2021.
Electrical impedance myography (EIM) is a non-invasive method that provides information about muscle health and changes that occur within it. EIM is based on the analysis of three impedance variables: resistance, reactance, and the phase angle. This systematic review of the literature provides a deeper insight into the scope and range of applications of EIM in health and physical exercise. The main goal of this work was to systematically review the studies on the applications of EIM in health and physical exercise in order to summarize the current knowledge on this method and outline future perspectives in this growing area, including a proposal for a research agenda. Furthermore, some basic assessment principles are provided. Systematic literature searches on PubMed, Scopus, SPORTDiscus and Web of Science up to September 2020 were conducted on any empirical investigations using localized bioimpedance devices to perform EIM within health and physical exercise contexts. The search included healthy individuals, elite soccer players with skeletal muscle injury, and subjects with primary sarcopenia. The Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) checklist was used to develop the systematic review protocol. The quality and risk of bias of the studies included were assessed with the AQUA tool. Nineteen eligible original articles were included in this review, which were separated into three tables according to the nature of the study. The first table includes six studies on the bioelectrical characterization of muscle. The second table includes five studies analyzing muscle changes in injured elite soccer players. The third table includes studies on the short-, medium-, and long-term bioelectrical adaptations to physical exercise. EIM has been used for the evaluation of the muscle condition in the clinical field over the last few years, especially in different neuromuscular diseases. It can also play an important role in other contexts as an alternative to complex and expensive methods such as magnetic resonance imaging. However, further research is needed. The main step in establishing EIM as a valid tool in the scientific field is to standardize the protocol for performing impedance assessments.
电阻抗肌电图(EIM)是一种非侵入性方法,可提供有关肌肉健康状况及其内部发生变化的信息。EIM基于对三个阻抗变量的分析:电阻、电抗和相位角。本文献的系统综述更深入地洞察了EIM在健康和体育锻炼中的应用范围。这项工作的主要目标是系统综述关于EIM在健康和体育锻炼中应用的研究,以总结该方法的现有知识,并概述这一不断发展领域的未来前景,包括提出一个研究议程。此外,还提供了一些基本评估原则。截至2020年9月,在PubMed、Scopus、SPORTDiscus和Web of Science上对使用局部生物阻抗设备在健康和体育锻炼背景下进行EIM的任何实证研究进行了系统的文献检索。检索对象包括健康个体、患有骨骼肌损伤的精英足球运动员以及患有原发性肌肉减少症的受试者。使用系统评价和荟萃分析的首选报告项目(PRISMA)清单来制定系统综述方案。使用AQUA工具评估纳入研究的质量和偏倚风险。本综述纳入了19篇符合条件的原创文章,根据研究性质分为三个表格。第一个表格包括六项关于肌肉生物电特性的研究。第二个表格包括五项分析受伤精英足球运动员肌肉变化的研究。第三个表格包括关于体育锻炼的短期、中期和长期生物电适应性的研究。在过去几年中,EIM已被用于临床领域评估肌肉状况,尤其是在不同的神经肌肉疾病中。作为磁共振成像等复杂且昂贵方法的替代方法,它在其他情况下也可以发挥重要作用。然而,还需要进一步的研究。将EIM确立为科学领域有效工具的主要步骤是标准化进行阻抗评估的方案。