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全身肌电刺激对绝经后妇女身体适应性的影响:一项随机对照试验。

Effects of Whole-Body Electromyostimulation on Physical Fitness in Postmenopausal Women: A Randomized Controlled Trial.

机构信息

Research Group Human Movement, University of Lleida, Av. de l'Estudi General, n.4 E-25001 Lleida, Spain.

EUSES Health and Sport Sciences School, Rovira i Virgili University, C/Sebastià Joan Arbó, 2, 43870 Amposta, Spain.

出版信息

Sensors (Basel). 2020 Mar 8;20(5):1482. doi: 10.3390/s20051482.

Abstract

Whole-body electromyostiulation (WB-EMS) has experienced a boom in recent years, even though its effectiveness is controversial. A sedentary lifestyle is deeply rooted in the European population, mainly in the elderly. This experimental study analyzed the impact of WB-EMS on the physical fitness of postmenopausal women. Thirty-four healthy sedentary women between 55 and 69 years followed an experimental design pre-post-test. Both groups conducted a ten-week aerobic and strength training program. The experimental group overlaid the WB-EMS during exercise. At the end of the intervention, both groups improved upper and lower body strength, lower extremity flexibility, agility, and speed levels ( < 0.05). Significant interactions were observed at upper and lower body strength, agility, speed, and cardiovascular endurance ( < 0.05). The WB-EMS group scored better agility than the control group at the end of the intervention ( < 0.05) and was the only group that improved cardiovascular endurance. WB-EMS shows a favorable isolate effect on the development of dynamic leg strength, agility, and cardiovascular endurance but did not in dynamic arm strength, gait speed, balance, or flexibility of postmenopausal women.

摘要

全身肌电刺激(WB-EMS)近年来经历了一次热潮,尽管其效果存在争议。久坐的生活方式在欧洲人群中根深蒂固,尤其是在老年人中。这项实验研究分析了 WB-EMS 对绝经后妇女身体健康的影响。34 名 55 至 69 岁的健康久坐女性遵循实验设计的前后测试。两组均进行了为期十周的有氧运动和力量训练计划。实验组在运动期间叠加了 WB-EMS。干预结束时,两组的上下肢力量、下肢柔韧性、敏捷性和速度水平均有所提高(<0.05)。在上肢和下肢力量、敏捷性、速度和心血管耐力方面观察到显著的交互作用(<0.05)。干预结束时,WB-EMS 组的敏捷性得分优于对照组(<0.05),并且是唯一提高心血管耐力的组。WB-EMS 对发展动态腿部力量、敏捷性和心血管耐力有有利的孤立作用,但对绝经后妇女的动态手臂力量、步速、平衡或柔韧性没有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf32/7085547/d703e35eca6f/sensors-20-01482-g001.jpg

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