Park Wonil, Lee Jaesung, Lee Hyunseob, Hong Gyuseog, Park Hun-Young, Park Jonghoon
Department of Physical Education, Korea University, Seoul, Republic of Korea.
Convergence Center, LG Electronics, Seoul, Republic of Korea.
Phys Act Nutr. 2022 Dec;26(4):32-40. doi: 10.20463/pan.2022.0022. Epub 2022 Dec 31.
The purpose of this pilot study was to determine whether physiological tremors (PTs) assessed using an accelerometer could be used to evaluate resistance exercise intensity.
Twenty healthy young men with no prior experience of resistance exercise were recruited. Different intensities (resting, 30%, 50%, and 70% of their predetermined one-repetition maximum (1-RM)) of arm-curl exercise were used to elicit PT. The total work was held equally by varying the number of repetitions, with five sets for each intensity. Sessions of varying intensities were performed randomly with a washout period of at least a week. PT responses were recorded during exercise using accelerometers (3-axis) attached to the wrist and ear. Electromyography (EMG) data were obtained from the biceps brachii muscle during exercise. PT and EMG data were expressed as the average root mean square index.
The EMG amplitude increased significantly as exercise intensity increased. Furthermore, PT amplitude significantly increased as exercise intensity increased. Moreover, the Borg rating of perceived exertion (RPE) and lactic acid levels increased significantly. The wrist PT was related to ear PT, EMG, RPE, and lactic acid levels. Additionally, ear PT was associated with EMG, RPE, and lactic acid levels.
This pilot study identified changes in PT during resistance exercise at different intensities. We suggest that the use of PT analyses during these exercises provides a more intuitive delineation of resistance exercise intensity and fatigue.
本初步研究的目的是确定使用加速度计评估的生理性震颤(PTs)是否可用于评估抗阻运动强度。
招募了20名此前没有抗阻运动经验的健康年轻男性。采用不同强度(静息、预定1次重复最大值(1-RM)的30%、50%和70%)的弯臂运动来诱发PT。通过改变重复次数使总功保持相等,每种强度进行5组。不同强度的训练随机进行,洗脱期至少为一周。在运动过程中,使用附着在手腕和耳朵上的加速度计(三轴)记录PT反应。运动期间从肱二头肌获取肌电图(EMG)数据。PT和EMG数据以平均均方根指数表示。
随着运动强度增加,EMG振幅显著增加。此外,随着运动强度增加,PT振幅也显著增加。而且,伯格主观用力程度分级(RPE)和乳酸水平显著升高。手腕PT与耳朵PT、EMG、RPE和乳酸水平相关。此外,耳朵PT与EMG、RPE和乳酸水平相关。
本初步研究确定了不同强度抗阻运动期间PT的变化。我们建议在这些运动期间使用PT分析可更直观地描述抗阻运动强度和疲劳程度。