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利用肌电图法测量青少年自行车运动员的耗氧量以评估其运动强度:一项分析研究。

Using an Electromyography Method While Measuring Oxygen Uptake to Appreciate Physical Exercise Intensity in Adolescent Cyclists: An Analytical Study.

机构信息

Department of Physiology, "George Emil Palade" University of Medicine, Pharmacy, Science and Technology from Târgu Mureș, Gheorghe Marinescu 38, 540139 Mureș, Romania.

Department of Community Nutrition and Food Safety, "George Emil Palade" University of Medicine, Pharmacy, Science and Technology from Târgu Mureș, Gheorghe Marinescu 38, 540139 Mureș, Romania.

出版信息

Medicina (Kaunas). 2021 Sep 8;57(9):948. doi: 10.3390/medicina57090948.

Abstract

: During physical exercise, the electrical signal of the muscle fibers decreases due to repeated muscle contractions held at different intensities. The measured signal is strongly related to the motor unit activation rate, which is dependent on the chemical mediators and the available energy. By reducing the energy availability, adenosine triphosphate (ATP) production will decrease and therefore the muscle fibers activation rate will be negatively affected. Such aspects become important when taking into account that the training intensity for many young athletes is rather controlled by using the heart rate values. Yet, on many occasions, we have seen differences and lack of relationship between the muscle activation rate, the heart rate values and the lactate accumulation. : We conducted a prospective analytical study conducted during a 4-month period, on a sample of 30 participants. All study participants underwent an incremental exercise bike test to measure maximum aerobic capacity as well as the muscle activation rate in the vastus lateralis by using an electromyography method (EMG). : With age, the EMG signal dropped, as did the electromyography fatigue threshold (EMG) point, as seen through = 0.0057, r = -0.49, CI95% = -0.73 to -0.16, and electromyography maximum reached point (EMG) ( = 0.0001, r = -0.64, CI95% = -0.82 to -0.36), whereas power output increased ( = 0.0186, r = 0.427). The higher the power output, the lower the signal seen by measuring active tissue EMG ( = 0.0324, r = -0.39) and EMG ( = 0.0272, r = -0.40). Yet, with changes in median power output, the power developed in aerobic ( = 0.0087, r = 0.47), mixed ( = 0.0288, r = 0.39), anaerobic ( = 0.0052, r = 0.49) and anaerobic power ( = 0.004, r = 0.50) exercise zones increased. There has been reported a relationship between aerobic/anaerobic ventilatory thresholds (VT and VT) and EMG, EMG, respectively. Each change in oxygen uptake increased the power output in EMG and EMG, improving performances and therefore overlapping with both ventilatory thresholds.

摘要

在体育锻炼过程中,由于不同强度的肌肉收缩,肌肉纤维的电信号会减弱。所测量的信号与运动单位激活率密切相关,而运动单位激活率取决于化学介质和可用能量。通过降低能量可用性,三磷酸腺苷 (ATP) 的产生将会减少,因此肌肉纤维的激活率将会受到负面影响。当考虑到许多年轻运动员的训练强度主要是通过心率值来控制时,这些方面就变得很重要。然而,在许多情况下,我们已经看到肌肉激活率、心率值和乳酸积累之间存在差异和缺乏相关性。

我们进行了一项为期 4 个月的前瞻性分析研究,样本量为 30 名参与者。所有研究参与者都进行了递增式自行车测试,以测量最大有氧能力以及使用肌电图 (EMG) 方法测量股外侧肌的肌肉激活率。

随着年龄的增长,EMG 信号下降,肌电图疲劳阈值 (EMG) 点也下降,r = -0.49,CI95% = -0.73 至 -0.16,肌电图最大达到点 (EMG) 也下降(r = -0.64,CI95% = -0.82 至 -0.36),而功率输出增加(r = 0.427)。功率输出越高,通过测量主动组织 EMG 看到的信号越低(r = -0.39)和 EMG(r = -0.40)。然而,随着中值功率输出的变化,有氧(r = 0.47)、混合(r = 0.39)、无氧(r = 0.49)和无氧功率(r = 0.5)运动区的发展功率增加。已经报道了有氧/无氧通气阈值 (VT 和 VT) 与 EMG、EMG 之间的关系。每增加一单位的氧气摄取量,都会增加 EMG 和 EMG 的功率输出,从而提高表现,因此与两个通气阈值重叠。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6501/8466329/cc5a38119e96/medicina-57-00948-g001.jpg

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