Energy systems efficiency influences the results of 2,000 m race simulation among elite rowers.

Clujul medical (1957) Pub Date : 2017-01-01 Epub Date: 2017-01-15 DOI:10.15386/cjmed-675
Stefan Adrian Martin, Valeriu Tomescu
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引用次数: 10

Abstract

Hypothesis: Energy efficiency within an elite group of athletes will ensure metabolic adaptation during training.

Objectives: To identify energy system efficiency and contribution according to exercise intensity, and performance obtained during a 2,000 m race simulation in an elite group of rowers.

Method: An observational cross-sectional study was conducted in February 2016 in Bucharest, Romania, on a group of 16 elite rowers. Measurements were performed through Cosmed Quark CPET equipment, and Concept 2 ergometer, by conducting a VO2max test over a standard rowing distance of 2,000 m. The analyzed parameters during the test were: HR (bpm), Rf (b/min), VE (l/min), VO2 (ml/min), VCO2 (ml/min), VT (l), O2exp (ml), CO2exp (ml), RER, PaCO2 (mmHg), PaO2 (mmHg), Kcal/min, FAT (g), CHO (g), from which we determined the ventilatory thresholds, and the energy resource used during the specific 2,000 m rowing distance (ATP, ATP+CP, muscle glycogen).

Results: We performed an association between HR (180.2±4.80 b/min), and carbohydrate consumption during the sustained effort (41.55±3.99 g) towards determining the energy systems involved: ATP (3.49±1.55%), ATP+CP (18.06±2.99%), muscle glycogen (77.9±3.39%). As a result, completion time (366.3±10.25 s) was significantly correlated with both Rf (p=0.0024), and VO2 (p=0.0166) being also pointed out that ≥5 l VO2 value is associated with an effort time of ≤360 s. (p=0.040, RR=3.50, CI95%=1.02 to 11.96). Thus, the average activation time among muscle ATP (12.81±5.70 s), ATP+CP (66.04±10.17 s, and muscle glycogen (295±9.5 s) are interrelated, and significantly correlated with respiratory parameters.

Conclusions: Decreased total activity time was associated with accessing primary energy source in less time, during effort, improving the body energy power. Its effectiveness was recorded by early carbohydrates access, as a primary energy source, during specific activity performed up to 366 seconds.

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能源系统效率影响精英赛艇运动员2000米比赛模拟结果。
假设:运动员精英群体的能量效率将确保训练期间的代谢适应。目的:确定能量系统的效率和贡献根据运动强度,并在2000米赛艇精英组模拟比赛中获得的表现。方法:2016年2月在罗马尼亚布加勒斯特对16名优秀赛艇运动员进行了一项观察性横断面研究。测量是通过Cosmed Quark CPET设备和Concept 2测力计进行的,通过在2000米的标准划船距离上进行VO2max测试。试验中分析的参数有:HR (bpm)、Rf (b/min)、VE (l/min)、VO2 (ml/min)、VCO2 (ml/min)、VT (l)、O2exp (ml)、CO2exp (ml)、RER、PaCO2 (mmHg)、PaO2 (mmHg)、Kcal/min、FAT (g)、CHO (g),由此确定了通气阈值,以及特定2000 m赛程中消耗的能量(ATP、ATP+CP、肌糖原)。结果:我们将心率(180.2±4.80 b/min)与持续运动时的碳水化合物消耗(41.55±3.99 g)联系起来,以确定所涉及的能量系统:ATP(3.49±1.55%),ATP+CP(18.06±2.99%),肌糖原(77.9±3.39%)。结果表明,完成时间(366.3±10.25 s)与Rf (p=0.0024)和VO2 (p=0.0166)显著相关,VO2≥5 l与努力时间≤360 s相关(p=0.040, RR=3.50, CI95%=1.02 ~ 11.96)。因此,肌肉ATP(12.81±5.70 s)、ATP+CP(66.04±10.17 s)和肌糖原(295±9.5 s)的平均激活时间具有相关性,且与呼吸参数显著相关。结论:总活动时间的减少与在更短的时间内获得主要能量来源有关,在努力过程中,提高身体能量。它的有效性是通过在特定活动中长达366秒的早期碳水化合物获取(作为主要能量来源)来记录的。
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