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Dependence of the maximal lactate steady state on the motor pattern of exercise

机译:最大乳酸稳态对运动方式的依赖

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摘要

Background—Blood lactate concentration (BLC) can be used to monitor relative exercise intensity. The highest BLC representing an equilibrium between lactate production and elimination is termed maximal lactate steady state (MLSS). MLSS is used to discriminate qualitatively between continuous exercise, which is limited by stored energy, from other types of exercise terminated because of disturbance of cellular homoeostasis. Aim—To investigate the hypothesis that MLSS intraindividually depends on the mode of exercise. Methods—Six junior male rowers (16.5 (1.4) years, 181.7 (3.1) cm, 69.8 (3.3) kg) performed incremental and constant load tests on rowing and cycle ergometers. Measurements included BLC, sampled from the hyperaemic ear flap, heart rate, and oxygen uptake. MLSS was defined as the highest BLC that increased by no more than 1.0 mmol/l during the final 20 minutes of constant workload. Results—In all subjects, MLSS was lower (p≤0.05) during rowing (2.7 (0.6) mmol/l) than during cycling (4.5 (1.0) mmol/l). No differences between rowing and cycling were found with respect to MLSS heart rate (169.2 (9.3) v 172.3 (6.7) beats/min), MLSS workload (178.7 (29.8) v 205.0 (20.7) W), MLSS intensity expressed as a percentage (63.3 (6.6)% v 68.6 (3.8)%) of peak workload (280.8 (15.9) v 299.2 (28.4) W) or percentage (76.4 (3.4)% v 75.1 (3.0)%) of peak oxygen uptake (60.4 (3.4) v 57.2 (8.6) ml/kg/min). Conclusions—In rowing and cycling, the MLSS but not MLSS workload and MLSS intensity intraindividually depends on the motor pattern of exercise. MLSS seems to decrease with increasing mass of the primarily engaged muscle. This indicates that task specific levels of MLSS occur at distinct levels of power output per unit of primarily engaged muscle mass. >Key Words: metabolism; constant workload; cycling; rowing; muscle mass
机译:背景-乳酸血浓度(BLC)可用于监测相对运动强度。代表乳酸产生和消除之间平衡的最高BLC称为最大乳酸稳态(MLSS)。 MLSS用于定性区分受存储能量限制的连续运动与其他由于细胞同源性紊乱而终止的运动。目的:调查以下假设:MLSS单独取决于锻炼方式。方法-六名少年男性划船者(16.5(1.4)岁,181.7(3.1)cm,69.8(3.3)kg)对划船和自行车测功器进行了增量和恒定载荷测试。测量包括BLC,从充血性耳瓣采样,心律和摄氧量。 MLSS被定义为最高的BLC,在恒定工作量的最后20分钟内,其增加不超过1.0 mmol / l。结果-在所有受试者中,划船(2.7(0.6)mmol / l)的MLSS(p≤0.05)低于骑车期间(4.5(1.0)mmol / l)的MLSS。在MLSS心率(169.2(9.3)v 172.3(6.7)节拍/分钟),MLSS工作量(178.7(29.8)v 205.0(20.7)W),MLSS强度表示为百分比的情况下,在划船和骑自行车之间没有发现差异(63.3(6.6)%v 68.6(3.8)%)的峰值工作量(280.8(15.9)v 299.2(28.4)W)或峰值吸氧量的百分比(76.4(3.4)%v 75.1(3.0)%)(60.4( 3.4)v 57.2(8.6)ml / kg / min)。结论—在划船和骑自行车中,运动强度不是运动强度,而是运动强度和运动强度分别取决于运动的运动方式。 MLSS似乎随着主要参与肌肉的质量增加而降低。这表明MLSS的任务特定级别出现在每单位主要参与的肌肉质量的不同功率输出级别上。 >关键词:新陈代谢;持续的工作量;循环;划船;肌肉量

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