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采用一种新的计算机化方法测定的36周耐力训练期间最大摄氧量(Vo2 max)和无氧阈变化的时间进程。

The time course during 36 weeks' endurance training of changes in Vo2 max. and anaerobic threshold as determined with a new computerized method.

作者信息

Smith D A, O'Donnell T V

出版信息

Clin Sci (Lond). 1984 Aug;67(2):229-36. doi: 10.1042/cs0670229.

DOI:10.1042/cs0670229
PMID:6744791
Abstract

Six healthy male subjects followed a programme of endurance training for 36 weeks. At 12 week intervals each underwent an incremental exercise test to maximum on a treadmill. Minute ventilation, cardiac frequency, expired and endtidal concentrations of oxygen and carbon dioxide, oxygen uptake and carbon dioxide output were measured continuously during each test. Anaerobic threshold (AT) was determined non-invasively as the onset of sustained increases in each of the ventilatory equivalent for oxygen, expired and end-tidal concentrations of oxygen followed by an increase in ventilatory equivalent for carbon dioxide after a brief delay due to isocapnic buffering. A new computerized cumulative-sum method was employed. Significant increases in maximum oxygen uptake (Vo2 max.) of 13.6%, AT (32.3%) and % AT/Vo2 max. (17.0%) and a significant decrease (10.2%) in cardiac frequency at an oxygen uptake of 1.0 litres/min (fc1.0) were observed at the completion of the training programme. The time courses of the changes for each of AT, Vo2 max. and fc1.0 were not identical during the training. Compared with Vo2 max. the disproportionate increases in AT occurred earlier and were usually completed within 12 weeks. Vo2 max. increased for the first 24 weeks of training, but showed no further increase over the final 12 weeks fc1.0 decreased through the whole training period. The improved AT after training is more likely to be related to improved peripheral utilization of oxygen than to an improved oxygen delivery to muscles.

摘要

六名健康男性受试者进行了为期36周的耐力训练计划。每隔12周,他们每人在跑步机上进行一次递增运动测试直至极限。在每次测试过程中,持续测量分钟通气量、心率、呼出气体和终末潮气中的氧气和二氧化碳浓度、摄氧量和二氧化碳排出量。无氧阈(AT)通过无创方式确定,即随着氧气通气当量、呼出气体和终末潮气中氧气浓度持续增加,随后由于等碳酸缓冲短暂延迟后二氧化碳通气当量增加。采用了一种新的计算机化累积求和方法。在训练计划结束时,观察到最大摄氧量(Vo2 max.)显著增加13.6%,无氧阈(AT)增加32.3%,无氧阈/最大摄氧量百分比(% AT/Vo2 max.)增加17.0%,并且在摄氧量为1.0升/分钟时心率(fc1.0)显著降低10.2%。在训练过程中,无氧阈、最大摄氧量和fc1.0各自变化的时间进程并不相同。与最大摄氧量相比,无氧阈的不成比例增加出现得更早,通常在12周内完成。最大摄氧量在训练的前24周增加,但在最后12周没有进一步增加,fc1.0在整个训练期间都在下降。训练后无氧阈的改善更可能与外周氧利用的改善有关,而不是与肌肉氧输送的改善有关。

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