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首页> 外文期刊>Archives of physiology and biochemistry >Whichever the initial training status, any increase in velocity at lactate threshold appears as a major factor in improved time to exhaustion at the same severe velocity after training.
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Whichever the initial training status, any increase in velocity at lactate threshold appears as a major factor in improved time to exhaustion at the same severe velocity after training.

机译:不管初始训练状态如何,在乳酸阈值下速度的任何增加似乎都是在训练后以相同的剧烈速度改善疲劳时间的主要因素。

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The first purpose of this study was to assess the eventual training adaptations in the time to exhaustion at the same severe velocity occurring after severe interval-training programs in few- and well-trained subjects. In the event of such training adaptations, the second purpose was to identify the discriminant factors of performance improvement according to the initial training status. Seven few- and six well-trained subjects performed: firstly, an incremental test to determine the maximal oxygen consumption (VO2max), the energy cost of running (ECR), the velocity associated with the achievement of VO2max (vVO2max) and the lactate threshold (LT expressed in VO2, km x h(-1), % vVO2max); secondly, an all-out test at the velocity corresponding to the midway between vLT and vVO2max (vdelta50) to determine the time to exhaustion (tmax); such tests were carried out before and after 4- and 8-week severe interval-training programs. In the few-trained subjects, all factors of performance (i.e., VO2max, ECR, vVO2max, LT expressed in VO2, km x h(-1), % vVO2max) and tmax at the pre-training vdelta50 were improved after training (+8, -8, +7, +9, +14, +6% and +79%, respectively); only the increase in vLT was related to the one in tmax (r = 0.714, p < or = 0.05, n = 7). In the well-trained subjects, only vVO2max was improved (+3%) due to the decrease in ECR (-3%), tmax at the pre-training vdelta50 did not vary after training; only the three subjects (over six) who improved their vLT (+0.5, +0.5, +0.8 km x h(-1), respectively) improved their tmax (+10, +24, +101%, respectively) (r = 0.895, p < or = 0.01, n = 6). So, whichever the initial training status, any training-induced adaptation in vLT appeared as a major factor of performance improvement especially at supra-LT velocities.
机译:这项研究的第一个目的是评估在很少训练有素的受试者中进行严格的间隔训练计划之后,以相同的剧烈速度进行的力竭时间的最终训练适应性。在进行此类培训调整的情况下,第二个目的是根据初始培训状态确定绩效提高的判别因素。进行了7名训练有素的受试者,包括6名受过良好训练的受试者:首先,进行增量测试以确定最大耗氧量(VO2max),跑步的能量成本(ECR),与达到VO2max相关的速度(vVO2max)和乳酸阈值(LT以VO2表示,km xh(-1),%vVO2max);其次,以与vLT和vVO2max之间的中间速度(vdelta50)相对应的速度进行全面测试,以确定衰竭时间(tmax)。在4周和8周的严格间隔训练计划之前和之后进行了此类测试。在少数训练有素的受试者中,训练后vdelta50的所有表现因素(即VO2max,ECR,vVO2max,以VO2表示的LT,km xh(-1),%vVO2max)和tmax均得到改善(+8 ,-8,+ 7,+ 9,+ 14,+ 6%和+ 79%);只有vLT的增加与tmax中的一个有关(r = 0.714,p <或= 0.05,n = 7)。在训练有素的受试者中,由于ECR的降低(-3%),仅vVO2max有所改善(+ 3%),训练前vdelta50的tmax不变。只有三个改善了vLT的受试者(六个以上)(分别为+ 0.5,+ 0.5,+ 0.8 km xh(-1))提高了他们的tmax(分别为+ 10,+ 24,+ 101%)(r = 0.895) ,p <或= 0.01,n = 6)。因此,无论初始训练状态如何,vLT中任何由训练引起的适应都似乎是性能改善的主要因素,尤其是在超LT速度下。

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