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下坡跑后的延迟性肌肉酸痛以及血浆肌酸磷酸激酶(CPK)和乳酸脱氢酶(LDH)活性

Delayed-onset muscular soreness and plasma CPK and LDH activities after downhill running.

作者信息

Schwane J A, Johnson S R, Vandenakker C B, Armstrong R B

出版信息

Med Sci Sports Exerc. 1983;15(1):51-6.

PMID:6843319
Abstract

We tested the hypothesis that running down an incline, during which muscles primarily perform eccentric contractions, causes greater delayed-onset muscle soreness and greater increases in plasma enzyme activities than does running on the level, during which muscles perform similar amounts of concentric and eccentric contractions. Subjective sensations of muscular soreness and plasma activities of CPK and LDH were assessed in seven subjects at 0, 24, 48, and 72 h after 45 min of running (one time on the level and a second time down a 10% incline). Following downhill running (57% of VO2max), significant delayed-onset soreness was experienced in gluteal, quadricep, anterior leg, and posterior leg muscles, and plasma CPK (but not LDH) activity was significantly increased (351% at 24 h). In contrast, following level running (78% of VO2max), no statistically significant soreness occurred in any muscle group, and plasma CPK and LDH activities were not elevated. Thus, our results generally support the hypothesis. Secondarily, we investigated whether delayed-onset soreness with downhill running is accompanied by increases in peripheral white blood cell counts suggestive of inflammation. No such association was observed. We suggest that both delayed-onset muscular soreness and plasma enzyme activities are affected by structural changes in muscle tissue resulting from eccentric contractions.

摘要

我们验证了这样一个假设

与在平地上跑步相比,下坡跑时肌肉主要进行离心收缩,会导致更严重的延迟性肌肉酸痛以及血浆酶活性的更大升高,而在平地上跑步时肌肉进行的向心收缩和离心收缩量相似。在七名受试者中,于跑步45分钟后0、24、48和72小时评估肌肉酸痛的主观感受以及CPK和LDH的血浆活性(一次在平地上跑,另一次沿10%的斜坡向下跑)。下坡跑(最大摄氧量的57%)后,臀肌、股四头肌、小腿前侧和后侧肌肉出现了明显的延迟性酸痛,血浆CPK(但不是LDH)活性显著升高(24小时时升高351%)。相比之下,平地跑(最大摄氧量的78%)后,任何肌肉群均未出现统计学上显著的酸痛,血浆CPK和LDH活性也未升高。因此,我们的结果总体上支持该假设。其次,我们研究了下坡跑引起的延迟性酸痛是否伴随着提示炎症的外周白细胞计数增加。未观察到这种关联。我们认为,延迟性肌肉酸痛和血浆酶活性均受离心收缩导致的肌肉组织结构变化影响。

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