女性肌肉纤维组成与运动能力。

Medicine and science in sports Pub Date : 1979-01-01
C J Campbell, A Bonen, R L Kirby, A N Belcastro
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引用次数: 0

摘要

本研究的目的是确定肌肉中的快速抽动(FT)纤维成分是否a)与运动能力相关,b)与受试者的可训练性相关,以及c) FT纤维成分是否可以通过标准实验室测试来预测。对24名年轻女性(年龄24.3±3.0岁)进行左、右腿股外侧肌活检。此外,每个受试者都完成了四项实验室测试:i)在循环测力仪上的最大摄氧量测试,ii)高马力测试,iii)低马力测试,以及iv)萨金特跳跃。在训练之前,%FT纤维与每个测试之间的相关性(r等于或小于0.19)不显著(P小于0.05)。在进行无氧训练(N = 20)后,a)高kp测试(δ = + 0.12 +/- 0.02 kpm/sec.kg)、b)低kp测试(δ = + 0.10 +/- 0.01 kpm/sec.kg)和c) Sargent跳跃(δ = + 2.5 +/- 1.1 cm)出现了显著改善(P < 0.05)。然而,这些训练引起的变化(δ)与%FT纤维组成无关(r等于或小于0.35),训练后的测试表现也与%FT纤维无关(r等于或小于0.12)。低%FT纤维含量组(35.8 +/- 1.6%)和高%FT纤维含量组(63.6 +/- 2.2%)训练前后的运动能力差异不显著。无论是单独的性能测试,还是在多元回归方程中组合的性能测试,都不能提供FT肌纤维成分的合适预测。这项研究的结果表明,运动表现和/或对训练的敏感性不能从简单的肌肉纤维成分测量中先验地确定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Muscle fiber composition and performance capacities of women.

The purpose of the present study was to determine whether the fast-twitch (FT) fiber composition in muscle was a) correlated with performance capacities, b) related to the trainability of the subjects, and c) whether the FT fiber composition could be predicted with standard laboratory tests. From twenty-four young women (ages 24.3 +/- 3.0 yrs) muscle biopsies were obtained from the vastus lateralis of both the left and right legs. In addition, each subject completed four laboratory tests: i) a maximal oxygen intake test on the cycle ergometer, ii) a high-kp power test, iii) a low-kp power test, and iv) a Sargent jump. Prior to training the correlations between %FT fibers and each of the tests (r equal to or less than 0.19) were not significant (P less than 0.05). After training anaerobically (N = 20) significant improvements (P less than 0.05) occurred in a) the high-kp test (delta = + 0.12 +/- 0.02 kpm/sec.kg) b) the low-kp test (delta = + 0.10 +/- 0.01 kpm/sec.kg) and c) the Sargent jump (delta = + 2.5 +/- 1.1 cm). However, these training-induced changes (delta) were not correlated with %FT fiber composition (r equal to or less than 0.35), nor were the post-training performances on the tests correlated with the %FT fibers (r equal to or less than 0.12). Performance capacities before and after training were not significantly different in groups with a low %FT fiber composition (35.8 +/- 1.6%) or a high %FT fiber composition (63.6 +/- 2.2%). None of the performance tests either singly, or in combination in a multiple regression equation, provided a suitable prediction of the FT muscle fiber composition. The results of this study indicate that athletic performances and/or susceptibility for training cannot be determined a priori from simple measurements of muscle fiber composition.

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