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Myosin Heavy Chain Characteristics and Their Relationship to Exercise Performance.

机译:肌球蛋白重链特征及其与运动表现的关系。

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摘要

There are a large variety of factors that affect performance in physical tasks. One factor is the muscle myosin heavy chain (MHC) composition of the muscle involved in the task. Differences in MHC can affect not just exercise performance, but can be related to general health. Purpose: The purpose of this study was to examine the relationship between exercise performance and MHC composition. Methods: Forty two (n=42) males of a variety of training backgrounds (aerobically trained, resistance trained, recreationally trained, and sedentary) took part in this study (Age = 22.4+/-3.5 years, Height 1.78+/-.07m, Weight 78.7+/-13.3 kg). Subjects were familiarized with vertical jumps, as well as maximal and fatiguing leg extensions during their first visit. A DEXA scan was performed on each subject along with thigh girth and skinfold caliper measurements. The following visit, subjects performed 2 reps of the following jump variations: counter movement jump, with and without arm swing, and depth jumps. Each jump was recorded utilizing a 2 dimensional force plate. Subjects then were tested for leg extension one repetition maximum (1RM). During the final testing session, subjects performed maximal velocity leg extensions at 30, 40, 50, 60, 70, 80, and 90% of their 1RM. Subjects then performed 15 maximal velocity repetitions at 70% of their 1RM on a cadence. Each rep of leg extension performance was recorded for velocity and torque. Immediately afterwards, a muscle biopsy was taken from the vastus lateralis that would be analyzed for MHC content utilizing SDS-PAGE separation (IIX = 13.8+/-12.9%, IIA =49.5+/-10.3 %, I = 36.8+/-11.3%). Data analysis of vertical jump and leg extension performance was analyzed for a number of variables. Results: Significant relationships were found between jump peak and mean power relative to cross sectional area of the thigh with type IIX fiber (r = .429-.459*)(* = significance p <.05). Negative relationships were noted with vertical jump height and type I fiber (r=-.355*), velocity load slope and intercept to type IIA fiber (r=.377-.480*), predicted peak and mean power maximum to type IIA (r=-.328-.352*) and type I fiber (r=.314*), and mean velocity fatigue index to IIA fiber (r=-.319*). Conclusion: This research further establishes a number of links joining exercise performance to muscle MHC, and promotes further research linking muscle MHC to performance at varying resistance levels along the potential load spectrum for skeletal muscle.
机译:有很多因素会影响物理任务的性能。一个因素是参与该任务的肌肉的肌肉肌球蛋白重链(MHC)组成。 MHC的差异不仅会影响运动表现,而且可能会影响整体健康。目的:本研究的目的是研究运动表现与MHC组成之间的关系。方法:42名(n = 42)具有各种训练背景(有氧训练,抵抗训练,娱乐训练和久坐的男性)参加了这项研究(年龄= 22.4 +/- 3.5岁,身高1.78 +/-)。 07m,重量78.7 +/- 13.3公斤)。受试者在初次就诊时熟悉垂直跳跃,以及最大和疲劳的腿部伸展。对每个受试者进行DEXA扫描,并测量大腿周长和皮褶厚度。在接下来的访问中,受试者进行了以下两次跳跃变化的2次重复:反向运动跳跃(有或没有手臂摆动)以及深度跳跃。使用二维测力板记录每次跳跃。然后测试受试者腿部伸展最大一次重复(1RM)。在最后的测试期间,受试者以其1RM的30%,40%,50%,60%,70%,80%和90%进行最大速度腿部伸展。然后,受试者以其节奏进行1RM的70%的15次最大速度重复。记录腿伸展性能的每个重复的速度和扭矩。之后立即从外侧外侧肌进行肌肉活检,然后使用SDS-PAGE分离法分析其MHC含量(IIX = 13.8 +/- 12.9%,IIA = 49.5 +/- 10.3%,I = 36.8 +/- 11.3 %)。垂直跳和腿伸展性能的数据分析分析了许多变量。结果:对于IIX型纤维,在跳跃峰值和相对于大腿横截面积的平均功率之间存在显着关系(r = .429-.459 *)(* =显着性p <.05)。垂直跳变高度和I型光纤(r =-。355 *),速度负载斜率和与IIA型光纤的截距(r = .377-.480 *),预测的峰值和IIA型最大功率和平均功率之间存在负相关关系(r =-。328-.352 *)和I型纤维(r = .314 *),以及IIA纤维的平均速度疲劳指数(r =-。319 *)。结论:这项研究进一步建立了将运动表现与肌肉MHC连接起来的许多链接,并促进了进一步研究,将肌肉MHC与沿骨骼肌潜在负荷谱的不同阻力水平下的表现联系起来。

著录项

  • 作者

    Lane, Michael T.;

  • 作者单位

    University of Kansas.;

  • 授予单位 University of Kansas.;
  • 学科 Health Sciences Recreation.;Biology Physiology.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 151 p.
  • 总页数 151
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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