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温度越高越好:成年非洲爪蟾阔筋膜张肌最大和持续功率输出的热敏感性。

Warmer is better: thermal sensitivity of both maximal and sustained power output in the iliotibialis muscle isolated from adult Xenopus tropicalis.

机构信息

Department of Biomolecular and Sport Sciences, Coventry University, Coventry CV1 5FB, UK.

出版信息

J Exp Biol. 2012 Feb 1;215(Pt 3):552-8. doi: 10.1242/jeb.063396.

Abstract

Environmental temperature varies temporally and spatially and may consequently affect organismal function in complex ways. Effects of temperature are often most pertinent on locomotor performance traits of ectothermic animals. Given the importance of locomotion to mobility and dispersion, variability in temperature may therefore affect the current and future distribution of species. Many previous studies have demonstrated that burst muscle performance changes with temperature. However, less is known about the effects of temperature on sustained skeletal muscle performance. The iliotibialis muscle was isolated from eight male Xenopus tropicalis individuals and subjected to in vitro isometric and work-loop studies at test temperatures of 15, 24, 30 and 32°C. Work-loop power output (average power per cycle) was maximised at each temperature by altering stimulation and strain parameters. A series of 10 work loops was also delivered at each test temperature to quantify endurance performance. Warmer test temperatures tended to increase twitch stress (force normalised to muscle cross-sectional area) and significantly increased tetanic stress. Increased temperature significantly reduced twitch and tetanus activation and relaxation times. Increased temperature also significantly increased both burst muscle power output (cycle average) and sustained (endurance) performance during work loop studies. The increase in burst power output between 15 and 24°C yielded a high Q(10) value of 6.86. Recent studies have demonstrated that the negative effects of inorganic phosphate accumulation during prolonged skeletal muscle performance are reduced with increased temperature, possibly explaining the increases in endurance found with increased test temperature in the present study.

摘要

环境温度随时间和空间而变化,可能会以复杂的方式影响生物的功能。温度对变温动物的运动表现特征的影响最为显著。由于运动对移动和扩散至关重要,因此温度的变化可能会影响物种的当前和未来分布。许多先前的研究表明,爆发肌肉性能随温度变化而变化。然而,对于温度对持续骨骼肌性能的影响知之甚少。从 8 个雄性非洲爪蟾个体中分离出髂胫束肌肉,并在 15、24、30 和 32°C 的测试温度下进行体外等长和工作循环研究。通过改变刺激和应变参数,在每个温度下使工作循环的功率输出(每个循环的平均功率)最大化。还在每个测试温度下进行了一系列 10 个工作循环,以量化耐力性能。较暖的测试温度往往会增加抽搐张力(力除以肌肉横截面积),并显著增加强直张力。温度升高显著缩短了抽搐和强直的激活和松弛时间。温度升高还显著提高了爆发肌肉的功率输出(循环平均值)和工作循环研究中的持续(耐力)性能。在 15°C 和 24°C 之间爆发功率输出的增加产生了 6.86 的高 Q(10) 值。最近的研究表明,随着温度升高,无机磷酸盐在长时间骨骼肌性能中积累的负面影响会降低,这可能解释了本研究中随着测试温度升高耐力增加的原因。

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