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温度和力量需求对肌肉做功及功率输出的影响。

Effects of temperature and force requirements on muscle work and power output.

作者信息

Olberding Jeffrey P, Deban Stephen M

机构信息

Department of Integrative Biology, University of South Florida, 4202 East Fowler Ave., Science Center 110, Tampa, FL 33620, USA

Department of Integrative Biology, University of South Florida, 4202 East Fowler Ave., Science Center 110, Tampa, FL 33620, USA.

出版信息

J Exp Biol. 2017 Jun 1;220(Pt 11):2017-2025. doi: 10.1242/jeb.153114. Epub 2017 Mar 17.

Abstract

Performance of muscle-powered movements depends on temperature through its effects on muscle contractile properties. stimulation of Cuban treefrog () plantaris muscles reveals that interactions between force and temperature affect the mechanical work of muscle. At low temperatures (9-17°C), muscle work depends on temperature when shortening at any force, and temperature effects are greater at higher forces. At warmer temperatures (13-21°C), muscle work depends on temperature when shortening with intermediate and high forces (≥30% peak isometric tetanic force). Shortening velocity is most strongly affected by temperature at low temperatures and high forces. Power is also most strongly affected at low temperature intervals, but this effect is minimized at intermediate forces. Effects of temperature on muscle force explain these interactions; force production decreases at lower temperatures, increasing the challenge of moving a constant force relative to the muscle's capacity. These results suggest that animal performance that requires muscles to do work with low forces relative to a muscle's maximum force production will be robust to temperature changes, and this effect should be true whether muscle acts directly or through elastic-recoil mechanisms and whether force is prescribed (i.e. internal) or variable (i.e. external). Conversely, performance requiring muscles to shorten with relatively large forces is expected to be more sensitive to temperature changes.

摘要

肌肉驱动运动的表现取决于温度对肌肉收缩特性的影响。对古巴树蛙()跖肌的刺激表明,力与温度之间的相互作用会影响肌肉的机械功。在低温(9 - 17°C)下,肌肉在任何力下缩短时,功都取决于温度,且在较高力时温度效应更大。在较温暖的温度(13 - 21°C)下,肌肉在中等和高力(≥30%峰值等长强直力)下缩短时,功取决于温度。在低温和高力时,缩短速度受温度影响最大。功率在低温区间也受影响最大,但在中等力时这种影响最小化。温度对肌肉力的影响解释了这些相互作用;在较低温度下力的产生会减少,相对于肌肉的能力而言,移动恒定力的挑战增加。这些结果表明,相对于肌肉的最大力产生而言,需要肌肉以低力做功的动物表现对温度变化具有较强的抗性,无论肌肉是直接起作用还是通过弹性回弹机制起作用,也无论力是规定的(即内部的)还是可变的(即外部的),这种效应都成立。相反,需要肌肉以相对较大的力缩短的表现预计对温度变化更敏感。

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