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虹鳟(Salmo gairdneri)肌节肌肉骨骼系统的力学特性

Mechanical properties of the myotomal musculo-skeletal system of rainbow trout, Salmo gairdneri.

作者信息

Johnsrude C L, Webb P W

出版信息

J Exp Biol. 1985 Nov;119:71-83. doi: 10.1242/jeb.119.1.71.

Abstract

Net forces and velocities resulting from in situ contractions of the myotomal musculature on one side of the body were measured at the hypural bones. Forces, velocities and power were determined with the body bent into a range of postures typical of those observed during fast-start swimming. For trout averaging 0.178 m in length and 0.0605 kg in body mass, the muscle system exerts a maximum normal force of 2.2N at the base of the caudal fin. This force is equivalent to 11.8 kN m-2 based on the mean cross-sectional area of the myotomal muscle. The maximum velocity was 1.11 m s-1, and the maximum mechanical power output, 0.64 W, or 42.4 W kg-1 muscle. Based on estimates of swimming resistance, these results would suggest acceleration rates of 7.5 to 16.5 m s-2, similar to averages observed during fast-starts. Maximum sprint speeds would range from 6.5 to 17.8 body lengths s-1, spanning the range of maximum speeds reported in the literature. It is suggested that maximum speed is limited by interactions between muscle contraction frequency and endurance. Losses in the mechanical linkages between muscle fibres and propulsive surfaces were estimated at about 50% for power with possibly greater losses in force transmission. Maximum force and power did not vary over the range of postures tested, supporting Alexander's (1969) suggestions that white muscle should contract over a small portion of the resting length of the fibres.

摘要

在尾下骨处测量了身体一侧肌节肌肉原位收缩所产生的合力和速度。通过将身体弯曲成快速启动游泳时观察到的一系列典型姿势来确定力、速度和功率。对于平均体长0.178米、体重0.0605千克的鳟鱼,肌肉系统在尾鳍基部施加的最大法向力为2.2牛。根据肌节肌肉的平均横截面积,该力相当于11.8千牛/平方米。最大速度为1.11米/秒,最大机械功率输出为0.64瓦,即每千克肌肉42.4瓦。根据游泳阻力的估计,这些结果表明加速度为7.5至16.5米/秒²,与快速启动时观察到的平均值相似。最大冲刺速度范围为6.5至17.8体长/秒,涵盖了文献报道的最大速度范围。研究表明,最大速度受肌肉收缩频率和耐力之间相互作用的限制。肌肉纤维与推进表面之间机械连接的功率损失估计约为50%,力传递方面的损失可能更大。在测试的姿势范围内,最大力和功率没有变化,这支持了亚历山大(1969年)的观点,即白肌应在纤维静止长度的一小部分范围内收缩。

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