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首页> 外文期刊>Comparative biochemistry and physiology, Part A. Molecular and integrative physiology >Red muscle function during steady swimming in brook trout, Salvelinus fontinalis.
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Red muscle function during steady swimming in brook trout, Salvelinus fontinalis.

机译:溪鳟,Salvelinus fontinalis稳定游泳期间的红色肌肉功能。

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摘要

Red muscle function during steady swimming in brook trout was studied through both in vivo swimming and in vitro muscle mechanics experiments. In the swimming experiments, red muscle activity was characterized through the use of electromyography and sonomicrometry, allowing the determination of several parameters such as tailbeat frequency, EMG burst duration, muscle length change patterns and relative phase of EMG activity and length change. Brook trout do show some shifts in these variables along their length during steady swimming, but the magnitude of these shifts is relatively small. In the muscle mechanics experiments, the in vivo muscle activity data were used to evaluate patterns of power production by red muscle during swimming. Unlike many fish species, the red muscle along the length of brook trout shows little change in isometric kinetic variables such as relaxation rate and twitch time. Furthermore, there is no rostral-caudal shift in red muscle mass-specific power output during steady swimming. This last result contrasts sharply with rainbow trout and with a variety of other fish species that power steady swimming primarily with the posterior red myotome.
机译:通过体内游泳和体外肌肉力学实验研究了河鳟稳定游泳过程中的红色肌肉功能。在游泳实验中,通过使用肌电图和体测法对红色肌肉活动进行了特征描述,从而可以确定多个参数,例如,心跳频率,EMG爆发持续时间,肌肉长度变化模式以及EMG活动和长度变化的相对相位。在稳定游泳期间,溪鳟鱼确实显示出这些变量沿其长度发生了一些变化,但是这些变化的幅度相对较小。在肌肉力学实验中,体内肌肉活动数据用于评估游泳过程中红色肌肉产生的力量。与许多鱼类不同,沿鳟鱼长度方向的红色肌肉在等轴动力学变量(如松弛率和抽搐时间)中几乎没有变化。此外,在稳定游泳过程中,红色肌肉质量比功率输出中没有尾状尾骨移位。最后的结果与虹鳟鱼以及其他主要通过后部红色肌球体稳定游泳的其他鱼类形成鲜明对比。

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