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首页> 外文期刊>The Journal of Experimental Biology >Mechanical and energetic factors underlying gait transitions in bluegill sunfish (Lepomis macrochirus)
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Mechanical and energetic factors underlying gait transitions in bluegill sunfish (Lepomis macrochirus)

机译:蓝blue翻车鱼(Lepomis macrochirus)步态转换的机械和能量因子

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摘要

As their swimming speed increased, bluegill sunfish (Lepomis macrochirus) switched from pectoral-fin-powered labriform swimming to undulations of the body axis. This gait transition occurred at a mean swimming speed of 0.24 +/- 0.01 m s(-1) and a pectoral fin beat frequency of 2.79 +/- 0.11 Hz (mean +/- s.e.m., N=6). The power output available from the main upstroke (adductor profundus) and downstroke (abductor superficialis) muscles, measured using the work-loop technique was maximal at the gait transition point. The cost of transport, measured by respirometry, increased as the fish switched from labriform to undulatory swimming. Our data show that bluegill changed gait as swimming speed increased to recruit additional muscle mass, rather than to maximize economy, as is the case for many terrestrial animals.
机译:随着它们游泳速度的提高,蓝blue翻车鱼(Lepomis macrochirus)从胸鳍驱动的唇形游泳转变为身体轴的起伏。这种步态过渡发生在平均游泳速度0.24 +/- 0.01 m s(-1)和胸鳍拍打频率2.79 +/- 0.11 Hz(平均+/- s.e.m.,N = 6)上。使用工作循环技术测得的主上冲程(内收肌底肌)和下冲程(外展肌)肌的功率输出在步态过渡点最大。通过呼吸测定法来衡量的运输成本随着鱼从唇形游泳转换为波动游泳而增加。我们的数据显示,蓝swimming随着游泳速度的增加而改变步态,以吸引更多的肌肉,而不是像许多陆生动物那样最大化经济。

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