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首页> 外文期刊>The Journal of Experimental Biology >A note on interactions between temperature, viscosity, body size and swimming energetics in fish larvae
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A note on interactions between temperature, viscosity, body size and swimming energetics in fish larvae

机译:关于鱼幼体中温度,粘度,体型和游泳能量之间相互作用的说明

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In a previous study, it was shown that at a given speed the larvae of a species of freshwater fish, the Danube bleak Chalcalburnus chalcoides, expended considerably more metabolic energy at 15 degrees C than at 20 degrees C, We applied hydromechanical arguments to our previous data in order to determine whether the higher cost of swimming at the lower temperature might be due to the effects of viscous forces. However, even under the unrealistic assumption of the larvae swimming in the viscous regime at Reynolds numbers as high as 2000, we show here that hydromechanical forces cannot explain the high energy cost of swimming at 15 degrees C, Instead, we offer a new hypothesis that the 'two-gear system' of the swimming muscles operating in juvenile and adult fish is not yet functional in the larvae, with the consequence that, when these fish are swimming at high speeds in cold water, the muscle fibres have to operate over an increasingly inefficient range of shortening velocities. [References: 20]
机译:在先前的研究中,研究表明,以给定的速度,一种淡水鱼的幼体多瑙河(Danube bleak)Chalcalburnus chalcoides在15摄氏度下比20摄氏度下消耗的代谢能量要大得多。数据,以确定在较低温度下游泳的较高费用是否可能是由于粘性力的影响。但是,即使在不现实的假设下,即在雷诺数高达2000的粘性状态下幼体游泳的情况下,我们在这里仍显示出水力无法解释在15摄氏度下游泳的高能量成本,相反,我们提供了一个新的假设:幼鱼的成年游泳肌的“双齿轮系统”尚未发挥作用,其结果是,当这些鱼在冷水中高速游泳时,其肌肉纤维必须在缩短速度的效率越来越低。 [参考:20]

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