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首页> 外文期刊>The Journal of Experimental Biology >Avian pectoral muscle size rapidly tracks body mass changes during flight, fasting and fuelling
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Avian pectoral muscle size rapidly tracks body mass changes during flight, fasting and fuelling

机译:禽胸肌的大小迅速跟踪飞行,禁食和加油期间的体重变化

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摘要

We used ultrasonic imaging to monitor short-term changes in the pectoral muscle size of captive red knots Calidris canutus. Pectoral muscle thickness changed rapidly and consistently in parallel with body mass changes caused by flight, fasting;and fuelling. Four knots hew repeatedly for 10h periods in a wind tunnel. Over this period, pectoral muscle thickness decreased in parallel with the decrease in body mass. The change in pectoral muscle thickness during flight wats indistinguishable from that during periods of natural and experimental fasting and fuelling, The body-mass-related variation in pectoral muscle thickness between and within individuals was not related to the amount of Right, indicating that changes in avian muscle do not require power-training as in mammals. Our study suggests that it is possible for birds to consume and replace their flight muscles on a time scale short enough to allow these muscles to be used as part of the energy supply for migratory flight. The adaptive significance of the changes in pectoral muscle mass cannot be explained by reproductive needs since our knots were in the early winter phase of their annual cycle. Instead, pectoral muscle mass changes may reflect (i) the breakdown of protein during heavy exercise and its subsequent restoration, (ii) the regulation of flight capacity to maintain optimal flight performance when body mass varies, or (iii) the need for a particular protein:fat ratio in winter survival stores. [References: 41]
机译:我们使用超声成像来监测捕获的红色结Calidris canutus的胸肌大小的短期变化。胸肌厚度迅速变化,并且与飞行,禁食和加油引起的体重变化一致。四个结在风洞中反复磨损10小时。在此期间,胸肌厚度随着体重的减少而减少。飞行过程中胸肌厚度的变化与自然禁食和实验禁食和加油期间的变化没有区别。个体之间和个体内与体质量有关的胸肌厚度变化与Right量无关,表明禽类肌肉不需要像哺乳动物一样进行力量训练。我们的研究表明,鸟类有可能在足够短的时间范围内消耗和替换其飞行肌肉,以使这些肌肉被用作候鸟飞行能量供应的一部分。胸肌质量变化的适应性意义不能用生殖需求来解释,因为我们的结处于其年度周期的早期冬季阶段。取而代之的是,胸肌质量的变化可能反映(i)剧烈运动过程中蛋白质的分解及其随后的恢复;(ii)调节飞行能力以在体重变化时保持最佳飞行性能;或(iii)需要特定的冬季生存库中的蛋白质:脂肪比率。 [参考:41]

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