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首页> 外文期刊>Journal of Comparative Physiology B: Biochemical, Systemic, and Environmental Physiology >Pedestrian locomotion energetics and gait characteristics of a diving bird, the great cormorant, Phalacrocorax carbo
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Pedestrian locomotion energetics and gait characteristics of a diving bird, the great cormorant, Phalacrocorax carbo

机译:潜水鸟,the,Ph的行人运动能量和步态特征

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Great cormorants Phalacrocorax carbo are foot propelled diving birds that seem poorly suited to locomotion on land. They have relatively short legs, which are presumably adapted for the generation of high forces during the power stroke of aquatic locomotion, and walk with a pronounced “clumsy waddle”. We hypothesise (1) that the speed, independent minimum cost of locomotion (C min, ml O2 m−1) will be high for cormorants during treadmill exercise, and (2) that cormorants will have a relatively limited speed range in comparison to more cursorial birds. We measured the rate of oxygen consumption ([(V)dot]O2) (dot{V}_{{rm O}_{2}}) of cormorants during pedestrian locomotion on a treadmill, and filmed them to determine duty factor (the fraction of stride period that the foot is in contact with the ground), foot contact time (t c), stride frequency (f), swing phase duration and stride length. C min was 2.1-fold higher than that predicted by their body mass and phylogenetic position, but was not significantly different from the C min of runners (Galliformes and Struthioniformes). The extrapolated y-intercept of the relationship between [(V)dot]O2 dot{V}_{{rm O}_{2}} and speed was 1.9-fold higher than that predicted by allometry. Again, cormorants were not significantly different from runners. Contrary to our hypothesis, we therefore conclude that cormorants do not have high pedestrian transport costs. Cormorants were observed to use a grounded gait with two double support phases at all speeds measured, and showed an apparent gait transition between 0.17 and 0.25 m s−1. This transition occurs at a Froude number between 0.016 and 0.037, which is lower than the value of ~0.5 observed for many other species. However, despite the use of a limited speed range, and a gait transition at relatively low speed, we conclude that the pedestrian locomotion of these foot propelled diving birds is otherwise generally similar to that of cursorial birds at comparable relative velocities.
机译:cor Ph是脚推动的潜水鸟,似乎不适合在陆地上运动。它们的腿比较短,据推测适合在水上运动的动力冲程中产生较大的力,并且走路时带有明显的“笨拙的蹒跚”。我们假设(1)的速度,独立最小运动成本(C min ,ml O 2 m -1 )对于在跑步机运动期间,以及(2)与更多的小鸟相比cor将具有相对有限的速度范围。我们测量了of的耗氧率([(V)点] O 2 )(点{V} _ {{rm O} _ {2}})在跑步机上进行行人运动时,将其拍摄下来以确定占空比(脚与地面接触的步幅的比例),脚接触时间(t c ),步幅频率(f ),摆动相位持续时间和步幅长度。 C min 比其体重和系统发育位置预测的高2.1倍,但与跑步者(鸡形目和穿线虫目)的C min 并无显着差异。 [(V)dot] O 2 点{V} _ {{rm O} _ {2}}与速度之间的关系的外推y截距为1.9 -比异体测量法预测的要高。再次,cor与跑步者没有显着差异。与我们的假设相反,我们得出的结论是cor的行人运输成本不高。观察到在所有测得的速度下都使用带有两个双支撑相的接地步态,并且步态在0.17和0.25 m s -1 之间表现出明显的步态过渡。这种转变发生在0.016至0.037的弗洛德数之间,该弗洛伊德数低于许多其他物种的〜0.5值。然而,尽管使用了有限的速度范围,并且以相对较低的速度进行步态转换,但我们得出的结论是,在可比较的相对速度下,这些脚推动的潜水鸟的行人运动通常与游标鸟相似。

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