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首页> 外文期刊>Bird Study >Fuel management and stopover duration of Blackcaps Sylvia atricapilla stopping over in northern Spain during autumn migration period
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Fuel management and stopover duration of Blackcaps Sylvia atricapilla stopping over in northern Spain during autumn migration period

机译:秋季迁徙期间,西班牙北部的黑帽S(Sylvia atricapilla)的燃料管理和中途停留时间

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Capsule Fuel load is correlated with fuel deposition rate; stopover duration is affected by arrival fuel load.Aims To determine the stopover duration, fuel management and flight ranges at departure of Blackcaps stopping over in northern Spain.Methods Systematic mist-netting and ringing allowed the use of mark-recapture Cormack-Jolly-Seber models for the estimation of stopover duration. Trapped birds were measured and weighed in order to estimate mass gain. FLIGHT software was used to estimate flight ranges.Results Stopover duration ranged from 3.6 to 13.6 days, and was negatively correlated with arrival body mass (assessed by body mass at the first capture event). On average, arrival body mass was 18.4 g, whilst body mass at departure was 19.8 g. No significant differences in arrival body mass and departure body mass were observed between age or sex classes. Mass deposition rate did not differ between age or sex classes (mean = 0.20 g/day). Birds recaptured one day after the first capture event lost mass, whilst recaptures from the second day onwards had a mean gain of mass; mass was observed to increase linearly with the stopover duration. Mass deposition rate was positively correlated with departure body mass. Finally, with a mean departure body mass of 19.8 g, a Blackcap stopping over in northern Spain should be able to fly up to 1100 km.Conclusions Stopover duration assessed by Cormack-Jolly-Seber models was longer than that observed in birds recaptured more than once ('minimum stopover duration'). Stopover was longer for birds arriving with less fuel. The positive relationship between departure body mass and mass deposition rate suggests a time-minimizing strategy. The lack of difference in fuel deposition rate between age and sex classes suggests a relatively abundant food supply at the study site, but other explanations might also account for the lack of age and sex differences, for example if competition for food was not determined by social hierarchies but by scramble competition. Departing fuel load would allow these birds to arrive at their wintering areas in southern Spain under still-air conditions, without needing to refuel.
机译:舱室燃油负荷与燃油沉积率相关。中途停留时间受到达燃料负荷的影响。目的确定中途停留时间,在黑帽航空在西班牙北部中途停留时的燃料管理和飞行范围。方法系统的薄雾网和振铃技术允许使用标记捕获的Cormack-Jolly-Seber中途停留时间估算模型。测量被困的家禽并称重,以估计体重增加。结果表明,中途停留时间在3.6到13.6天之间,与到达体重(以第一次捕获事件的体重进行评估)呈负相关。平均而言,到达的体重为18.4克,而出发时的体重为19.8克。在年龄或性别类别之间,未观察到到达体重和离开体重的显着差异。年龄或性别类别之间的质量沉积率没有差异(平均= 0.20 g /天)。在第一次捕获事件发生后的第一天,鸟类被捕获而失去了质量,而从第二天开始捕获的鸟类平均质量得到了提高;观察到质量随停留时间线性增加。质量沉积率与离场质量成正相关。最后,由于平均离场体重为19.8克,在西班牙北部停留的黑帽飞翔系统应能够飞行1100公里。结论Cormack-Jolly-Seber模型评估的中途停留时间长于被捕获的鸟类超过一次(“最小停留时间”)。中途停留时间较长的鸟以较少的燃料到达。离场质量与沉积速率之间的正相关关系提出了一种时间最小化策略。年龄和性别之间的燃料沉积率缺乏差异表明研究地点的食物供应相对充足,但其他解释也可能解释了年龄和性别差异的缺乏,例如,如果食物竞争不是由社会决定的等级制度,但争夺竞争。离开的燃料负荷将使这些鸟在静止空气条件下能够到达西班牙南部的越冬区域,而无需加油。

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