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动态翱翔使信天翁的动态体加速度和能量学解耦。

Dynamic soaring decouples dynamic body acceleration and energetics in albatrosses.

机构信息

School of Marine and Atmospheric Sciences, Stony Brook University, NY 11794-5000, USA.

Western EcoSystems Technology, Inc., 415 West 17th Street, Cheyenne, WY 82001, USA.

出版信息

J Exp Biol. 2024 Sep 15;227(18). doi: 10.1242/jeb.247431. Epub 2024 Sep 25.

DOI:10.1242/jeb.247431
PMID:39246116
Abstract

Estimates of movement costs are essential for understanding energetic and life-history trade-offs. Although overall dynamic body acceleration (ODBA) derived from accelerometer data is widely used as a proxy for energy expenditure (EE) in free-ranging animals, its utility has not been tested in species that predominately use body rotations or exploit environmental energy for movement. We tested a suite of sensor-derived movement metrics as proxies for EE in two species of albatrosses, which routinely use dynamic soaring to extract energy from the wind to reduce movement costs. Birds were fitted with a combined heart-rate, accelerometer, magnetometer and GPS logger, and relationships between movement metrics and heart rate-derived V̇O2, an indirect measure of EE, were analyzed during different flight and activity modes. When birds were exclusively soaring, a metric derived from angular velocity on the yaw axis provided a useful proxy of EE. Thus, body rotations involved in dynamic soaring have clear energetic costs, albeit considerably lower than those of the muscle contractions required for flapping flight. We found that ODBA was not a useful proxy for EE in albatrosses when birds were exclusively soaring. As albatrosses spend much of their foraging trips soaring, ODBA alone was a poor predictor of EE in albatrosses. Despite the lower percentage of time flapping, the number of flaps was a useful metric when comparing EE across foraging trips. Our findings highlight that alternative metrics, beyond ODBA, may be required to estimate energy expenditure from inertial sensors in animals whose movements involve extensive body rotations.

摘要

运动成本的估计对于理解能量和生活史权衡至关重要。尽管来自加速度计数据的整体动态体加速度 (ODBA) 被广泛用作自由放养动物能量消耗 (EE) 的替代指标,但在主要通过身体旋转或利用环境能量进行运动的物种中,其效用尚未得到验证。我们测试了一套传感器衍生的运动指标,作为两种信天翁物种 EE 的替代指标,它们通常使用动态翱翔从风中提取能量以降低运动成本。鸟类佩戴了一个组合的心率、加速度计、磁力计和 GPS 记录仪,并在不同的飞行和活动模式下分析了运动指标与心率衍生的 V̇O2 之间的关系,V̇O2 是 EE 的间接测量值。当鸟类仅翱翔时,源自偏航轴角速度的指标提供了 EE 的有用替代指标。因此,尽管翱翔中涉及的身体旋转的能量成本明显低于扑翼飞行所需的肌肉收缩的能量成本,但翱翔中涉及的身体旋转具有明确的能量成本。我们发现,当鸟类仅翱翔时,ODBA 不是信天翁 EE 的有用替代指标。由于信天翁在觅食过程中大部分时间都在翱翔,因此 ODBA 单独用作信天翁 EE 的预测指标效果不佳。尽管拍打翅膀的时间百分比较低,但在比较觅食过程中的 EE 时,拍打翅膀的次数是一个有用的指标。我们的研究结果表明,对于运动涉及大量身体旋转的动物,除了 ODBA 之外,可能需要替代指标来从惯性传感器估计能量消耗。

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