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基于测量偏航轴角速度来区分动物活动的新方向。

A new direction for differentiating animal activity based on measuring angular velocity about the yaw axis.

作者信息

Gunner Richard M, Wilson Rory P, Holton Mark D, Scott Rebecca, Hopkins Phil, Duarte Carlos M

机构信息

Swansea Lab for Animal Movement, Biosciences College of Science Swansea University Swansea UK.

Future Ocean Cluster of Excellence GEOMAR Helmholtz Centre for Ocean Research Kiel Germany.

出版信息

Ecol Evol. 2020 Jul 6;10(14):7872-7886. doi: 10.1002/ece3.6515. eCollection 2020 Jul.

Abstract

The use of animal-attached data loggers to quantify animal movement has increased in popularity and application in recent years. High-resolution tri-axial acceleration and magnetometry measurements have been fundamental in elucidating fine-scale animal movements, providing information on posture, traveling speed, energy expenditure, and associated behavioral patterns. Heading is a key variable obtained from the tandem use of magnetometers and accelerometers, although few field investigations have explored fine-scale changes in heading to elucidate differences in animal activity (beyond the notable exceptions of dead-reckoning).This paper provides an overview of the value and use of animal heading and a prime derivative, angular velocity about the yaw axis, as an important element for assessing activity extent with potential to allude to behaviors, using "free-ranging" Loggerhead turtles () as a model species.We also demonstrate the value of yaw rotation for assessing activity extent, which varies over the time scales considered and show that various scales of body rotation, particularly rate of change of yaw, can help resolve differences between fine-scale behavior-specific movements. For example, oscillating yaw movements about a central point of the body's arc implies bouts of foraging, while unusual circling behavior, indicative of conspecific interactions, could be identified from complete revolutions of the longitudinal axis.We believe this approach should help identification of behaviors and "space-state" approaches to enhance our interpretation of behavior-based movements, particularly in scenarios where acceleration metrics have limited value, such as for slow-moving animals.

摘要

近年来,使用附着在动物身上的数据记录器来量化动物活动的方法在受欢迎程度和应用方面都有所增加。高分辨率的三轴加速度和磁力测量对于阐明动物的精细活动至关重要,能提供有关姿势、行进速度、能量消耗及相关行为模式的信息。航向是通过同时使用磁力计和加速度计获得的关键变量,不过很少有实地调查探究航向的精细变化以阐明动物活动的差异(除了航位推算这一显著例外)。本文概述了动物航向及其主要衍生变量——偏航轴角速度的价值和用途,将其作为评估活动范围的一个重要元素,该元素有可能暗示行为模式,并以“自由放养”的蠵龟()作为模型物种进行研究。我们还展示了偏航旋转对于评估活动范围的价值,其在考虑的时间尺度上有所变化,并表明身体旋转的各种尺度,特别是偏航变化率,有助于分辨精细尺度上特定行为的运动差异。例如,围绕身体弧线中心点的振荡偏航运动意味着觅食行为,而从纵轴的完整旋转中可以识别出表明种内相互作用的异常盘旋行为。我们相信这种方法应有助于识别行为和“空间状态”方法,以增强我们对基于行为的运动的理解,特别是在加速度指标价值有限的情况下,比如对于行动缓慢的动物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c4d/7391348/f5542b298739/ECE3-10-7872-g001.jpg

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