Calibrating tri-axial accelerometers for remote behavioural observations in Bewick's swans

IF 0.7 Q4 ZOOLOGY
R. Nuijten, Emile F. Prins, J. Lammers, Constanze Mager, B. Nolet
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引用次数: 5

Abstract

Accelerometers in tracking devices are increasingly used to identify behaviour leading to detailed insights into the lives of free-ranging animals. To make proper use of an accelerometer, their settings and signals need to be tested and calibrated. Calibration of an accelerometer can be done by directly observing an individual animal of the species of interest, while an accelerometer is simultaneously measuring the movements of this individual. In case direct observations are difficult to obtain, this procedure can be performed with captive individuals. This study sought to calibrate the accelerometer sensor in GPS/GSM neck-collars in Bewick’s swans Cygnus columbianus bewickii with observations of captive individuals in three zoos in the Netherlands. Using a random forest classification model, five behavioural classes were classified with an overall accuracy of 91%. An additional behavioural class (aquatic foraging) was identified based on a water sensor that was also included in the GPS/GSM collars. This classification was subsequently applied to accelerometer data from 12 free-ranging Bewick’s swans equipped with these neck-collars to identify their behaviour during two spring migrations (2017 and 2018). The resulting time-activity budgets were in general agreement with current knowledge based on fragmentary field observations of Bewick’s swan flocks along the flyway. The study shows how observations of zoo individuals can be instrumental to derive time-activity budgets of free-ranging individuals that can contribute to further research into the ecology of the species.
校准用于贝威克天鹅远程行为观测的三轴加速度计
追踪设备中的加速度计越来越多地用于识别行为,从而深入了解自由放养动物的生活。为了正确使用加速度计,需要对其设置和信号进行测试和校准。加速度计的校准可以通过直接观察感兴趣物种的个体动物来完成,而加速度计同时测量该个体的运动。在难以获得直接观察结果的情况下,可以对圈养个体进行该程序。这项研究试图通过对荷兰三家动物园圈养个体的观察,校准贝威克天鹅天鹅颈环GPS/GSM中的加速度计传感器。使用随机森林分类模型,对五个行为类别进行了分类,总体准确率为91%。根据GPS/GSM项圈中的水传感器,确定了另一个行为类别(水生觅食)。随后,这一分类被应用于12只戴着颈环的自由放养贝威克天鹅的加速度计数据,以确定它们在两次春季迁徙(2017年和2018年)期间的行为。由此产生的时间活动预算与基于对贝威克天鹅群沿飞行路线的零星实地观测的现有知识大体一致。这项研究表明,对动物园个体的观察如何有助于得出自由放养个体的时间活动预算,从而有助于进一步研究该物种的生态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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