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An evaluation of home range models for marine fish tracking and fine scale habitat use and movement patterns of age 1 Greenland cod (Gadus macrocephalus ogac)

机译:评估海洋鱼类跟踪和精细尺度栖息地使用的家庭范围模型和1岁格陵兰鳕鱼(Gadus macrocephalus ogac)的运动模式

摘要

My thesis examines fine-scale habitat use and movement patterns of age 1 Greenland cod (Gadus macrocephalus ogac) tracked using acoustic telemetry. Recent advances in tracking technologies such as GPS and acoustic telemetry have led to increasingly large and detailed datasets that present new opportunities for researchers to address fine-scale ecological questions regarding animal movement and spatial distribution. There is a growing demand for home range models that will not only work with massive quantities of autocorrelated data, but that can also exploit the added detail inherent in these high-resolution datasets. Most published home range studies use radio-telemetry or satellite data from terrestrial mammals or avian species, and most studies that evaluate the relative performance of home range models use simulated data. In Chapter 2, I used actual field-collected data from age-1 Greenland cod tracked with acoustic telemetry to evaluate the accuracy and precision of six home range models: minimum convex polygons, kernel densities with plug-in bandwidth selection and the reference bandwidth, adaptive local convex hulls, Brownian bridges, and dynamic Brownian bridges. I then applied the most appropriate model to two years (2010-2012) of tracking data collected from 82 tagged Greenland cod tracked in Newman Sound, Newfoundland, Canada, to determine diel and seasonal differences in habitat use and movement patterns (Chapter 3). Little is known of juvenile cod ecology, so resolving these relationships will provide valuable insight into activity patterns, habitat use, and predator-prey dynamics, while filling a knowledge gap regarding the use of space by age 1 Greenland cod in a coastal nursery habitat. By doing so, my thesis demonstrates an appropriate technique for modelling the spatial use of fish from acoustic telemetry data that can be applied to high-resolution, high-frequency tracking datasets collected from mobile organisms in any environment.
机译:我的论文研究了使用声遥测技术追踪的1岁格陵兰鳕(Gadus macrocephalus ogac)的小规模栖息地使用和运动模式。 GPS和声学遥测等跟踪技术的最新进展已导致越来越大和更详细的数据集,这为研究人员提供了解决有关动物运动和空间分布的精细生态问题的新机会。对家庭范围模型的需求不断增长,这些模型不仅可以处理大量的自相关数据,而且还可以利用这些高分辨率数据集中固有的附加细节。大多数发表的家庭距离研究都使用无线电遥测或陆生哺乳动物或鸟类物种的卫星数据,大多数评估家庭距离模型相对性能的研究都使用模拟数据。在第2章中,我使用了通过声学遥测技术跟踪的1岁格陵兰鳕鱼的现场实地数据,评估了六个家庭范围模型的准确性和精度:最小凸多边形,带有插件带宽选择的内核密度和参考带宽,自适应局部凸包​​,布朗桥和动态布朗桥。然后,我将最合适的模型应用于两年(2010年至2012年)的跟踪数据,该数据来自在加拿大纽芬兰的纽曼桑德跟踪的82个带标签的格陵兰鳕鱼,以确定栖息地使用和移动方式的diel和季节性差异(第3章)。对鳕鱼的生态学知之甚少,因此解决这些关系将为活动模式,栖息地的使用和捕食者-猎物的动态提供有价值的见解,同时填补关于沿海苗圃栖息地1岁格陵兰鳕鱼对空间利用的知识空白。通过这样做,我的论文演示了一种合适的技术,该技术可根据声遥测数据对鱼类的空间使用进行建模,该数据可应用于从任何环境中的移动生物中收集的高分辨率,高频跟踪数据集。

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    Schornagel Dustin;

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  • 年度 2015
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