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Infrared thermography in marine ecology: methods, previous applications and future challenges

机译:海洋生态中的红外热成像:方法,先前的应用和未来的挑战

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摘要

Infrared thermography (IRT) is being increasingly utilised by animal physiologists and ecologists to investigate the role of thermal stress and small-scale thermal variability on the distribution and abundance of species. Due to the inability of infrared cameras to work underwater, ecological studies that use IRT have largely been undertaken on terrestrial systems, while fundamentally limited to surfacing mammals in aquatic ecosystems. In recent years, however, IRT has been used to investigate the thermal ecology of intertidal organisms, which are intermittently exposed. The aim of this paper was to summarise the rapidly growing application of IRT in marine ecology, to discuss best practises for using IRT in the marine environment whilst outlining some common limitations, and to suggest future research directions. IRT has been successfully used to count and track the movements of a range of marine mammals as well as to quantify previously unobserved nocturnal feeding patterns. On rocky intertidal shores, IRT has largely been used to assess thermoregulatory processes in gastropods, mussels and sea stars and the effect of heat stress on barnacle recruitment. Ground-truthing and calibration procedures still remain the largest drawback for the use of IRT in ecological studies. However, once the appropriate calculations and working procedures have been implemented, thermal imaging is a reliable and rapid tool for measuring environmental and biological temperature variability. We believe such techniques will become increasingly popular as global temperatures, and hence thermal stress, continue to rise.
机译:动物生理学家和生态学家越来越多地使用红外热成像(IRT)来研究热胁迫和小规模热变异对物种分布和丰度的作用。由于红外摄像机无法在水下工作,因此使用IRT进行的生态学研究主要是在陆地系统上进行的,而从根本上讲,它只限于在水生生态系统中对哺乳动物进行铺垫。但是,近年来,IRT已被用于调查间歇性暴露的潮间生物的热生态学。本文的目的是总结IRT在海洋生态中的快速增长的应用,讨论在海洋环境中使用IRT的最佳实践,同时概述一些常见的局限性,并提出未来的研究方向。 IRT已成功用于计数和跟踪一系列海洋哺乳动物的运动,以及量化先前未观察到的夜间喂养方式。在潮间带岩石海岸上,IRT已广泛用于评估腹足动物,贻贝和海星的温度调节过程以及热应力对藤壶募集的影响。地雷校正和校准程序仍是在生态研究中使用IRT的最大缺点。但是,一旦执行了适当的计算和工作程序,热成像便成为测量环境和生物温度变化性的可靠且快速的工具。我们相信,随着全球温度和热应力的持续上升,此类技术将越来越受欢迎。

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