应用成像声纳量化水生生物及其环境之间的行为相互作用和分析方法

IF 3.1 2区 农林科学 Q1 FISHERIES
Ryan T Munnelly, Jose C Castillo, Nils Olav Handegard, Matthew E Kimball, Kevin M Boswell, Guillaume Rieucau
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引用次数: 0

摘要

对于许多水生动物来说,分布模式、营养动力学关系和生殖活动是由影响行为的复杂生物和非生物生态系统相互作用驱动的。因此,将行为信息与环境刺激和压力因素联系起来可以帮助预测人口和生态系统对变化条件的反应,并为管理提供信息。然而,行为信息的获取是具有挑战性的,因为许多采样装置不能提供足够的空间或时间分辨率,或者可能改变行为。传统上,大多数行为研究都是实验室实验,而现场行为往往是间接推断的。成像声纳技术的进步使原位行为的研究有可能解决许多未被研究的关系。在这篇综述中,我们讨论了成像声纳在155项水生生物环境研究中的应用。我们评估了成像声纳的性能,以研究种间和种内的相互作用,与复杂和敏感的栖息地和低能见度环境的关联,并评估传统渔业采样装置。我们研究了用于改进分类分辨率的数据处理和分析方法,通过子采样管理时间使用和自相关性,提取应用于生态过程的行为指标,以及自动化丰度估计和图像分类,目的是为研究人员提供资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Applications and analytical approaches using imaging sonar for quantifying behavioural interactions among aquatic organisms and their environment
For many aquatic animals, distributional patterns, trophodynamic relationships, and reproductive activity are driven by complex biotic and abiotic ecosystem interactions that influence behaviour. Linking behavioural information to environmental stimuli and stressors can, therefore, help to anticipate population and ecosystem responses to changing conditions and inform management. However, behavioural information is challenging to obtain because many sampling gears do not provide adequate spatial or temporal resolution, or potentially alter behaviours. Traditionally, most behavioural studies have been laboratory experiments, while behaviour in situ has often been inferred indirectly. Advancements in imaging sonar technology enable the study of in situ behaviours with the potential to address many understudied relationships. In this review we discuss applications of imaging sonar among a meta-analysis of 155 studies of aquatic organisms in their environments. We evaluate the performance of imaging sonar for studying inter- and intra-specific interactions, associations with complex and sensitive habitats and low-visibility environments, and to evaluate traditional fisheries sampling gears. We examine the data processing and analytical methods used to refine taxonomic resolution, manage time use and autocorrelation through sub-sampling, extract behavioural metrics applied to ecological processes, and for automating abundance estimates and image classification with the goal of providing a resource for researchers.
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来源期刊
ICES Journal of Marine Science
ICES Journal of Marine Science 农林科学-海洋学
CiteScore
6.60
自引率
12.10%
发文量
207
审稿时长
6-16 weeks
期刊介绍: The ICES Journal of Marine Science publishes original articles, opinion essays (“Food for Thought”), visions for the future (“Quo Vadimus”), and critical reviews that contribute to our scientific understanding of marine systems and the impact of human activities on them. The Journal also serves as a foundation for scientific advice across the broad spectrum of management and conservation issues related to the marine environment. Oceanography (e.g. productivity-determining processes), marine habitats, living resources, and related topics constitute the key elements of papers considered for publication. This includes economic, social, and public administration studies to the extent that they are directly related to management of the seas and are of general interest to marine scientists. Integrated studies that bridge gaps between traditional disciplines are particularly welcome.
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