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评估确定板鳃亚纲动物体型大小的技术:当前方法综述

Evaluating techniques for determining elasmobranch body size: a review of current methodologies.

作者信息

Ferreira Ana S, Naré Márcia A, Robalo Joana I, Baylina Núria D

机构信息

Oceanário de Lisboa, Lisbon, Portugal.

Instituto Universitário de Ciências Psicológicas, Sociais e da Vida (ISPA), Lisbon, Portugal.

出版信息

PeerJ. 2024 Dec 23;12:e18646. doi: 10.7717/peerj.18646. eCollection 2024.

DOI:10.7717/peerj.18646
PMID:39726740
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11670763/
Abstract

There is global awareness that many species of elasmobranchs (sharks and rays) have life history characteristics that make them susceptible to overexploitation. The study of these animals is critical, as it contributes to increasing knowledge of these specimens and aids in their conservation. In particular, growth rate, age, fecundity, and size at maturity are key parameters for defining management and conservation strategies in elasmobranchs. Biometric data collection allows these parameters to be determined and considered in the evaluation of population demography. Over the last decades, several methodologies for measuring elasmobranch size have evolved, progressing from traditional capture-based methods to sophisticated, non-intrusive photographic techniques. The present review aims to understand and analyse all the existing non-invasive techniques that currently allow the collection of zoometric data in elasmobranchs and, later, to highlight the advantages and limitations of each technique, with comments on their application to fieldwork. To this end, 49 articles were selected, encompassing seven measurement techniques: photogrammetry using distance to the individual, bar photogrammetry, laser photogrammetry, stereo-DOV, stereo-BRUV, stereo-ROV, and aerial photogrammetry. Globally, the last four techniques are excellent alternatives to methods that involve animal capture or death, as they are practical, simple to use, minimally invasive, and potentially highly accurate. Each technique's requirements related to equipment and cost, limitations, and distinctive features are presented here and summarized to guide researchers on what's available and how to select the most appropriate for their studies.

摘要

全球都意识到,许多种类的板鳃亚纲动物(鲨鱼和鳐鱼)具有使其易受过度开发影响的生活史特征。对这些动物的研究至关重要,因为它有助于增加对这些物种的了解并有助于它们的保护。特别是,生长速度、年龄、繁殖力和成熟时的大小是确定板鳃亚纲动物管理和保护策略的关键参数。生物特征数据收集使这些参数能够在种群统计学评估中得以确定和考虑。在过去几十年中,几种测量板鳃亚纲动物大小的方法不断发展,从传统的基于捕获的方法发展到复杂的非侵入性摄影技术。本综述旨在了解和分析目前所有可用于收集板鳃亚纲动物动物测量数据的非侵入性技术,随后突出每种技术的优点和局限性,并对其在实地工作中的应用进行评论。为此,我们挑选了49篇文章,涵盖七种测量技术:使用与个体距离的摄影测量法、条形摄影测量法、激光摄影测量法、立体-DOV、立体-BRUV、立体-ROV和航空摄影测量法。在全球范围内,后四种技术是涉及动物捕获或死亡的方法的绝佳替代方案,因为它们实用、易于使用、微创且可能具有高度准确性。本文介绍并总结了每种技术在设备和成本、局限性以及独特特征方面的要求,以指导研究人员了解现有技术以及如何为其研究选择最合适的技术。

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本文引用的文献

1
Deep Dive Into Noninvasive Biometrics: A Pilot Journey Using Stereo-Video in a Public Aquarium.深入探究非侵入式生物识别技术:在公共水族馆中使用立体视频的试点之旅。
Zoo Biol. 2025 Jan-Feb;44(1):92-97. doi: 10.1002/zoo.21875. Epub 2024 Oct 22.
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Differences in the occurrence and abundance of batoids across an oceanic archipelago using complementary data sources: Implications for conservation.利用互补数据源探讨大洋群岛中鳐类的分布与丰度差异:对保护工作的启示
Ecol Evol. 2021 Nov 18;11(23):16704-16715. doi: 10.1002/ece3.8290. eCollection 2021 Dec.
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Overfishing drives over one-third of all sharks and rays toward a global extinction crisis.过度捕捞导致超过三分之一的鲨鱼和鳐鱼面临全球性灭绝危机。
Curr Biol. 2021 Nov 8;31(21):4773-4787.e8. doi: 10.1016/j.cub.2021.08.062. Epub 2021 Sep 6.
4
Standardized data to support conservation prioritization for sharks and batoids (Elasmobranchii).支持鲨鱼和鳐类(板鳃亚纲)保护优先级划分的标准化数据。
Data Brief. 2020 Sep 24;33:106337. doi: 10.1016/j.dib.2020.106337. eCollection 2020 Dec.
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BRUVS reveal locally extinct shark and the way for shark monitoring in Brazilian oceanic islands.BRUVS 揭示了在巴西海洋岛屿中局部灭绝的鲨鱼和鲨鱼监测方法。
J Fish Biol. 2020 Feb;96(2):539-542. doi: 10.1111/jfb.14228. Epub 2019 Dec 20.
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Morphological differences between coastal bottlenose dolphin (Tursiops aduncus) populations identified using non-invasive stereo-laser photogrammetry.利用非侵入性立体激光摄影测量技术鉴定沿海宽吻海豚(Tursiops aduncus)种群的形态差异。
Sci Rep. 2019 Aug 22;9(1):12235. doi: 10.1038/s41598-019-48419-3.
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Mar Pollut Bull. 2019 May;142:85-92. doi: 10.1016/j.marpolbul.2019.03.018. Epub 2019 Mar 19.
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