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Multiparametric monitoring of fish activity rhythms in an Atlantic coastal cabled observatory

机译:大西洋沿海传布学天文台鱼类活动节律的多次监测

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摘要

Cabled video-observatories offer new opportunities to monitor fish species at frequencies and durations never attained before, quantifying the behavioural activities of their individuals, and providing ancillary data to inform stock assessment (in a fishery-independent manner). In this context, our objective was to improve the ecological monitoring capability of SmartBay observatory (20 m depth, Galway Bay, Ireland), through a pilot study dedicated to tracking of fish counts (as a proxy of populations activity rhythms), in a context where species behaviour and consequent community turnover may occur at different temporal cycles (i.e. tidal versus day-night). In order to understand how animals can regulate their behavioural activity upon those cycles, we enforced a time-lapse (1 h interval) image collection and concomitant multiparametric oceanographic plus acoustic data acquisition continuously during 24 h, over 30 days in August 2018 (when turbidity is at minimum). For each image, we classified and then counted all visible fish and derived count time series. Periodogram and waveform analyses were used to calculate their fluctuations' periodicity (i.e. the ruling cycle) and phase (i.e. peak timing in relation to the cycle). A total of 12 marine teleost species were pictured with Trisopterus minutus, Trachurus trachurus and Chelidonichthys lucerna characterized by day-night related rhythms, while others, such as Trisopterus luscus and Gadus morhua, were influenced by the tidal cycle. 24 h count patterns were compared together and investigated for time-based ecological niche-partitioning in a wave and current-affected soundscape. These findings were discussed in relation to the ecology of species and the feasibility of promising observatory-based monitoring applications in fishery assessment practices, when targeted species have commercial value.
机译:Cabled Video-Videoatories提供新的机会,以便在频率和持续时间以前监测鱼类,并衡量其个人的行为活动,并提供辅助数据,以告知股票评估(以渔业无关)。在这方面,我们的目标是通过致力于跟踪鱼类计数(作为人口活动节奏的代理),改善Smartbay天文台(20米深度,戈尔韦湾,爱尔兰)的生态监测能力(作为人口活动节奏的代理),在一个背景下在不同的时间循环中可能发生物种行为和随后的社区营业额(即潮汐与日夜)。为了了解动物如何在这些周期中调节其行为活动,我们在2018年8月30日超过30天内连续执行时间流逝(1小时间隔)图像收集和伴随的多级海洋摄像性和伴随物理学数据(当浊度时至少)。对于每个图像,我们分类,然后计算所有可见的鱼和派生的计数时间序列。期间图和波形分析用于计算它们的波动周期(即裁定循环)和相位(即与循环相关的峰时序)。将共有12种海洋电源物种,Trisopterus minutus,Trachurus trachurus和Chelidonichthys Lucerna以日夜相关的节奏为特征,而其他人则是Trisopterus luscus和Gadus Morhua,受到潮汐循环的影响。将24小时计数模式分在一起,并研究了波浪和受电流影响的声景中基于时间的生态利基分区。当有针对性物种具有商业价值时,有关物种的生态和基于观测所的监测申请的有前途的监测申请的可行性讨论了这些调查结果。

著录项

  • 来源
    《Oceanographic Literature Review》 |2020年第10期|2278-2278|共1页
  • 作者单位

    Marine Science Institute (ICM- CSIC) of Barcelona Spain;

    Marine Science Institute (ICM- CSIC) of Barcelona Spain;

    Marine Science Institute (ICM- CSIC) of Barcelona Spain;

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  • 正文语种 eng
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