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首页> 外文期刊>ICES Journal of Marine Science >The potential of video imagery from worldwide cabled observatory networks to provide information supporting fish-stock and biodiversity assessment
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The potential of video imagery from worldwide cabled observatory networks to provide information supporting fish-stock and biodiversity assessment

机译:来自全球联网天文台网络的视频图像的潜力,提供支持鱼类和生物多样性评估的信息

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摘要

Seafloor multiparametric fibre-optic-cabled video observatories are emerging tools for standardized monitoring programmes, dedicated to the production of real-time fishery-independent stock assessment data. Here, we propose that a network of cabled cameras can be set up and optimized to ensure representative long-term monitoring of target commercial species and their surrounding habitats. We highlight the importance of adding the spatial dimension to fixed-point-cabled monitoring networks, and the need for close integration with Artificial Intelligence pipelines, that are necessary for fast and reliable biological data processing. We then describe two pilot studies, exemplary of using video imagery and environmental monitoring to derive robust data as a foundation for future ecosystem-based fish-stock and biodiversity management. The first example is from the NE Pacific Ocean where the deep-water sablefish (Anoplopoma fimbria) has been monitored since 2010 by the NEPTUNE cabled observatory operated by Ocean Networks Canada. The second example is from the NE Atlantic Ocean where the Norway lobster (Nephrops norvegicus) is being monitored using the SmartBay observatory developed for the European Multidisciplinary Seafloor and water column Observatories. Drawing from these two examples, we provide insights into the technological challenges and future steps required to develop full-scale fishery-independent stock assessments.
机译:Seafloor Multiparametric光纤 - 联网视频观察仪是标准化监控程序的新兴工具,致力于生产实时渔业无关的股票评估数据。在这里,我们建议设置有线摄像机网络,以确保目标商业物种及其周围栖息地的代表性长期监测。我们突出了将空间维度添加到固定点线监控网络的重要性,以及与人工智能流水线紧密集成的,这对于快速可靠的生物数据处理是必要的。然后,我们描述了两项试验研究,使用视频图像和环境监测的示例,从而导致强大的数据作为基于生态系统的鱼类和生物多样性管理的基础。第一个例子来自NE太平洋,自2010年以来,通过海洋网络加拿大经营的海王星联网天文台自2010年被监测了深水灼热鱼(Anoplopoma Fimbria)。第二个例子来自挪威龙虾(Nephrops Norvegicus)正在使用为欧洲多学科海底和水柱观测者开发的智能银行天文台监测挪威龙虾(Nephrops Norvegicus)。从这两个例子中绘制,我们提供了开展全面渔业股票评估所需的技术挑战和未来步骤的见解。

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