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Remote electronic monitoring as a potential alternative to on-board observers in small-scale fisheries

机译:远程电子监控作为小规模渔业的板载观察者的潜在替代品

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Small-scale fisheries can greatly impact threatened marine fauna. Penes small-scale elasmobranch gillnet fishery captures thousands of sharks and rays each year, and incidentally captures sea turtles, marine mammals and seabirds. We assessed the ability of a dedicated fisheries remote electronic monitoring (REM) camera to identify and quantify captures in this fishery by comparing its performance to on-board observer reports. Cameras were installed across five boats with a total of 228 fishing sets monitored. Of these, 169 sets also had on-board fisheries observers present. The cameras were shown to be an effective tool for identifying catch, with & 90% detection rates for 9 of 12 species of elasmobranchs caught. Detection rates of incidental catch were more variable (sea turtle = 50%; cetacean = 80%; pinniped = 100%). The ability to quantify target catch from camera imagery degraded for fish quantities exceeding 15 individuals. Cameras were more effective at quantifying rays than sharks for small catch quantities (x &= 15 fish), whereas size affected camera performance for large catches (x & 15 fish). Our study showed REM to be effective in detecting and quantifying elasmobranch target catch and pinniped bycatch in Peru's small-scale fishery, but not, without modification, in detecting and quantifying sea turtle and cetacean bycatch. We showed REM can provide a time-and cost-effective method to monitor target catch in small-scale fisheries and can be used to overcome some deficiencies in observer reports. With modifications to the camera specifications, we expect performance to improve for all target catch and bycatch species.
机译:小规模的渔业可以极大地影响威胁的海洋动物群。 Penes小型Elasmrochranch Gillnet渔业每年捕获数千个鲨鱼和光线,而且偶然捕获海龟,海洋哺乳动物和海鸟。我们评估了专用渔业远程电子监控(REM)相机通过将其对板上观察者报告的性能进行比较来识别和量化捕获的能力。摄像机安装在五艘船上,每个钓鱼套装共有228艘。其中,169套也有船上渔业观察员。相机被证明是用于识别捕获的有效工具,具有& 90%的捕获12种Elasmobranchs的检测率。偶然捕获的检测率更具变量(海龟= 50%; Cetacean = 80%; Pinniped = 100%)。从相机图像量化目标捕获的能力降低了超过15个体的鱼类量。相机在量化光线比鲨鱼更有效(x& = 15条鱼),而大小受到大型捕获的相机性能(x& 15条鱼)。我们的研究表明,在秘鲁的小规模渔业中检测和定量Elasmobranch目标捕获和钉子百分之规,但没有修改,在没有修改,在检测和定量海龟和鲸类兼捕。我们展示了REM可以提供时间和经济高效的方法来监控小规模渔业的目标捕获,并且可用于克服观察者报告中的一些缺陷。通过对相机规格的修改,我们预计绩效可以改善所有目标捕获和兼捕物种。

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