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首页> 外文期刊>Journal of Shellfish Research >A COMPARISON OF DROP CAMERA AND DIVER SURVEY METHODS TO MONITOR ATLANTIC SEA SCALLOPS (PLACOPECTEN MAGELLANICUS) IN A SMALL FISHERY CLOSURE
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A COMPARISON OF DROP CAMERA AND DIVER SURVEY METHODS TO MONITOR ATLANTIC SEA SCALLOPS (PLACOPECTEN MAGELLANICUS) IN A SMALL FISHERY CLOSURE

机译:小型渔业封闭滴电池和潜水探测方法的比较监测大西洋海扇(Placopecten Magellanicus)

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摘要

Large-scale fishing closures are a leading tool in the spatial management of global ocean resources. This is exemplified in the U.S. Atlantic sea scallop (Placopecten magellanicus) fishery which uses a rotational scheme of temporary closed areas in both offshore and nearshore waters. The closed areas are generally hundreds to thousands square kilometers, but a group of inshore commercial scallop harvesters were interested in the effect of closing a much smaller area (3 km(2)), which had sustained valuable harvest before recent poor yields. To describe changes in scallop abundance and size within and around this closure, two independent surveys, a drop camera and diver transect, were conducted through industry-academic collaboration. In addition, this unusual union of a predominately offshore method, the drop camera, and inshore method, divers, was used to better interpret the results of each method. The drop camera survey results suggested that the closure significantly increased the biomass of exploitable scallops, showing that even closure orders of magnitude smaller than commonly used for scallops can be effective. Although the dive survey did not show this, understanding the uncertainties of each method helped resolve this discrepancy. Drop camera densities were calculated from a broader spatial area more representative of the entire area with increased sample size. By contrast, the dive survey provided an intensive description of scallops at each individual survey site. Combining a drop camera survey with dive stations to collect scallop measurements would provide densities from a spatial scale representative of the study area while improving shell height frequency estimation and providing biological data. In addition, this project demonstrated how stakeholder engagement supported by academic institutions and fishery managers can allow intensive monitoring of small fishery closed areas outside of government assessments.
机译:大型捕鱼封闭是全球海洋资源空间管理的领先工具。这在美国大西洋海扇贝(Placopecten Magellanicus)渔业中举例说明,该渔业在海上和近岸水域使用临时封闭区域的旋转方案。封闭的区域一般是数百至数千平方公里,但一群近孔商业扇贝收获者对截止更小的区域(3公里(2))的影响感兴趣,这在近期贫困收益率之前持续了宝贵的收获。为了描述扇贝丰富和围绕这种关闭内部和周围的尺寸的变化,通过工业学术合作进行了两个独立的调查,滴眼镜和潜水员横断面。此外,这种不寻常的联盟主要是离岸方法,滴电相机和近似方法,潜水员,用于更好地解释每种方法的结果。掉落摄像头调查结果表明,封闭件显着增加了可利用扇贝的生物质,表明甚至比普通用于扇贝常用的数量级比甚至闭合数量令可以有效。虽然潜水调查没有显示出来,但了解每个方法的不确定性有助于解决这种差异。从整个区域的更广泛的空间区域计算掉落摄像机密度,其中样本大小增加。相比之下,潜水调查提供了对每个调查网站的扇贝的密集描述。结合潜水站的潜水站进行潜水站收集扇贝测量将提供来自研究区域的空间规模的密度,同时改善壳体高度估计和提供生物数据。此外,该项目还表明了学术机构和渔业经理的利益相关者参与如何,可以在政府评估之外密集监测小型渔业封闭区域。

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