首页> 外文期刊>Science of the total environment >The performance, application and integration of various seabed classification systems suitable for mapping Posidonia oceanica (L.) Delile meadows
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The performance, application and integration of various seabed classification systems suitable for mapping Posidonia oceanica (L.) Delile meadows

机译:各种海底分类系统的性能,应用和集成,可用于绘制海洋波塞冬草(L.)Delile草地

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In the context of current global environmental changes, mapping and monitoring seagrass meadows have become highly important for management and preservation of coastal zone ecosystems. The purpose of this research was to determine the numerical precision of various cost-effective benthic habitat mapping techniques and their suitability for mapping and monitoring of Posidonia oceanica meadows in the Croatian Adriatic. We selected ultra-high resolution aerial imagery, single-beam echo sounder (SBES) seabed classification system from Quester Tangent Co. (QTC), and surface based underwater videography as affordable, non-destructive and simple to use systems for data acquisition. The ultra-high resolution digital imagery was capable of detecting P. oceanica meadows up to 4 m depth with 94% accuracy, from 4 m to 12.5 m depth the accuracy dropped to app. 76%, and from 12.5 to 20 m the system was only capable of distinguishing seabed biota from substrata, though with 97% accuracy. The results of the QTC system showed over 90% detection accuracy for Cymodocea nodosa covered seabed, excellent separation capabilities (>92%) of different sediment types (slightly gravelly sand, gravelly muddy sand and slightly gravelly muddy sand) and reasonable accuracy for mapping underwater vegetation regardless of the bathymetric span. The system proved incapable of separating P. oceanica from dense macroalgae on the same type of substratum. Surface-based underwater videography demonstrated great potential for estimating P. oceanica cover in a sampled region using either a single human rater or a computer estimate. The consistency between two human scorers in evaluating P. oceanica bottom coverage was near perfect (>98%) and high between digital and human scorers (80%). The results indicate that although the selected systems are suitable for mapping seagrasses, they all display limitations in either detection accuracy or spatial coverage, which leads to a conclusion that suitable system integration is essential for producing high quality seagrass spatial distribution maps.
机译:在当前全球环境变化的背景下,对海草草甸进行制图和监测对于管理和保护沿海地区生态系统已变得非常重要。这项研究的目的是确定各种具有成本效益的底栖生境制图技术的数值精度,以及它们对克罗地亚亚得里亚海大洋波西多尼亚草甸的制图和监测的适用性。我们选择了Quester Tangent Co.(QTC)的超高分辨率航拍图像,单波束回声测深仪(SBES)海床分类系统以及基于地面的水下摄像技术,作为经济实惠,无损且易于使用的数据采集系统。超高分辨率数字图像能够以94%的准确度检测到4 m深度至4 m至12.5 m深度的海洋体育草地,准确性下降至app。尽管准确度为97%,但在12.5至20 m的范围内,该系统只能分辨海底生物群的比例为76%。 QTC系统的结果显示,结节藻覆盖海床的检测精度超过90%,不同沉积物类型(轻度砂砾,重度浑浊的沙子和轻度重度浑浊的沙子)具有出色的分离能力(> 92%),并且在水下绘制地图的准确性较高植被,无论测深跨度如何。事实证明,该系统无法在同一类型的基质上从稠密的大型藻类中分离出海洋假单胞菌。基于地面的水下录像显示出了巨大的潜力,可使用单个人类评级者或计算机估计值来估计采样区域中的海洋体育。两个人类记分员在评估大洋彼岸花底部覆盖率方面的一致性接近完美(> 98%),而数字和人类记分员之间的一致性则很高(80%)。结果表明,尽管所选系统适合于绘制海草,但它们都显示出检测精度或空间覆盖率方面的局限性,从而得出结论,适当的系统集成对于生成高质量的海草空间分布图至关重要。

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