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Mapping Shallow Coastal Ecosystems: A Case Study of a Rhode Island Lagoon

机译:绘制浅海沿海生态系统图:以罗德岛泻湖为例

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摘要

In order to effectively study, manage, conserve, and sustain shallow-subtidal ecosystems, a spatial inventory of the basic resources and habitats is essential. Because of the complexities of shallow-subtidal substrates, benthic communities, geology, geomorphology, and water column attributes, few standard protocols are fully articulated and tested that describe the mapping and inventory processes and accompanying interpretations. In this paper, we describe a systematic approach to map Rhode Island’s shallow-subtidal coastal lagoon ecosystems, by using, integrating, and reconciling multiple data sets to identify the geology, soils, biological communities, and environments that, collectively, define each shallow-subtidal habitat. We constructed maps for these lagoons via a deliberate, step by step approach. Acoustics and geostatistical modeling were used to create a bathymetric map. These data were analyzed to identify submerged landforms and geologic boundaries. Geologic interpretations were verified with video and grab samples. Soils were sampled, characterized, and mapped within the context of the landscape and geologic boundaries. Biological components and distributions were investigated using acoustics, grab samples, video, and sediment profile images. Data sets were cross-referenced and ground-truthed to test for inconsistencies. Maps and geospatial data, with Federal Geographic Data Committee (FGDC)-compliant metadata, were finalized after reconciling data set inconsistencies and made available on the Internet. These data allow for classification in the revised Coastal and Marine Ecological Classification Standard (CMECS). With these maps, we explored potential relationships among and between physical and biological parameters. In some cases, we discovered a clear match between habitat measures; in others, however, relationships were more difficult to distinguish and require further investigation.
机译:为了有效地研究,管理,保护和维持浅潮下的生态系统,基本资源和栖息地的空间清单至关重要。由于浅潮下带基质,底栖生物群落,地质,地貌和水柱属性的复杂性,很少有充分的标准协议可以被充分表达和测试,这些协议描述了测绘和盘存过程以及相应的解释。在本文中,我们通过使用,整合和协调多个数据集以识别共同定义每个浅水区的地质,土壤,生物群落和环境,描述了一种系统的方法来绘制罗德岛州的浅潮下海岸泻湖生态系统图。潮下栖息地。我们通过有步骤的步骤为这些泻湖绘制了地图。声学和地统计模型用于创建测深图。对这些数据进行了分析,以确定被淹没的地貌和地质边界。通过视频和抓取样品验证了地质解释。在景观和地质边界的背景下对土壤进行了采样,特征化和制图。使用声学,抓样,视频和沉积物剖面图像研究了生物成分和分布。交叉引用数据集并进行真实测试,以测试不一致之处。在调和数据集不一致之处后,最终确定了具有联邦地理数据委员会(FGDC)兼容元数据的地图和地理空间数据,并在Internet上提供了这些数据。这些数据允许在修订的沿海和海洋生态分类标准(CMECS)中进行分类。借助这些地图,我们探索了物理和生物学参数之间以及它们之间的潜在关系。在某些情况下,我们发现栖息地措施之间存在明显的匹配。然而,在另一些情况下,人际关系则更难区分,需要进一步调查。

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