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A review of approaches for classifying benthic habitats and evaluating habitat quality

机译:底栖生境分类和生境质量评估方法综述

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摘要

We have assessed the current state of knowledge relative to methods used in assessing sub-tidal benthic habitat quality and the classification of benthic habitats. While our main focus is on marine habitat, we extensively draw on knowledge gained in freshwater systems where benthic assessment procedures are at an advanced stage of maturity. We found a broad range of sophistication/complication in terms of the methods applied in assessing and mapping benthic habitats. The simplest index or metric involved some assessment of species richness, while the most complicated required utilizing multi-variate analysis. The simplest mapping attempts equated physical substrate with benthic habitat while the most sophisticated relied on extensive environmental preference and groundtruth data for species of concern. The leading edge of methods for benthic habitat mapping involves combining the advances in optical and acoustic methods that allow for routine classifying and mapping of the seafloor with biological and habitat data for species of concern. The objective of this melding of dispirit methods is to produce benthic habitat maps with broad system wide coverage and sound biological underpinning. It is clear that the disparity in information density between the physical and biological sides of the equation currently hinder applicability and acceptability of benthic habitat mapping efforts. In addition to the lack of basic information on the biological and environmental tolerances of targeted species, the proliferation of metrics for characterizing and assessing biological conditions further clouds the usefulness of any broad scale mapping attempt. The problem of data density mismatch between physical and biological methods will likely not be solved until acoustic methods can routinely resolve the elusive biological components that make a physical substrate a habitat.
机译:我们已经评估了与潮汐底栖生境质量评估和底栖生境分类有关的方法的当前知识水平。尽管我们的主要重点是海洋栖息地,但我们广泛借鉴了在底栖动物评估程序处于成熟阶段的淡水系统中获得的知识。在评估和绘制底栖生境的方法方面,我们发现了各种各样的复杂性/复杂性。最简单的指标或指标涉及对物种丰富度的某种评估,而最复杂的指标或指标则需要使用多变量分析。最简单的制图尝试将物理基质等同于底栖生境,而最复杂的制图则依赖于广泛的环境偏好和相关物种的地面数据。底栖生境制图方法的前沿涉及将光学和声学方法的进步相结合,这些方法可以对海底进行常规分类和制图,并提供有关物种的生物和生境数据。融合绝望方法的目的是制作底栖生物栖息地地图,该地图具有广泛的系统覆盖范围和良好的生物学基础。显然,该方程的物理和生物学方面之间的信息密度差异目前阻碍了底栖生境制图工作的适用性和可接受性。除了缺乏有关目标物种的生物学和环境耐受性的基本信息之外,用于表征和评估生物学条件的度量标准的泛滥进一步掩盖了任何大规模制图尝试的有用性。物理方法和生物学方法之间的数据密度失配问题可能不会得到解决,除非声学方法能够常规解决使物理基质成为栖息地的难以捉摸的生物学成分。

著录项

  • 来源
    《Journal of Environmental Management》 |2004年第3期|p.165-181|共17页
  • 作者

    Diaz RJ; Solan M; Valente RM;

  • 作者单位

    Biological Sciences, Virginia Institute of Marine Science, College of William and Mary, P.O. Box 1346, Route 1208, Greate Road, Gloucester Point, VA 23062, USA. diaz@vims.edu;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境规划与环境管理;
  • 关键词

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