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Ability of spatial indicators to detect geographic changes (shift, shrink and split) across biomass levels and sample sizes

机译:空间指标能够在生物质水平和样本尺寸上检测地理变化(移位,缩小和分裂)

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摘要

Spatial indicators are widely used to monitor species and are essential to management and conservation. In the present study, we tested the ability of 11 spatial indicators to quantify changes in species' geographic patterns: (1) spatial displacement of a patch of biomass ('shift'), (2) a spatial decrease in a patch, accompanied either by a loss of biomass ('shrink0') or (3) a relocation of the same biomass ('shrink1'), and (4) splitting of a patch into smaller patches ('split'). The geographic changes were simulated by manipulating the spatial distributions of the demersal species (observed during bottom trawl surveys). Hence, the spatial distributions of the latter being used as input data on which the manipulations were done. Additionally, other aspects of the indicators affecting the responses to the geographic changes were also tested, (1) homogeneous increase in biomass throughout the patch and (2) different sample sizes.The center of gravity (defined by latitude and longitude) was the only indicator that accurately detected the 'shift' in biomass. The index of aggregation identified a decrease in the area and biomass of the main biomass patch ('shrink0'), while the Gini index, equality area and spreading area were accurately identified a decrease in the area of the main biomass patch when total biomass did not decreased ('Shrink1'). Inertia and isotropy responded to all geographic changes, except for those in biomass or distribution area. None of the indicators successfully identified 'split' process. Likewise, one of the indicators were sensitive to a homogeneous increase in biomass or the type of spatial distribution. Overall, all indicators behaved similarly well when sample sizes exceeded 40 stations randomly located in the area. The framework developed provides an accessible and simple approach that can be used to evaluate the ability of spatial indicators to identify geographic processes using empirical data and can be extended to other indicators or geographic processes. We discuss perspectives of the development of spatial indicators especially within the application of EU's Marine Strategy Framework Directive.
机译:空间指标广泛用于监测物种,对管理和保护至关重要。在本研究中,我们测试了11个空间指标的能力来量化物种地理图案的变化:(1)生物质斑块的空间位移('换档'),(2)贴片的空间减少,伴随通过生物质('收缩0')或(3)迁移相同的生物量('收缩1'),(4)将贴片分裂成较小的贴片('拆分')。通过操纵脱歧物种的空间分布(在底部拖网调查期间观察)来模拟地理变化。因此,后者的空间分布用作完成操纵的输入数据。此外,还测试了影响对地理变化的反应的指标的其他方面,(1)在整个贴片中的生物量和(2)不同的样品尺寸。重心(由纬度和经度限定)是唯一的准确检测到生物质中“换档”的指示器。聚集指数鉴定了主要生物质贴片('收缩0')的区域和生物质的减少,而当总生物质的情况下,准确地确定了基尼指数,平等面积和扩散区域的主要生物质贴片区域的降低没有减少('收缩1')。惯性和各向同性反应所有地理变化,除了生物质或分配区域之外。没有指标成功确定了“分裂”过程。同样,其中一个指标对生物质的均匀增加或空间分布的类型敏感。总体而言,当样本大小超过该地区随机的样品尺寸超过40个站时,所有指标都表现得很好。该框架开发提供了一种可访问和简单的方法,可用于评估空间指示器使用经验数据识别地理过程的能力,可以扩展到其他指标或地理过程。我们讨论了欧盟海洋战略框架指令的适用范围内空间指标发展的观点。

著录项

  • 来源
    《Ecological indicators》 |2020年第8期|106393.1-106393.8|共8页
  • 作者单位

    IFREMER Ctr Atlantique French Res Inst Explorat Sea Dept Ecol & Modeles Halieut EMH Rue Ile Yeu BP 21105 F-44311 Nantes 3 France|Univ Algarve Ctr Ciencias Mar CCMAR Campus Gambelas P-8005139 Faro Portugal|FCUL Fac Ciencias Univ Lisboa MARE ULisboa Marine & Environm Sci Ctr P-1749016 Lisbon Portugal;

    Univ Montpellier MARBEC IFREMER IRD CNRS Sete France;

    IFREMER Ctr Atlantique French Res Inst Explorat Sea Dept Ecol & Modeles Halieut EMH Rue Ile Yeu BP 21105 F-44311 Nantes 3 France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Spatial metrics; Monitoring; Marine conservation; Fisheries management;

    机译:空间指标;监测;海洋保护;渔业管理;

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