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首页> 外文期刊>Ecological indicators >Mapping changes to vegetation pattern in a restoring wetland: Finding pattern metrics that are consistent across spatial scale and time
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Mapping changes to vegetation pattern in a restoring wetland: Finding pattern metrics that are consistent across spatial scale and time

机译:在恢复湿地中绘制植被格局变化图:寻找在空间尺度和时间上一致的格局指标

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摘要

Tidal salt marshes in the San Francisco Estuary region display heterogeneous vegetation patterns that influence wetland function and provide adequate habitat for native or endangered wildlife. In addition to analyzing the extent of vegetation, monitoring the dynamics of vegetation pattern within restoring wetlands can offer valuable information about the restoration process. Pattern metrics, derived from classified remotely sensed imagery, have been used to measure composition and configuration of patches and landscapes, but they can be unpredictable across scales, and inconsistent across time. We sought to identify pattern metrics that are consistent across spatial scale and time - and thus robust measures of vegetation and habitat configuration - for a restored tidal marsh in the San Francisco Bay, CA, USA. We used high-resolution (20 cm) remotely sensed color infrared imagery to map vegetation pattern over 2 years, and performed a multi-scale analysis of derived vegetation pattern metrics. We looked at the influence on metrics of changes in grain size through resampling and changes in minimum mapping unit (MMU) through smoothing. We examined composition, complexity, connectivity and heterogeneity metrics, focusing on perennial pickleweed (Sarcocornia pacifica), a dominant marsh plant. At our site, pickleweed patches grew larger, more irregularly shaped, and closely spaced over time, while the overall landscape became more diverse. Of the two scale factors examined, grain size was more consistent than MMU in terms of identifying relative change in composition and configuration of wetland marsh vegetation over time. Most metrics exhibited unstable behavior with larger MMUs. With small MMUs, most metrics were consistent across grain sizes, from fine (e.g. 0.16 m2) to relatively large (e.g. 16m2) pixel sizes. Scale relationships were more variable at the landcover class level than at the landscape level (across all classes). This information may be useful to applied restoration practitioners, and adds to our general understanding of vegetation change in a restoring marsh.
机译:旧金山河口地区的潮汐盐沼显示出异质性植被格局,影响湿地功能并为本地或濒临灭绝的野生生物提供充足的栖息地。除了分析植被的范围外,监测恢复湿地内植被格局的动态还可以提供有关恢复过程的宝贵信息。图案量度源自分类的遥感影像,已用于测量斑块和景观的组成和配置,但它们在各个尺度上可能是不可预测的,并且在时间上可能会不一致。我们力图确定出在空间尺度和时间上一致的模式指标,从而确定植被和生境配置的可靠度量标准,以用于美国加利福尼亚州旧金山湾恢复的潮汐沼泽。我们使用高分辨率(20 cm)遥感彩色红外图像绘制了两年来的植被格局图,并对派生的植被格局指标进行了多尺度分析。我们研究了通过重新采样对晶粒尺寸变化指标的影响,以及通过平滑处理对最小映射单位(MMU)变化的影响。我们研究了多年生杂草(Sarcocornia pacifica)(一种优势沼泽植物)的组成,复杂性,连通性和异质性指标。在我们的站点上,随着时间的推移,杂草丛生越来越大,形状更不规则并且间隔很近,而总体景观却变得更加多样化。在确定的两个尺度因子中,就确定湿地沼泽植被的组成和构型随时间的相对变化而言,晶粒尺寸比MMU更一致。大多数指标在使用较大的MMU时表现出不稳定的行为。对于较小的MMU,从细粒度(例如0.16平方米)到相对较大的像素(例如16平方米),大多数指标在整个晶粒尺寸上都是一致的。在土地覆盖物级别上,比例关系比景观级别(在所有级别上)变化更大。这些信息可能对应用恢复从业者有用,并增加了我们对恢复沼泽中植被变化的一般理解。

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