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Multi-scale habitat patch modeling: Integrating landscape pattern, habitat suitability and population dynamics with implications for ecology and conservation.

机译:多尺度生境斑块建模:整合景观格局,生境适应性和种群动态,对生态和保护产生影响。

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摘要

It is well recognized by landscape ecological theory that habitat patches are hierarchically organized within landscapes, and that different ecological processes will occur within patches at different spatial scales. However, it is difficult to analyze relationships between ecological processes and habitat patches across spatial scales because currently available geographic patch delineation techniques are insufficient. This dissertation presents a novel habitat patch delineation algorithm, called PatchMorph, which uses geographic information systems (GIS) analysis to hierarchically delineate patches from a habitat map based on organism-specific thresholds for patch perception and utilization (Chapter 1). This algorithm is based on the theory of organism-specific thresholds for gaps between patches and thin spurs extruding out from the core of patches. The PatchMorph algorithm is then applied to delineate habitat patches at two spatial scales relevant to the California state-listed threatened western yellow-billed cuckoo (Coccyzus americanus occidentalis) nesting in forest patches along the Sacramento River, California (Chapter 2). By statistically relating patch characteristics to the presence of this species, this chapter shows that the area of cottonwood forest measured at the finest spatial scale of patches was the most important factor determining yellow-billed cuckoo presence. Then, to establish an explicit relationship between the PatchMorph algorithm and population ecological theory, neutral landscapes were used to compare PatchMorph to an individual-based and spatially-explicit population model that simulates randomized movement, reproduction, and mortality (Chapter 3). The results show that the best correlating patch gap threshold values were most influenced by the population movement distance and the level of habitat fragmentation (i.e., contagion), while the best correlating patch spur threshold values were most influenced by movement distance and reproductive probability. Finally, Chapter 4 presents a population viability analysis (PVA) for bank swallow (Riparia riparia) nesting along the Sacramento River. This PVA is based on river bank patches delineated using GIS analysis, and incorporates the effects of habitat loss, density dependence, site fidelity, and stochasticity in survival and fecundity. The results show that the estimated viability of this population has decreased 40-60% due to habitat loss caused by the installation of bank erosion control projects (bank revetment). Taken together, these chapters provide a step forward in the integration landscape ecological patterns with ecological processes. They show that habitat suitability and population dynamics can be explicitly related to, and explained by habitat patches delineated at specific spatial scales.
机译:景观生态学理论已经很好地认识到,栖息地斑块是在景观内分层组织的,并且在不同空间尺度的斑块内会发生不同的生态过程。但是,由于当前可用的地理斑块描绘技术不足,因此难以分析整个空间尺度上的生态过程与栖息地斑块之间的关系。本文提出了一种新颖的栖息地斑块划定算法,称为PatchMorph,该算法使用地理信息系统(GIS)分析根据特定于斑块的感知和利用的特定于生物的阈值,从栖息地地图上划定斑块(第1章)。该算法基于特定于有机体的阈值理论,该阈值适用于斑块和从斑块核心伸出的细刺之间的间隙。然后将PatchMorph算法应用于两个空间尺度上的栖息地斑块的描画,这些空间尺度与加利福尼亚州列出的濒危的西部黄嘴杜鹃(Coccyzus americanus occidentalis)嵌套在加利福尼亚州萨克拉门托河沿岸的森林斑块中(第2章)。通过将斑块特征与该物种的存在进行统计关联,本章表明,以斑块的最佳空间尺度测量的杨木林面积是决定黄嘴杜鹃存在的最重要因素。然后,为了在PatchMorph算法和种群生态学理论之间建立明确的联系,使用中性景观将PatchMorph与基于个体且空间明晰的种群模型进行比较,该模型模拟随机运动,繁殖和死亡率(第3章)。结果表明,最佳相关的斑块间隙阈值受种群移动距离和生境破碎化程度(即传染)的影响最大,而最佳相关的斑块杂草阈值受移动距离和繁殖概率的影响最大。最后,第4章介绍了沿萨克拉曼多河筑巢的河燕(Riparia riparia)的种群生存力分析(PVA)。该PVA基于使用GIS分析确定的河岸斑块,并结合了生境丧失,密度依赖性,站点保真度以及生存和繁殖力随机性的影响。结果表明,由于安装河岸侵蚀控制项目(河岸护岸)导致栖息地丧失,该种群的估计生存能力已降低40-60%。总而言之,这些章节为整合景观生态格局与生态过程提供了新的一步。他们表明,栖息地的适宜性和种群动态可以与特定的空间尺度上描绘的栖息地斑块明确相关,并可以用它们解释。

著录项

  • 作者

    Girvetz, Evan Hartunian.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Biology Ecology.;Geodesy.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 139 p.
  • 总页数 139
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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