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Network thinking in riverscape conservation - A graph-based approach

机译:河流景观保护中的网络思维-基于图的方法

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Graph theoretic approaches have received increased interest recently in landscape planning and conservation in the terrestrial realm, because these approaches facilitate the effective modelling of connectivity among habitats. We examined whether basic principles of graph theory can be extended to other ecosystems. Specifically, we demonstrate how a network-based context can be used for enhancing the more effective conservation of riverine systems. We first show how to use graph theoretic techniques to model riverscapes at the segment level. Then we use a real stream network (Zagyva river basin, Hungary) to examine the topological importance of segments in maintaining riverscape connectivity, using betweenness centrality, a commonly used network measure. Using the undirected graph model of this riverscape, we then prioritize segments for conservation purpose. We examine the value of each of the 93 segments present in the Zagyva river basin by considering the conservation value of local fish assemblages, connectivity and the size of the habitat patches. For this purpose we use the 'integral index of connectivity', a recently advocated habitat availability index. Based on the results the selection of the most valuable habitat segments can be optimized depending on conservation resources. Because of their inherent advantage in the consideration of connectivity relationships, we suggest that network analyses offer a simple, yet effective tool for searching for key segments (or junctions) in riverscapes for conservation and environmental management. Further, although the joint consideration of aquatic and terrestrial networks is challenging, the extension of network analyses to freshwater systems may facilitate the more effective selection of priority areas for conservation in continental areas.
机译:图论理论方法近来对陆地领域的景观规划和保护越来越感兴趣,因为这些方法有助于对生境之间的连通性进行有效建模。我们研究了图论的基本原理是否可以扩展到其他生态系统。具体来说,我们演示了如何将基于网络的上下文用于增强河流系统的更有效保护。我们首先展示如何使用图论技术在网段级别对河流景观进行建模。然后,我们使用中间流中心性(一种常用的网络度量方法),使用真实的河流网络(匈牙利萨吉瓦流域,匈牙利)来检查路段在维护河流景观连通性方面的拓扑重要性。然后,使用该河景的无向图模型,为保护目的对各段进行优先排序。通过考虑当地鱼群的保护价值,连通性和栖息地斑块的大小,我们研究了Zagyva流域中93个区段中每个区段的价值。为此,我们使用“连通性综合指数”,这是最近提倡的栖息地可利用性指数。根据结果​​,可以根据保护资源来选择最有价值的栖息地。由于考虑到连接关系的固有优势,我们建议网络分析提供一种简单而有效的工具来搜索河流景观中的关键路段(或路口),以进行保护和环境管理。此外,尽管联合考虑水生和陆地网络具有挑战性,但将网络分析扩展到淡水系统可能有助于更有效地选择优先区域以保护大陆地区。

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