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- W1966168558 abstract "Graph theory, network theory, and circuit theory are increasingly being used to quantify multiple aspects of habitat connectivity and protected areas. There has been an explosive proliferation of network (connectivity) measures, resulting in over 60 measures for ecologists to now choose from. Conceptual clarification on the ecological meaning of these network measures and their interrelationships is overdue. We present a framework that categorizes network measures based on the connectivity property that they quantify (i.e., route-specific flux, route redundancy, route vulnerability, and connected habitat area) and the structural level of the habitat network to which they apply. The framework reveals a lack of network measures in the categories of route-specific flux among neighboring habitat patches and route redundancy at the level of network components. We propose that network motif and path redundancy measures can be developed to fill the gaps in these categories. The value of this framework lies in its ability to inform the selection and application of network measures. Ultimately, it will allow a better comparison among graph, network, and circuit analyses, which will improve the design and management of connected landscapes." @default.
- W1966168558 created "2016-06-24" @default.
- W1966168558 creator A5021502754 @default.
- W1966168558 creator A5049801650 @default.
- W1966168558 creator A5061454835 @default.
- W1966168558 date "2011-04-01" @default.
- W1966168558 modified "2023-10-17" @default.
- W1966168558 title "Connectivity for conservation: a framework to classify network measures" @default.
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- W1966168558 doi "https://doi.org/10.1890/09-2190.1" @default.
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