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Schouten, R.

Publications and source records attributed to Schouten, R..

2 recordsLinked to original sources

A unified framework for prioritizing habitat and connectivity conservation through analytical sensitivity

ContextConnected habitats underpin key ecological processes such as movement, gene flow, and recolonization. As land-use change accelerates habitat loss and fragmentation, there is an urgent need to identify priority areas for conserving habitat and maintaining connectivity. ObjectivesWe develop a unified spatial prioritization framework for functional connectivity that is grounded in metapopulation theory, accommodates species-specific movement behavior, and captures the dual role of landscape units as both habitat providers and connectivity facilitators. MethodsWe formalize the landscape as a network in which nodes represent spatial units characterized by habitat quality and edges encode permeability for movement. Pairwise ecological proximities are defined from species-specific movement capacity and an ecological distance that integrates costs across paths, expressed as least-cost distance, effective resistance, expected cost, or survival probability depending on the movement ecology of the focal species. From these proximities and node qualities, we construct the landscape matrix. Based on the sensitivity of the landscape matrix to local perturbations in habitat quality or permeability, we develop a prioritization approach that identifies where local changes most strongly influence landscape-scale habitat connectivity. ResultsOur framework unifies widely used landscape connectivity metrics across the full spectrum of movement models, including least-cost paths, circuit theory, spatial absorbing Markov chains, and randomized shortest paths. We show that summation-based metrics serve as computationally efficient approximations of metapopulation capacity, enabling evaluation of functional connectivity in large, high-resolution landscapes. We derive sensitivities for these metrics with respect to habitat quality and permeability and show that they correspond to two families of centrality measures: a closeness-like centrality reflecting the influence of habitat quality, and a betweenness-like centrality reflecting the influence of habitat permeability. Applying our prioritization approach based on these sensitivities to a case study involving wild reindeer in Norway, we identify high-value habitat and key movement corridors that closely align with a reference node-removal approach while reducing computation time by several orders of magnitude. ConclusionsBy linking metapopulation theory with sensitivity analysis, our work provides a unified and scalable framework for spatial prioritization of functional connectivity. It supports evidence-based management of fragmented landscapes and advances both theoretical understanding and practical application in landscape ecology.

ecology↗

Spatial Biodiversity Indicators and a Composite Index for Conservation Prioritization in Switzerland

Spatially explicit indicators that quantify to which extent landscapes support biodiversity are essential for guiding evidence-based conservation planning. Here, we present a 25-meter resolution dataset for Switzerland, encompassing three key biodiversity indicators-- Complementarity, Extinction Risk, and Ecological Connectivity--developed across 17 major taxonomic groups, using habitat suitability maps for approximately 7,500 individual species. These three indicators capture (1) the contribution of landscapes to taxonomic, functional, and phylogenetic diversity, (2) species vulnerability to extinction and (3) ecological connectivity. Outputs are provided for both terrestrial and aquatic realms, including versions adjusted for species richness, and integrated into composite indices. In total, 272 spatial layers were produced and made openly accessible. Relationships among the three indicators were analyzed to assess their distinct contributions, and expert-based validations were performed to evaluate their ecological plausibility and relevance for conservation applications. This dataset provides a robust foundation to support spatial planning and conservation decision-making in Switzerland and can be used as a blueprint for analogue integration in other countries.

ecology↗