Related Experiment Video
Updated: Oct 9, 2026

Coral Reef Arks: An In Situ Mesocosm and Toolkit for Assembling Reef Communities
Published on: January 6, 2023
Density-dependent aggregation underlies spatial self-organization in coastal dunes
Paul M J Berghuis1,2, Koen Siteur3, Valérie C Reijers4
1Department of Coastal Systems, Royal Netherlands Institute for Sea Research, Den Burg 1790 AB, The Netherlands.
Abstract:
Across coastal ecosystems, habitat-forming organisms interact with wind and water to generate biogeomorphic feedbacks that produce spatially patterned landscapes. Such spatial patterns can emerge through different self-organizing mechanisms, with contrasting implications for ecosystem resilience. Here, we test whether spatial dynamics in developing coastal dunes are better explained by scale-dependent feedback or by density-dependent aggregation (DDA), the latter being a more recently proposed mechanism of spatial self-organization. Using high-resolution aerial imagery and coupled time series of elevation, we tracked the spatial dynamics of dune-grass patches and sand accumulation during early dune development. Rather than converging toward a dominant size or spacing, both dune-grass patches and the dune bodies they collectively form coarsened through time, with self-similar size distributions shifting toward larger scales. Sand accumulation was disproportionately concentrated in already-dense vegetation, with a density-growth relationship that changes sign at a critical threshold. Together, these findings are consistent with DDA rather than scale-dependent feedback as the dominant mechanism of spatial self-organization in developing coastal dunes. The resulting density-growth relationship implies threshold-dependent resilience to local disturbances. Once local vegetation density falls below a critical point, decline is self-reinforcing rather than self-dampening, with direct consequences for how dune disturbance and recovery are understood and managed.
More Related Videos
Related Concept Videos
Distribution and Dispersion
Shape and Texture of Coarse Aggregate
Bulk Density of Aggregate
Most natural mineral aggregates, like sand and gravel,...
Microbial Mats
Frequency-dependent Selection
Cohesion
On a surface,...

