Related Experiment Video
Updated: Feb 6, 2026

Adapting Taylor Dispersion to Measure the Dispersion Coefficient of Electrolyte Solutions via an Accessible Microfluidic Setup
Published on: October 7, 2025
Ocean sprawl facilitates dispersal and connectivity of protected species
Lea-Anne Henry1, Claudia G Mayorga-Adame2, Alan D Fox3
1School of GeoSciences, Grant Institute, James Hutton Road, King's Buildings, University of Edinburgh, Edinburgh, EH9 3FE, United Kingdom. l.henry@ed.ac.uk.
Abstract:
Highly connected networks generally improve resilience in complex systems. We present a novel application of this paradigm and investigated the potential for anthropogenic structures in the ocean to enhance connectivity of a protected species threatened by human pressures and climate change. Biophysical dispersal models of a protected coral species simulated potential connectivity between oil and gas installations across the North Sea but also metapopulation outcomes for naturally occurring corals downstream. Network analyses illustrated how just a single generation of virtual larvae released from these installations could create a highly connected anthropogenic system, with larvae becoming competent to settle over a range of natural deep-sea, shelf and fjord coral ecosystems including a marine protected area. These results provide the first study showing that a system of anthropogenic structures can have international conservation significance by creating ecologically connected networks and by acting as stepping stones for cross-border interconnection to natural populations.
Related Concept Videos
Formation of Species
Facilitated Transport
Facilitated Transport
What is a Species?
Social Facilitation
Distribution and Dispersion

