12/03/2026
Our new publication is out! You can now download the full article in the link below.
How does climate variability reshape where fish larvae travel in the ocean? In our latest study, we developed the first ENSO-resolved biophysical model of ichthyoplankton dispersal in the Sulu Sea, combining a validated hydrodynamic model with Lagrangian particle tracking to trace the journeys of round scad larvae.
Our results show how ENSO phases and monsoon-driven circulation can redirect larval pathways, alter retention zones, and reshape connectivity across the northern Sulu Seaโprocesses that ultimately influence recruitment and fisheries sustainability.
By linking climate variability, ocean circulation, and larval transport, this work provides a new scientific foundation for climate-responsive fisheries management in the Philippines.
This paper is based on the MSc thesis of our very own, Edcel R. Sudaria.
Excited to share this work with the community and contribute to a deeper understanding of climate-sensitive marine connectivity in our region.
Ichthyoplankton dispersal influences recruitment and sustainability of economically important fish populations. Illegal, unreported, and unregulated fishing ...