Sonophore enables autonomous observation of micronekton communities in the ocean twilight zone

R Ryan A. Downie P Peter Jansen G Gavin J. Macaulay Y Yoann Ladroit H Heidi R. Pethybridge S Simon J. Nicol C Campbell R. Davies

Abstract

Abstract The future productivity of pelagic ecosystems and fisheries globally remains uncertain due to a lack of data on mid-trophic mesopelagic micronekton communities. Here, we demonstrate that integrating readily available autonomous profiling floats with autonomous echosounders enables vertically resolved abundance estimates of mesopelagic micronekton communities, a platform we are naming the “Sonophore”. This successful demonstration is a first step towards addressing critical data gaps identified by fisheries management, earth system and ecosystem modelling communities. With planned engineering enhancements, this platform offers a scalable solution for rapid, cost-effective, year-round monitoring of the planet’s largest vertebrate (but deeply uncertain) biomass. The platform is specifically designed for long-term monitoring of remote and spatially extensive oceanic habitats of the global ocean, without the need for large, expensive research vessels.

Article Details

Volume / Issue Vol. 16, Issue 1
Published March 02, 2026
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (7)

R

Ryan A. Downie

P

Peter Jansen

G

Gavin J. Macaulay

Y

Yoann Ladroit

H

Heidi R. Pethybridge

S

Simon J. Nicol

C

Campbell R. Davies