Visualizing the barely detectable: Particle characteristics of the elusive aquatic gel phase in the northeastern subtropical Atlantic

Marine gels constitute a large yet poorly explored ocean carbon pool. Shadow imaging was tuned to detect particles at two sensitivity levels: high-optical density particles (HODP), resembling the particles captured by most imaging systems, and low-optical density particles (LODP), representing a vastly more abundant and gel-dominated pool. This method enabled us to map and characterize a portion of oceanic gels without filtration and staining. In the subtropical northeast Atlantic, LODP outnumbered HODP of the same size by one or two orders of magnitude. Morphology and particle number spectra differed greatly between the two pools, with LODP showing greater morphological homogeneity and diel pulses in abundance. The inclusion of LODP is critical for the parameterization and quantitative interpretation of biogeochemical models that directly affect global carbon flux estimates. Due to a paucity of in situ observations, these particles are largely absent from even the most advanced ocean models.

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Publication Details

Journal
Science Advances
Published
2026-09-18
DOI
https://doi.org/10.1126/sciadv.aee9026
Primary Topic
Marine and coastal ecosystems
Type
article
Field-Weighted Citation Impact
0.00

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article

Visualizing the barely detectable: Particle characteristics of the elusive aquatic gel phase in the northeastern subtropical Atlantic

María Couret, Huanqing Huang, Santiago Hernández‐León, Alexander B. Bochdansky
Science Advances
Marine and coastal ecosystems
article

Visualizing the barely detectable: Particle characteristics of the elusive aquatic gel phase in the northeastern subtropical Atlantic

María Couret, Huanqing Huang, Santiago Hernández‐León, Alexander B. Bochdansky
article en

Abstract

Marine gels constitute a large yet poorly explored ocean carbon pool. Shadow imaging was tuned to detect particles at two sensitivity levels: high-optical density particles (HODP), resembling the particles captured by most imaging systems, and low-optical density particles (LODP), representing a vastly more abundant and gel-dominated pool. This method enabled us to map and characterize a portion of oceanic gels without filtration and staining. In the subtropical northeast Atlantic, LODP outnumbered HODP of the same size by one or two orders of magnitude. Morphology and particle number spectra differed greatly between the two pools, with LODP showing greater morphological homogeneity and diel pulses in abundance. The inclusion of LODP is critical for the parameterization and quantitative interpretation of biogeochemical models that directly affect global carbon flux estimates. Due to a paucity of in situ observations, these particles are largely absent from even the most advanced ocean models.

Science AdvancesVol. 12(38)
Universidad de Las Palmas de Gran Canaria (ES), Consejo Superior de Investigaciones Científicas (ES), Instituto Español de Oceanografía (ES), Centro Oceanográfico de Málaga, Old Dominion University (US)
National Science Foundation, Ministerio de Ciencia, Innovación y Universidades, Agencia Canaria de Investigación, Innovación y Sociedad de la Información
Life below water
Openalex Percentile: Top 14%
Marine and coastal ecosystems
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