Several hypotheses have been proposed for the onset of the spring phytoplankton bloom in the North Atlantic. Our main objective is to examine which bottom-up processes can best predict the annual increase in surface phytoplankton concentration in the North Atlantic by applying novel phenology algorithms to ocean colour data. We construct indicator fields and time series which, in various combinations, provide models consistent with the principle dynamics previously proposed. Using a multimodel inference approach, we investigate the evidence supporting these models and how it varies in space. We show that, in terms of bottom-up processes alone, there is a dominant physical mechanism, namely mixed-layer shoaling, that best predicts ...
International audienceThe effect of the geostrophic stirring on phytoplankton variability during the...
The annual phytoplankton bloom is a key event in pelagic ecosystems. Variability in the timing, or p...
It is widely held that as the ocean becomes more intensely stratified with anthropogenic-driven clim...
International audienceThe spring, bloom is a renowned feature of many seasonal seas in the global oc...
In this paper, the relationship between changes in the intensity of the spring bloom and changes in ...
A framework is developed for examining spatial patterns of interannual variability in springtime chl...
Springtime phytoplankton blooms photosynthetically fix carbon and export it from the surface ocean a...
The spring bloom dominates the annual cycle of phytoplankton abundance in large regions of the world...
The spring bloom dominates the annual cycle of phytoplankton abundance in large regions of the world...
AbstractThe long-standing explanation of the triggering cause of the surface increase of phytoplankt...
International audienceThe effect of the geostrophic stirring on phytoplankton variability during the...
International audienceThe effect of the geostrophic stirring on phytoplankton variability during the...
International audienceThe effect of the geostrophic stirring on phytoplankton variability during the...
International audienceThe effect of the geostrophic stirring on phytoplankton variability during the...
International audienceThe North Atlantic bloom corresponds to a strong seasonal increase in phytopla...
International audienceThe effect of the geostrophic stirring on phytoplankton variability during the...
The annual phytoplankton bloom is a key event in pelagic ecosystems. Variability in the timing, or p...
It is widely held that as the ocean becomes more intensely stratified with anthropogenic-driven clim...
International audienceThe spring, bloom is a renowned feature of many seasonal seas in the global oc...
In this paper, the relationship between changes in the intensity of the spring bloom and changes in ...
A framework is developed for examining spatial patterns of interannual variability in springtime chl...
Springtime phytoplankton blooms photosynthetically fix carbon and export it from the surface ocean a...
The spring bloom dominates the annual cycle of phytoplankton abundance in large regions of the world...
The spring bloom dominates the annual cycle of phytoplankton abundance in large regions of the world...
AbstractThe long-standing explanation of the triggering cause of the surface increase of phytoplankt...
International audienceThe effect of the geostrophic stirring on phytoplankton variability during the...
International audienceThe effect of the geostrophic stirring on phytoplankton variability during the...
International audienceThe effect of the geostrophic stirring on phytoplankton variability during the...
International audienceThe effect of the geostrophic stirring on phytoplankton variability during the...
International audienceThe North Atlantic bloom corresponds to a strong seasonal increase in phytopla...
International audienceThe effect of the geostrophic stirring on phytoplankton variability during the...
The annual phytoplankton bloom is a key event in pelagic ecosystems. Variability in the timing, or p...
It is widely held that as the ocean becomes more intensely stratified with anthropogenic-driven clim...