<p>White polygon corresponds to the outermost boundaries of squid habitat with temporal overlap of 3 years (HPI = 0.25).</p
<p>Closed circles represent dates when a bloom was occurring. At the MEDH location an in- situ fluor...
13 pages, 10 figures, 3 tablesThe distribution and transport of paralarvae of the complex Sthenoteut...
Spatial and temporal patterns of the Argentine short-finned squid, Illex argentinus, abundances in t...
<p>Black polygon corresponds to the outermost boundaries of squid habitat with temporal overlap of 3...
We identified the pelagic habitat hotspots of the neon flying squid (Ommastrephes bartramii) in the ...
The understanding of the spatio-temporal distributions of the species habitat in the marine environm...
With the increasing effects of global climate change and fishing activities, the spatial distributio...
<p>Summary of environmental parameters used for developing habitat models for neon flying squid in t...
Short- and long-term climate oscillations impact seascapes, and hence, marine ecosystem structure an...
We developed a habitat suitability index (HSI) model to evaluate the variability of suitable habitat...
13 pages, 8 figures, 1 tableThe Gulf of California and adjacent Pacific have passed through a prolon...
<p>A) Microplastic numerical abundance and sea surface temperature in Summer 2009 (n = 119); B) Micr...
Bioenergetics model is applied to Japanese common squid, Todarodes pacificus. The temporal change of...
<p>Predicted increases in predator and prey occurrences (black circles) and probability of species o...
Japanese flying squid (Todarodes pacificus) is one of the most commercially important resources in t...
<p>Closed circles represent dates when a bloom was occurring. At the MEDH location an in- situ fluor...
13 pages, 10 figures, 3 tablesThe distribution and transport of paralarvae of the complex Sthenoteut...
Spatial and temporal patterns of the Argentine short-finned squid, Illex argentinus, abundances in t...
<p>Black polygon corresponds to the outermost boundaries of squid habitat with temporal overlap of 3...
We identified the pelagic habitat hotspots of the neon flying squid (Ommastrephes bartramii) in the ...
The understanding of the spatio-temporal distributions of the species habitat in the marine environm...
With the increasing effects of global climate change and fishing activities, the spatial distributio...
<p>Summary of environmental parameters used for developing habitat models for neon flying squid in t...
Short- and long-term climate oscillations impact seascapes, and hence, marine ecosystem structure an...
We developed a habitat suitability index (HSI) model to evaluate the variability of suitable habitat...
13 pages, 8 figures, 1 tableThe Gulf of California and adjacent Pacific have passed through a prolon...
<p>A) Microplastic numerical abundance and sea surface temperature in Summer 2009 (n = 119); B) Micr...
Bioenergetics model is applied to Japanese common squid, Todarodes pacificus. The temporal change of...
<p>Predicted increases in predator and prey occurrences (black circles) and probability of species o...
Japanese flying squid (Todarodes pacificus) is one of the most commercially important resources in t...
<p>Closed circles represent dates when a bloom was occurring. At the MEDH location an in- situ fluor...
13 pages, 10 figures, 3 tablesThe distribution and transport of paralarvae of the complex Sthenoteut...
Spatial and temporal patterns of the Argentine short-finned squid, Illex argentinus, abundances in t...