Heatmaps depicting spatial (i.e., site) and temporal (i.e., year-season) patterns in A and B) pink shrimp density (shrimp m-2: LN[x+1]), C) temperature (°C), D) salinity (ppt), E) depth (m), and F) SAV (% cover). Shrimp density patterns in panel B are organized by site and year-season cluster membership, as denoted by color bars along the left and top margins and presented in the legend. Black cells in A) and B) highlight 0 shrimp m-2 observations while in C) through F) black bars represent missing values. Year-season label colors depict ecological perturbations: red = hypersalinity event, blue = cold snap, green = algal bloom. Labels on the left margin of (A) refer to canal outlets (blue) and coastline features (black) depicted in Fig 1.</...
Number of pink shrimp collected, average pink shrimp density (± SD), and average (± SD) of water qua...
<p>Results of the pink shrimp GAM predicting estimate of abundance. Bathymetric contours of 50 m, 10...
Osterloff J, Nilssen I, Möller T, Nattkemper TW. Computational analysis of spatial species distribut...
Median (± CI) and maximum, and minimum values of A) density (shrimp m-2: LN([x+1]), B) temperature (...
Median (± CI) and maximum, and minimum values of A) density (shrimp m-2: LN([x+1]), B) salinity (ppt...
Pink shrimp density (shrimp m-2) and back-transformed 0.50 and 0.90 quantile regressions lines of pr...
The Biscayne Bay Coastal Wetlands (BBCW) project of the Comprehensive Everglades Restoration Plan (C...
The Biscayne Bay Coastal Wetlands (BBCW) project of the Comprehensive Everglades Restoration Plan (C...
The Biscayne Bay Coastal Wetlands (BBCW) project of the Comprehensive Everglades Restoration Plan (C...
The pink shrimp, Farfantepenaeus duorarum, was chosen as a faunal indicator of the ecosystem status ...
The pink shrimp, Farfantepenaeus duorarum, familiar to most Floridians as either food or bait shrimp...
The pink shrimp Farfantepenaeus duorarum is one ecological indicator of the Biscayne Bay Coastal Wet...
Research was undertaken to model and map the spatial distributions and abundances of pink shrimp Far...
My internship project at the NOAA SEFSC entailed the analysis of the pink shrimp (Farfantepenaeus du...
17 pages, 5 figures, 7 tablesChanges in the physiological condition (represented by Kn = body weight...
Number of pink shrimp collected, average pink shrimp density (± SD), and average (± SD) of water qua...
<p>Results of the pink shrimp GAM predicting estimate of abundance. Bathymetric contours of 50 m, 10...
Osterloff J, Nilssen I, Möller T, Nattkemper TW. Computational analysis of spatial species distribut...
Median (± CI) and maximum, and minimum values of A) density (shrimp m-2: LN([x+1]), B) temperature (...
Median (± CI) and maximum, and minimum values of A) density (shrimp m-2: LN([x+1]), B) salinity (ppt...
Pink shrimp density (shrimp m-2) and back-transformed 0.50 and 0.90 quantile regressions lines of pr...
The Biscayne Bay Coastal Wetlands (BBCW) project of the Comprehensive Everglades Restoration Plan (C...
The Biscayne Bay Coastal Wetlands (BBCW) project of the Comprehensive Everglades Restoration Plan (C...
The Biscayne Bay Coastal Wetlands (BBCW) project of the Comprehensive Everglades Restoration Plan (C...
The pink shrimp, Farfantepenaeus duorarum, was chosen as a faunal indicator of the ecosystem status ...
The pink shrimp, Farfantepenaeus duorarum, familiar to most Floridians as either food or bait shrimp...
The pink shrimp Farfantepenaeus duorarum is one ecological indicator of the Biscayne Bay Coastal Wet...
Research was undertaken to model and map the spatial distributions and abundances of pink shrimp Far...
My internship project at the NOAA SEFSC entailed the analysis of the pink shrimp (Farfantepenaeus du...
17 pages, 5 figures, 7 tablesChanges in the physiological condition (represented by Kn = body weight...
Number of pink shrimp collected, average pink shrimp density (± SD), and average (± SD) of water qua...
<p>Results of the pink shrimp GAM predicting estimate of abundance. Bathymetric contours of 50 m, 10...
Osterloff J, Nilssen I, Möller T, Nattkemper TW. Computational analysis of spatial species distribut...