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12 results for “marginal marine”
Figure 19. Myopiarolis novaecaledoniae. Holotype. A dorsal view B sternites and ventral pleonites C pereopod 6 carpus inferior margin setae D maxilliped E pleopod 2 endopod, detail F pereopod 2 propodus and dactylus G pleopod 4 H pleopod 5 in New genera and species of the marine isopod family Serolidae (Crustacea, Sphaeromatidea) from the southwestern Pacific
Figure 19. Myopiarolis novaecaledoniae. Holotype. A dorsal view B sternites and ventral pleonites C pereopod 6 carpus inferior margin setae D maxilliped E pleopod 2 endopod, detail F pereopod 2 propodus and dactylus G pleopod 4 H pleopod 5.
Chronic heat tolerance reveals overestimated thermal safety margins and increased vulnerability in marine fish populations
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FIGURES –. Rare taxa (SEM, New Caledonia, Melanesia). Cocconeis sp. 2 in Riaux-Gobin et al. 2015 (31, 32), short marginal SV striae between each short raised virgae (31, arrow; 32, arrowhead), SV narrow sternum, siliceous pearls (31), C. sp. 4 in Riaux-Gobin et al. 2015 (33–34), strong marginal crista marginalis, short marginal striae on top of each short raised virga (33, arrow; 34, arrowhead),?C. sp. 5 in Riaux-Gobin et al. 2015 (35–36), short SV striae and a raised axial structure (35, arrow). Scale bars = 3 µm (31), 2 µm (33, 35), 1 µm (32, 36), 500 nm (34). in Marine Achnanthales (Bacillariophyceae) from New Caledonia (Melanesia): assemblage specificities, ultramafic environment
FIGURES –. Rare taxa (SEM, New Caledonia, Melanesia). Cocconeis sp. 2 in Riaux-Gobin et al. 2015 (31, 32), short marginal SV striae between each short raised virgae (31, arrow; 32, arrowhead), SV narrow sternum, siliceous pearls (31), C. sp. 4 in Riaux-Gobin et al. 2015 (33–34), strong marginal crista marginalis, short marginal striae on top of each short raised virga (33, arrow; 34, arrowhead),?C. sp. 5 in Riaux-Gobin et al. 2015 (35–36), short SV striae and a raised axial structure (35, arrow). Scale bars = 3 µm (31), 2 µm (33, 35), 1 µm (32, 36), 500 nm (34).
FIGURES –8. Cocconeis coronatoides Riaux-Gobin & Romero forma 1. SEM (New Caledonia, Melanesia). SVVC partially attached (2, arrowhead), SV areolae domed hymenes with radial slits arranged by sectors (external view 3, arrowhead), marginal RV hyaline area (external view 4, arrowhead), uniseriate striae up to margin (4), open RVVC (5, ellipse), RVVC with irregularly spread fimbriae (6, arrowhead), SVVC still attached, small marginal chambers (internal view 7, arrowhead), SV margin (external view 8). Scale bars = 3 µm (8), 2 µm (2, 4, 7), 1 µm (6), 700 nm (5), 200 nm (3). in Marine Achnanthales (Bacillariophyceae) from New Caledonia (Melanesia): assemblage specificities, ultramafic environment
FIGURES –8. Cocconeis coronatoides Riaux-Gobin & Romero forma 1. SEM (New Caledonia, Melanesia). SVVC partially attached (2, arrowhead), SV areolae domed hymenes with radial slits arranged by sectors (external view 3, arrowhead), marginal RV hyaline area (external view 4, arrowhead), uniseriate striae up to margin (4), open RVVC (5, ellipse), RVVC with irregularly spread fimbriae (6, arrowhead), SVVC still attached, small marginal chambers (internal view 7, arrowhead), SV margin (external view 8). Scale bars = 3 µm (8), 2 µm (2, 4, 7), 1 µm (6), 700 nm (5), 200 nm (3).
FIGURES – 0. Cocconeis sp. (cf. capensis (Cholnoky) Witkowski). SEM (New Caledonia, Melanesia). External views. Biseriate SV striae (16, 18, twin arrows), narrow and straight SV sternum, marginal large area with one row of beads (16–18), SV marginal area with tiny pores (17), SV crater-like areolae with oblong in a zigzag lumen (19), SV areolae with sort of expansions (20). Scale bars: 4 µm (16), 3 µm (18), 700 nm (17), 400 nm (19–20). in Marine Achnanthales (Bacillariophyceae) from New Caledonia (Melanesia): assemblage specificities, ultramafic environment
FIGURES – 0. Cocconeis sp. (cf. capensis (Cholnoky) Witkowski). SEM (New Caledonia, Melanesia). External views. Biseriate SV striae (16, 18, twin arrows), narrow and straight SV sternum, marginal large area with one row of beads (16–18), SV marginal area with tiny pores (17), SV crater-like areolae with oblong in a zigzag lumen (19), SV areolae with sort of expansions (20). Scale bars: 4 µm (16), 3 µm (18), 700 nm (17), 400 nm (19–20).
FIGURE 1 in Inventorizing the modern benthic foraminiferal assemblage from marginal marine environments across the North West coast of Bay of Bengal
FIGURE 1. LOcATION OF THE SAMPLING STATIONS wITH RESPEcT TO EAcH HAbITAT. CO-ORdINATES OF THE SAMPLEd STATIONS HAVE bEEN dETAILEd IN SUPPLEMENTARy TAbLE S1.
Simulating burial and compaction of clay grain coated sands in a modern marginal marine sedimentary system
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Figures in "Gulf Stream mesoscale variabilities drive bottom marine heatwaves in Northwest Atlantic continental margin methane seeps"
<p>Data and code for figures in "Gulf Stream mesoscale variabilities drive bottom marine heatwaves in Northwest Atlantic continental margin methane seeps".</p>
Data used to produce the results for the article "Clustering to characterize extreme marine conditions for the benthic region of Northeastern Pacific continental margin"
<div>This repository contains a zip file with all of the modelled environmental data needed to reproduce the results in Holdsworth et al 2024 (currently in prep, but the link will be included eventually). Regional ocean model simulations of the Canadian Northeastern Pacific ocean were conducted using the <strong>N</strong>ucleus for <strong>E</strong>uropean <strong>M</strong>odelling of the <strong>O</strong>cean v 3.6 (NEMO). The hindcast extended from 1996 to the end of 2019. <br> </div> <div>The variables included are: <div>T - potential temperature </div> <div>S - salinity</div> <div>O2 - dissolved oxygen</div> <div>DIC - dissolved inorganic carbon, </div> <div>ALK- total alkalinity</div> <div>OmegaA - the aragonite saturation state</div> <div>AOU - apparent oxygen utilization</div> </div> <div> </div> <div>processed/daily/clim: Contains the climatological values for relevant variables in each cluster.</div> <div> </div> <div>AOU, T, and OmegaA were used for kmeans clustering in Holdsworth et al. 2024. </div> <div> </div> <div>processed/daily/by_year/by_cluster/n_clusters_6/: Contains the interannual data for each cluster. </div>
Modeling tectonics and surfaces processes interaction in a continental and marine environment : the case of the Algerian margin
<p><em><strong>The dataset :</strong></em></p> <p>The directory DATASET.zip provides data from an analog modeling experiment investigating the mechanics of passive margin tectonic inversion and the couplings between tectonics and onshore/offshore morphogenetic processes, applied to the study of the Plio-Quaternary evolution of the Algerian Margin (Northern Africa). This experiment is fully described and the model outcomes discussed in Strzerzynski et al. (submited to JGR 06/2020).</p> <p>The data set contains three Movies (referenced as 2D-S1, 3D-S2 and 2D-S3.mp4) showing the model evolution from three different points of view. Movie 2D-S1.mp4 and Movie 3D-S2.mp4 correspond to general upper and oblique views of the whole experiment, respectively. Movie Zoom 2D-S3.mp4 shows a focused upper view of a part of the experiment during the margin tectonic inversion.</p> <p>Model evolution consists first by a massive sea level drop down and low stand in absence of tectonics simulating the Messinian Salinity Crisis (between 2'' and 28'' of video record) followed by an instantaneous, (rainfall is stopped), sea level rise (between 28'' and 41'' of video record). Second, after a short period of quiescence, shortening is applied to the model leading to the tectonic inversion of the margin (last 60 second of the record).</p> <p><em><strong>The analog model :</strong></em></p> <p>The experimental set-up used in this study has been developed at the Geosciences Montpellier Analog Modeling laboratory at the University of Montpellier, France (contact: Dr. S. Dominguez, <a href="mailto:stephane.Dominguez@gm.univ-montp2.fr">stephane.Dominguez@gm.univ-montp2.fr</a>). It is constituted by a mechanical apparatus to deform the analogue model, a rainfall system to erode its surface, and a digital monitoring device used to quantify model evolution during the experiment. The deformation device is made of an aluminum structure supporting a bended PVC plate bounded by glass/PVC walls and a rigid backstop. A Mylar/carbon sheet, lying on the PVC plate, is pulled beneath the backstop using a computerized stepping motor to impose model shortening. The rainfall system uses up to 8 sprinklers to diffuse water micro-droplets over the model surface. Water runoff enhances erosion of the emerged part of the model triggering several natural processes shaping the topography such as; channel incision in the drainage network, slope diffusion and gravity controlled landslides. In the submarine part of the model, sedimentation processes dominate but gravity driven instabilities also contribute to shape the submarine morphology.</p>
Continental Influence on the Fertilization of Marine Waters during the Late Quaternary in the South of the Brazilian Continental Margin
<p>Concentration and percentages of palynomorphs, diatoms and marine indicators.</p>
FIGURES –. Relatively rare Achnanthales (SEM, New Caledonia, Melanesia). Cocconeis margaritata Riaux-Gobin & Al-Handal, oblong SV areolae bordered by siliceous small beads (37–38), Cocconeis paucistriata Riaux-Gobin, Romero, Compère & Al-Handal (39, 40), SV striae composed of a unique areola on each side of the SV sternum (40, arrow), two (to three) marginal areolae (39, 40), simple process apertures on SV mantle (40, twin arrowheads). Cocconeis sigillata Riaux-Gobin & Al-Handal (41), low marginal crista marginalis and biseriate striae (41, arrowhead) split in two parts by an axial raised area. Achnanthidium glyphos Riaux-Gobin, Compère & Witkowski (42), naviculoïd SV shape, one row of marginal oblong SV areolae (42, arrowhead). See the RV of these taxa on their original description (refs cited above). Scale bars = 3 µm (37), 2 µm (42), 500 nm (40), 400 nm (38). in Marine Achnanthales (Bacillariophyceae) from New Caledonia (Melanesia): assemblage specificities, ultramafic environment
FIGURES –. Relatively rare Achnanthales (SEM, New Caledonia, Melanesia). Cocconeis margaritata Riaux-Gobin & Al-Handal, oblong SV areolae bordered by siliceous small beads (37–38), Cocconeis paucistriata Riaux-Gobin, Romero, Compère & Al-Handal (39, 40), SV striae composed of a unique areola on each side of the SV sternum (40, arrow), two (to three) marginal areolae (39, 40), simple process apertures on SV mantle (40, twin arrowheads). Cocconeis sigillata Riaux-Gobin & Al-Handal (41), low marginal crista marginalis and biseriate striae (41, arrowhead) split in two parts by an axial raised area. Achnanthidium glyphos Riaux-Gobin, Compère & Witkowski (42), naviculoïd SV shape, one row of marginal oblong SV areolae (42, arrowhead). See the RV of these taxa on their original description (refs cited above). Scale bars = 3 µm (37), 2 µm (42), 500 nm (40), 400 nm (38).
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.