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2,228 results for “Deep water”
Polymer Electrolyte Membrane Water Electrolyzer Oxygen Bubble Evolution Optical Video Recording For Deep Learning-Enhanced Characterization of Bubble Dynamics in Proton Exchange Membrane Water Electrolyzer by André Colliard-Granero, Keusra A. Gompou, Christian Rodenbücher, Kourosh Malek, Michael H. Eikerling, and Mohammad J. Eslamibidgoli
<p>Dataset used for the training of the segmentation model employed in the work "Deep Learning-Enhanced Characterization of Bubble Dynamics in Proton Exchange Membrane Water Electrolyzer" by André Colliard-Granero, Keusra A. Gompou, Christian Rodenbücher, Kourosh Malek, Michael H. Eikerling, and Mohammad J. Eslamibidgoli. This dataset consists in 35 images and the corresponding manual annotated masks of diverse bubbly scenarios extracted from the optical video recording of a PEMWE with a transparent flow field.</p>
Figure 16 in Deep - water hypoxic meiobenthic Protozoa and Metazoa taxa of the Istanbul Strait's (Bosporus) outlet area of the Black Sea
Figure 16. Proportion of the harpacticoids inhabiting different sediment layers along the depth gradient.
Figure 10 in Deep - water hypoxic meiobenthic Protozoa and Metazoa taxa of the Istanbul Strait's (Bosporus) outlet area of the Black Sea
Figure 10. Proportion of the main Metazoa taxa inhabiting along depth gradient at the Bosporus outlet area of the Black Sea.
Figure 9 in Deep - water hypoxic meiobenthic Protozoa and Metazoa taxa of the Istanbul Strait's (Bosporus) outlet area of the Black Sea
Figure 9. Proportion of soft-shelled foraminifera inhabiting different sediment layers along the depth gradient.
Figure 8 in Deep - water hypoxic meiobenthic Protozoa and Metazoa taxa of the Istanbul Strait's (Bosporus) outlet area of the Black Sea
Figure 8. Proportion of hard-shelled foraminifera inhabiting different sediment layers along the depth gradient.
Figure 7 in Deep - water hypoxic meiobenthic Protozoa and Metazoa taxa of the Istanbul Strait's (Bosporus) outlet area of the Black Sea
Figure 7. Distribution of the Foraminifera (hard-shelled and soft-shelled) abundance (N) along depth gradient at the Bosporus outlet area of the Black Sea.
Figure 6 in Deep - water hypoxic meiobenthic Protozoa and Metazoa taxa of the Istanbul Strait's (Bosporus) outlet area of the Black Sea
Figure 6. Proportion of the Ciliophora inhabiting different sediment layers along the depth gradient at the Bosporus outlet area of the Black Sea.
Figure 1 in Deep - water hypoxic meiobenthic Protozoa and Metazoa taxa of the Istanbul Strait's (Bosporus) outlet area of the Black Sea
Figure 1. Oxygen concentrations in the sediment and the overlying water at Stations 4 –6 (by Sergeeva et al 2013).
Fig. 9 in Revision of deep-water species in Granulina (Gastropoda: Granulinidae) from Mauritania and Western Sahara
Fig. 9. Granulina sigridae sp. nov., Mauritania.A –I. Timiris coral mound chain, MSM16–3/GeoB14876. A –B. Paratype (SMF373040). A. Ventral view, height 2.9 mm, width 1.8 mm. B. Columellar folds. C–D. Holotype (SMF359034). C. Ventral view, height 3.1 mm, width 1.9 mm. D. Columellar folds. E– G. Paratype (SMF373040). E –F. Ventral and side views, height 3.2 mm, width 1.8 mm, tumidity 1.6 mm. G. Micro-sculpture above second columellar tooth, see arrow in E–F. H. Paratype (SMF373040), ventral view, height 3.0 mm, width 1.8 mm. I. Paratype (SMF373040), side view, height 3.1 mm, tumidity 1.6 mm. J–K. Tamxat Mounds, MSM16–3/GeoB14904, ventral view, height 2.8 mm, width 1.7 mm.
Fig. 7 in Revision of deep-water species in Granulina (Gastropoda: Granulinidae) from Mauritania and Western Sahara
Fig. 7. Granulina ronaldi sp. nov., Mauritania, off Banc d'Arguin, CANCAP/3.154. A–D. Holotype (SMF359026). A–B. Ventral and side views, height 2.9 mm, width 1.7 mm, tumidity 1.4 mm. C. Columellar folds. D. Micro-sculpture above second columellar fold, see arrow in C. E–F. Paratype (SMF359020), ventral and side views, height 2.5 mm, width 1.5 mm, tumidity 1.3 mm. G–H. Paratype (SMF359027), central and side views, height 2.5 mm, width 1.4 mm, tumidity 1.3 mm, callus line indicated by white dots. I–J. Paratype (SMF359029), ventral and side views, height 2.5 mm, width 1.5 mm, tumidity 1.2 mm.
Fig. 6 in Revision of deep-water species in Granulina (Gastropoda: Granulinidae) from Mauritania and Western Sahara
Fig. 6. Granulina reginae sp. nov., Mauritania. A –D. Timiris Mound Complex. A –C. Holotype, POS346/ GeoB11587 (SMF359019). A–B. Ventral view, height 2.2 mm, width 1.4 mm, C. Micro-sculpture above second fold, see arrow in B. D. Paratype, POS346/GeoB11588 (SMF359021), ventral view, height 2.0 mm, tumidity 1.2 mm. E–J. Paratypes (SMF359025), off Banc d'Arguin, MSM16–3/GeoB14799. E–F. Ventral and side view, height 2.1 mm, width 1.3 mm, tumidity 1.1 mm. G. Micro-sculpture above second fold, see arrows in E, H. H. Columellar folds. I–J. Ventral and side view, height 2.2 mm, width 1.4 mm, tumidity 1.1 mm.
Fig. 5 in Revision of deep-water species in Granulina (Gastropoda: Granulinidae) from Mauritania and Western Sahara
Fig. 5. Location map of the new species in Granulina Jousseaume, 1888 off Mauritania and Western Sahara. White circles show all investigated stations; colour symbols show locations of shells from new species. Granulina reginae sp. nov. is presented by yellow squares, G. sigridae sp. nov. as red diamonds, G. sandrae sp. nov. as blue triangles, and G. ronaldi sp. nov. as green circles. Bathymetric data from GEBCO; contours 500 m
Fig. 4 in Revision of deep-water species in Granulina (Gastropoda: Granulinidae) from Mauritania and Western Sahara
Fig. 4. Ganulina aff. crassa, off Nouakchott, Mauritania. A–D. M44/133–KG615. E–F. M60/77–KG960. A–B. Ventral and side view, height 1.8 mm, width 1.2 mm, tumidity 1.0 mm. C. Micro-sculpture above second columellar fold, see arrow in D. D. Columellar folds and labial denticles. E. Ventral view, height 2.0 mm, width 1.3 mm. F. Ventral view, height 2.0 mm, width 1.3 mm.
Fig. 3 in Revision of deep-water species in Granulina (Gastropoda: Granulinidae) from Mauritania and Western Sahara
Fig. 3. Granulina crassa Smriglio, Gubbioli & Mariottini, 2000, Western Sahara, off Cap Blanc, M44/235–KG649. A–D. Ventral and side views, height 2.1 mm, width 1.3 mm, tumidity 1.0 mm. C. Columellar folds. D. Micro–sculpture above second columellar fold, see arrow in C. E–F. Ventral and side views, height 2.1 mm, width 1.3 mm, tumidity 1.0 mm. G–H. Views and dimensions as E–F. I – J. Views and dimensions as E–F.
Fig. 8 in Revision of deep-water species in Granulina (Gastropoda: Granulinidae) from Mauritania and Western Sahara
Fig. 8. Granulina sandrae sp. nov., Mauritania. – A –F. Off Cap Timiris, CANCAP/3.154. A –B. Holotype (SMF359030), ventral view, height 3.5 mm, width 2.2 mm, micro-sculpture above second columellar tooth, see arrow in A. C. Paratype (SMF359031), side view with thickened lip, height 3.2 mm, tumidity 1.8 mm. D–F. Paratype (SMF359031). D, F. Ventral and side views, height 3.2 mm, width 2.1 mm, tumidity 1.8 mm. E. Columellar view with teeth. – G–J. Southern Banc d'Arguin, MSM16–3/ GeoB14847. G–I. Paratype (SMF359033). G. Ventral view height 3.6 mm, width 2.5 mm. H. Microsculpture above second columellar fold, see arrow in I. I. Columellar folds. J. Paratype (SMF359033), side view with thickened lip, height 3.4 mm, tumidity 2.0 mm.
Fig. 1 in Revision of deep-water species in Granulina (Gastropoda: Granulinidae) from Mauritania and Western Sahara
Fig. 1. Location map of the known species of Granulina Jousseaume, 1888 found off Mauritania and Western Sahara. All investigated stations are shown by white circles; specimens of Granulina were only found at locations indicated by colour symbols. Granulina cerea Smriglio, Gubbioli & Mariottini, 2000 is presented as yellow squares, G. crassa Smriglio, Gubbioli & Mariottini, 2000 as red diamonds, G. crystallina Smriglio, Gubbioli & Mariottini, 2000 as blue triangles and G. nofronii Smriglio, Gubbioli & Mariottini, 2000 as green circles. Bathymetric data from GEBCO, contours at 500 m intervals.
Fig. 2. Granulina Jousseaume, 1888 from Mauritania. A–D in Revision of deep-water species in Granulina (Gastropoda: Granulinidae) from Mauritania and Western Sahara
Fig. 2. Granulina Jousseaume, 1888 from Mauritania. A–D. Granulina cerea Smriglio, Gubbioli & Mariottini, 2000, off Banc d'Arguin, CANCAP/3.120. A–B. Shell. A. Ventral view, height 2.8 mm, width 1.7 mm. B. Micro-sculpture above second columellar fold, see arrow in A. C–D. Shell, ventral view and side view, height 2.6 mm, width 1.6 mm, tumidity 1.3 mm. E. Granulina crystallina Smriglio, Gubbioli & Mariottini, 2000, off Nouakchott, M44/193–KG626, ventral view, height 3.1 mm, width 2.0 mm. F–G. Granulina nofronii Smriglio, Gubbioli & Mariottini, 2000, MSM16–3/GeoB14714. F. Ventral view, height 2.3 mm, width 1.4 mm. G. Ventral view, height 2.5 mm, width 1.6 mm
Figure 8 in Unraveling distributional patterns and life-history traits of a deep-water shrimp Plesionika edwardsii (Decapoda, Pandalidae) under unexploited virgin conditions: a benchmark for fisheries management
Figure 8. Hypothesized life cycle of Plesionika edwardsii in the Azorean region. After the incubation period of shrimp eggs, (1) larvae are released into the water column and (2) juveniles develop in shallow waters. Mature females and males are distributed up to 600 m with a sexual segregation by depth: (3) non-ovigerous females are mainly found up to 200 m, (4) ovigerous females between 200 and 300 m, and (5) males from 400 to 500 m deep. Females are bigger than males, and ovigerous females are bigger than nonovigerous females. A bigger-deeper trend is observed up to 400 m. (6) Long larval stages of P. edwardsii increases its potential for dispersal (Landeira et al., 2009), favoring connectivity and stock homogeneity between adjacent areas.
Figure 5 in Unraveling distributional patterns and life-history traits of a deep-water shrimp Plesionika edwardsii (Decapoda, Pandalidae) under unexploited virgin conditions: a benchmark for fisheries management
Figure 5. Sex ratio of Plesionika edwardsii by depth stratum in the Azorean region during the period 1999–2000.
Figure 2 in Unraveling distributional patterns and life-history traits of a deep-water shrimp Plesionika edwardsii (Decapoda, Pandalidae) under unexploited virgin conditions: a benchmark for fisheries management
Figure 2. Seasonal predicted mean catch per unit effort (CPUE, g trap-1) by depth stratum for males, non-ovigerous and ovigerous females of Plesionika edwardsii in the Azorean region for the period 1999–2000. Light-colored symbols represent raw data. Detailed parameter estimates are in Tab. S4.
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Allen Brain Atlas
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