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Fig. 8 in On a new species of the genus Cyprinotus (Crustacea, Ostracoda) from a temporary wetland in New Caledonia (Pacific Ocean), with a reappraisal of the genus
Fig. 8. Other species of Cyprinotus s. str. (redrawn from various sources, mostly the original descriptions, not to scale). A. Cyprinotus cingalensis Brady, 1886, RVi. B. C. edwardi McKenzie, 1978, RVi. C. C. indica Battish, 1981, CpLL. D. C. dahli Sars, 1896, CpLL. E. C. kimberleyensis McKenzie, 1966, RVi. F. C. scholiosus (Sohn & Morris, 1963), RVi. G. C. uenoi Brehm, 1936, LVi. H. C. uenoi Brehm, 1936, RVi. Arrows indicate anterior side.
Fig. 7 in On a new species of the genus Cyprinotus (Crustacea, Ostracoda) from a temporary wetland in New Caledonia (Pacific Ocean), with a reappraisal of the genus
Fig. 7. Cyprinotus drubea sp. nov., ♀♀ A-1 juveniles. A. LVi (INV.156002/OC.3402). B. RVi (RBINS- INV.156002/OC.3402. C. CpRL (MNHN-UI-2019-781). D. CpLL (MNHN-UI-2019-779). E. CpD (MNHN-UI-2019-780). F. RVi, detail of anterior part (RBINS-INV.156002/OC.3402). G. CpRL, detail anterior (MNHN-UI-2019-781). H. LVi, detail of posterior part (RBINS-INV.156002/OC.3402). I. LVi, detail of anterior part (RBINS-INV.156002/OC.3402). Arrows indicate anterior side. Scale bars: A–E = 500 µm, F = 400 µm, G–I= 100 µm.
Fig. 6 in On a new species of the genus Cyprinotus (Crustacea, Ostracoda) from a temporary wetland in New Caledonia (Pacific Ocean), with a reappraisal of the genus
Fig. 6. Cyprinotus drubea sp. nov., ♀♀. A. T1 (MNHN-IU-2019-2542). B. T2 (MNHN-IU-2019-2541). C. T3 (MNHN-IU-2019-2541). D. Detail of apical pincer of T3 (MNHN-IU-2019-2541). E. CR (MNHN-IU-2019-2542). F. Attachment of CR (MNHN-IU-2019-2542). G. Rake-like organ (MNHN- IU-2019-2542). Scale bar: A = 111 µm; B = 93 µm; C = 106 µm; D = 42 µm; E–F = 127 µm; G = 104 µm.
Fig. 5 in On a new species of the genus Cyprinotus (Crustacea, Ostracoda) from a temporary wetland in New Caledonia (Pacific Ocean), with a reappraisal of the genus
Fig. 5. Cyprinotus drubea sp. nov., ♀♀. A. Md-palp (MNHN-IU-2019-2541). B. Md-coxa (MNHN- IU-2019-2541). C. Palp and endites of Mx1 (chaetotaxy of endites not complete) (MNHN-IU-2019-2541). D. Vibratory plate of Mx1 (MNHN-IU-2019-2542). Scale bar: A = 101 µm; B, D = 139 µm; C = 84 µm.
Fig. 4 in On a new species of the genus Cyprinotus (Crustacea, Ostracoda) from a temporary wetland in New Caledonia (Pacific Ocean), with a reappraisal of the genus
Fig. 4. Cyprinotus drubea sp. nov., ♀♀. A. A1 (MNHN-IU-2019-2542). B. A2 (MNHN-IU-2019-2541). C. Detail of apical chaetotaxy of A2 (MNHN-IU-2019-2542). Scale bar: A = 344 µm; B = 135 µm; C = 46 µm.
Fig. 3 in On a new species of the genus Cyprinotus (Crustacea, Ostracoda) from a temporary wetland in New Caledonia (Pacific Ocean), with a reappraisal of the genus
Fig. 3. Scanning Electron Microscope images of Cyprinotus drubea sp. nov., ♀♀. A. RVi, detail of anterior part (MNHN-IU-2019-784). B. RVi, detail of posterior part (MNHN-IU-2019-784). C. CpRL, detail of carapace surface (MNHN-IU-2019-783). D. CpD, detail of hump (MNHN-IU-2019-782). E. CpV, detail of anterior part (RBINS-INV.156001/OC.3401). F. CpV, detail of central overlap (RBINS-INV.156001/ OC.3401). Arrows indicate anterior side. Scale bars: A, D–E = 200 µm; B = 400 µm; C, F = 100 µm.
Fig. 2 in On a new species of the genus Cyprinotus (Crustacea, Ostracoda) from a temporary wetland in New Caledonia (Pacific Ocean), with a reappraisal of the genus
Fig. 2. Scanning Electron Microscope images of Cyprinotus drubea sp. nov., ♀♀. A. LVi (MNHN- IU-2019-784). B. RVi (MNHN-IU-2019-784). C. CpRL (MNHN-IU-2019-783). D. CpLL (RBINS- INV.156000/OC.3400). E. CpD (MNHN-IU-2019-782). F. CpV (RBINS-INV.156001/OC.3401). G. LVi, detail of anterior part (MNHN-IU-2019-784). H. LVi, detail of posterior part (MNHN- IU-2019-784). Arrows indicate anterior side. Scale bars: A–F = 500 µm; G = 400 µm; H = 200 µm.
Freshwater transport from the Atlantic to the Pacific Ocean through the atmosphere
<p>emp_eul_lagrang.mat: This mat file contains global evaporation - precipitation (E-P) data obtained from ERA-Interim, Eulerian and Lagrangian method. The validation of the atmospheric water-mass version of TRACMASS had been done using this data.</p> <p>psixz_ep_eastward.zip: This zip file contains 12 netcdf files corresponding to each month. These files were used to compute E - P, atmospheric freshwater transport as a function of month and atmospheric zonal water-mass stream function for the water-mass traveling from the Atlantic to Pacific Ocean over Afro-Eurasia. </p> <p>psixz_ep_westward.zip: Same as above but for the water-mass traveling from the Atlantic to Pacific Ocean over America. </p> <p>resdt_eastward.nc: This netcdf file consists of atmospheric water residence time extracted from water-mass trajectories traveling from the Atlantic to Pacific Ocean over Afro-Eurasia.</p> <p>resdt_westward.nc: Same as above but from water-mass trajectories traveling from the Atlantic to Pacific Ocean over America.</p> <p>resdt_all.nc: This netcdf file consists of atmospheric water residence time computed from water-mass trajectories traveling from the Atlantic to Pacific Ocean regardless of its pathway (Eastward over Afro-Eurasia + Westward over America).</p> <p>resdt_all_global.nc: This netcdf file consists of global atmospheric water residence time calculated from the global TRACMASS run.</p> <p> </p>
Figure 2 in Diet of the bull shark, Carcharhinus leucas, and the tiger shark, Galeocerdo cuvier, in the eastern Pacific Ocean
Figure 2. Trophic spectrum of the bull shark, Carcharhinus leucas, and tiger shark, Galeocerdo cuvier, in Ecuadorian waters.
Figure 1 in Diet of the bull shark, Carcharhinus leucas, and the tiger shark, Galeocerdo cuvier, in the eastern Pacific Ocean
Figure 1. Landing port of the bull shark, Carcharhinus leucas, and tiger shark, Galeocerdo cuvier, caught in Ecuadorian waters.
Fig. 1 in Molecular identification and epidemiological data of Anisakis spp. (Nematoda: Anisakidae) larvae from Southeastern Pacific Ocean off Peru
Fig. 1. Scanning electron micrographs of Anisakis type I and II.1a and 2a. Cephalic end. Detail of the structures: oral cavity (oc), tooth (t), excretory pore (ep), subventral lip bulge (s). 1b. caudal end of Anisakis pegreffii. 2b. caudal end of Anisakis physeteris. Detail of the structures: anal pore (ap), mucron (m).
Fig. 2 in Molecular identification and epidemiological data of Anisakis spp. (Nematoda: Anisakidae) larvae from Southeastern Pacific Ocean off Peru
Fig. 2. Phylogenetic tree based on mtDNA cox2 gene sequences exploring the relationships among Anisakis species. The relationship was drawn using Bayesian inference (BI) and maximum likelihood (ML) methods. Posterior probability value (first) and nodal support is shown as bootstrap value (second) on the basis of 10 million generations for BI and 1000 replicates (only bootstrap values greater than 80% are shown) for ML, respectively. Scale bar indicate nucleotide substitutions per site. GenBank accession numbers are shown in parentheses. Hysterothylacium deardorffoverstreetorum was used as an outgroup.
Fig. 4 in New Miocene sulid birds from Peru and considerations on their Neogene fossil record in the Eastern Pacific Ocean
Fig. 4. Sulid bird Ramphastosula aguirrei sp. nov. from Poza Negra, Sacaco Sur (Peru), Pisco Formation, Late Miocene. A Holotype MUSM 665. Skull in lateral (A1), posterior (A2), dorsal (A3), and ventral (A4) views. Left quadrate in (A5) anterior and (A6) posterior views. B. Section of rostrum at its midlength showing differences in the outline of Ramphastosula and other sulids. C–E. Comparison of the ear region in ventral view in the Peruvian booby Sula variegata DPV AM P8 (C) from Isla Lobos de Afuera, Lambayaque (Peru), Recent; R. ramirezi MUSM 264 (D) from Poza Roja, Sacaco Sur (Peru), Messinian (Late Miocene); and R. aguirrei MUSM 665 (E) from Poza Negra, Sacaco Sur (Peru), Messinian (Late Miocene).
Fig. 3 in New Miocene sulid birds from Peru and considerations on their Neogene fossil record in the Eastern Pacific Ocean
Fig. 3. Sulid bird Sula figueroae sp. nov. from Cerro Colorado locality, Peru, Pisco Formation, early Late Miocene. A. Holotype MUSM 2501. Skull in lateral (A1), posterior (A2), dorsal (A4), and ventral (A5) views. Isolated lacrimal in lateral view (A3). Left carpometacarpus in ventral view (A6). Synsacrum and pelvis in ventral (A7) and lateral (A8) views. B. Paratype MUSM 2502. Sternum in lateral (B1) and ventral (B2) views. Coracoid in (B3) dorsal view. Left scapula in (B4) lateral view. Right humerus in anterior (B5), lateral (B6), and posterior (B7) views. Proximal portion of ulna in ventral view (B8). Right femur in anterior view (B9). Right tibiotarsus in anterior view (B10). Right tarsometatarsus in anterior (B11) and plantar (B12) views.
Fig. 1 in New Miocene sulid birds from Peru and considerations on their Neogene fossil record in the Eastern Pacific Ocean
Fig. 1. Maps of the Ocucaje (A) and Sacaco (B, modified from Brand 2001) areas, southestern Peru, indicating the type localities of fossil sulids described in this paper.
Figure 3A-E in Variability in Reception Duration of Dual Satellite Tags on Sea Turtles Tracked in the Pacific Ocean
Figure 3A-E. Number of transmissions by month for five turtles that have over 30 days difference in tag duration between the two tags on each turtle. Turtle number on each graph is connected to the numbers assigned to the turtle in Table 1. Legends indicate which tag ID goes with each color on the graphic.
Figure 1 in Variability in Reception Duration of Dual Satellite Tags on Sea Turtles Tracked in the Pacific Ocean
Figure 1. Distribution of dual tagged turtles in the North Pacific Ocean. Turtle numbers are connected to those in Table 1. Ovals show basic area covered by each turtle's track.
Fig. 2 in Zoogeography of Elasmobranchs in the Colombian Pacific Ocean and Caribbean Sea
Fig. 2. Relative contribution of each family to the total richness of elasmobranchs for both areas combined (values in brackets) and by area, Colombian Pacific (black bars) and Caribbean (white bars). Values in parentheses indicate the total number of genera (first entry) and species (second entry) per family.
Fig. 1 in Zoogeography of Elasmobranchs in the Colombian Pacific Ocean and Caribbean Sea
Fig. 1. Study area indicating the territorial limits of the Colombian seas. The dotted lines indicate the partitioning into the subareas (Coastal Caribbean, Oceanic Caribbean, Coastal Pacific and Oceanic Pacific) used in this study.
Fig. 4 in Zoogeography of Elasmobranchs in the Colombian Pacific Ocean and Caribbean Sea
Fig. 4. Shark and batoid richness per habitat (a) and per habit (b) in the Colombian Pacific and Caribbean waters, and relationship between the body size of Colombian marine elasmobranchs and its richness (c; values expressed in percentage) and the number of sub-areas (Oceanic Caribbean, Coastal Caribbean, Oceanic Pacific, and Coastal Pacific) occupied by them (d).
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.