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538 results for “Eastern Atlantic”
Figure 7 from: Glover EA, Taylor JD (2016) Pleurolucina from the western Atlantic and eastern Pacific Oceans: a new intertidal species from Curaçao with unusual shell microstructure (Mollusca, Bivalvia, Lucinidae). ZooKeys 620: 1-19. https://doi.org/10.3897/zookeys.620.9569
Figure 7 - Pleurolucina leucocyma. A–C Lucina leucocyma Dall, 1881 lectotype MCZ 7986, exterior, interior and dorsal view of right valve, L 5.7 mm, H 6.6 mm D, E Lucina leucocyma paralectotype USNM 83140, exterior of left valve and interior of right valve, L 4.8 mm, H 5.5 mm F–K, Pleurolucina leucocyma USNM 446563 Eolis Station 368, off Ajax Reef, Florida F Exterior of left valve, L 5.1 mm G Left valve of juvenile shell, L 3.1 mm H Lateral view of left valve, L 5.1 mm. I Interior of left valve, L 5.5 mm J Interior of right valve, L 5.5 mm K Protoconch, scale bar = 100 µm.
Figure 6 from: Glover EA, Taylor JD (2016) Pleurolucina from the western Atlantic and eastern Pacific Oceans: a new intertidal species from Curaçao with unusual shell microstructure (Mollusca, Bivalvia, Lucinidae). ZooKeys 620: 1-19. https://doi.org/10.3897/zookeys.620.9569
Figure 6 - Shell microstructure of other species Pleurolucina hendersoni, Pleurolucina undata, Lucina pensylvanica and Cardiolucina quadrata. A Pleurolucina hendersoni Guadeloupe, fractured section with prominent calcified conchiolin layer, periostracum at base. Scale bar = 20 µm B Pleurolucina hendersoni, detail of conchiolin layer with lines of calcareous spherulites. Scale bar = 20 µm C Pleurolucina undata Baja California, fractured section with thin conchiolin layer Scale bar = 200 µm D Pleurolucina undata, detail of conchiolin layer with spherulites. Scale bar = 20 µm E Pleurolucina undata, single spherulites embedded in conchiolin. Scale bar = 3 µm F Lucina pensylvanica Florida Keys, calcified conchiolin layer. Scale bar = 20 µm G Lucina pensylvanica, single spherulite. Scale bar = 2 µm H Lucina pensylvanica, section of periostracum with calcareous granules. Shell interior to top. Scale bar = 20 µm I Cardiolucina quadrata Philippines, fractured section with conchiolin layer. Scale bar = 200 µm J Cardiolucina quadrata detail of conchiolin layer with calcareous aggregates. Scale bar = 50 µm K Cardiolucina quadrata detail of calcareous aggregate. Scale bar = 10 µm.
Figure 5 from: Glover EA, Taylor JD (2016) Pleurolucina from the western Atlantic and eastern Pacific Oceans: a new intertidal species from Curaçao with unusual shell microstructure (Mollusca, Bivalvia, Lucinidae). ZooKeys 620: 1-19. https://doi.org/10.3897/zookeys.620.9569
Figure 5 - Failed and multiple drill holes in shells of Pleurolucina harperae. A L = 6.8 mm B L = 9.8 mm C L =7.8 mm D SEM of failed drill hole terminating at conchiolin layer. Scale bar = 1.0 mm.
Figure 4 from: Glover EA, Taylor JD (2016) Pleurolucina from the western Atlantic and eastern Pacific Oceans: a new intertidal species from Curaçao with unusual shell microstructure (Mollusca, Bivalvia, Lucinidae). ZooKeys 620: 1-19. https://doi.org/10.3897/zookeys.620.9569
Figure 4 - Shell microstructure of Pleurolucina harperae. A Fractured section of shell margin showing major notch growth halt and conchiolin layer. Scale bar = 400 µm B Fractured section showing succession of shell layers. Shell exterior at top. Scale bar = 100 µm C Conchiolin layer with regular bands of spherulites. Scale bar = 40 µm D Individual spherulite. Scale bar = 2 µm E Adjacent spherulites embedded in conchiolin with narrow channels between layers. Scale bar = 5 µm F Single spherulites with channels below and above. Scale bar = 5 µm. cl crossed lamellar layer co conchiolin layer cp composite prismatic layer ip irregular prismatic layer p periostracum sp spherulitic prismatic layer.
Figure 3 from: Glover EA, Taylor JD (2016) Pleurolucina from the western Atlantic and eastern Pacific Oceans: a new intertidal species from Curaçao with unusual shell microstructure (Mollusca, Bivalvia, Lucinidae). ZooKeys 620: 1-19. https://doi.org/10.3897/zookeys.620.9569
Figure 3 - Pleurolucina harperae, general anatomy, ctenidia, bacteria, oocytes and sperm. A Right side, with mantle removed, right demibranch and extended foot stained with methylene blue L 7 mm B Left demibranch and foot, critical point dried preparation. Scale bar = 1 mm C Cut section to show general anatomy, stained with methylene blue L 8 mm D Transverse section through single ctenidial demibranch. Scale bar = 100 µm E Surface of bacteriocytes and intercalary cells on lateral view of a ctenidial filament. Scale bar = 15 µm F Spirochaete bacteria on surface of bacteriocytes. Scale bar = 2 µm G, H Symbiotic bacteria contained in bacteriocyte. Scale bar = 5 µm I Developing oocytes. Scale bar = 500 µm J, K Sperm. Scale bars = 5, 2 µm respectively. aa anterior adductor muscle bz bacteriocyte zone cz ciliated zone dg digestive gland f foot lp labial palps me mantle edge ov ovary with oocyctes pa posterior adductor r rectum rd right demibranch st stomach tm thickened mantle ventral to anterior adductor muscle.
Figure 2 from: Glover EA, Taylor JD (2016) Pleurolucina from the western Atlantic and eastern Pacific Oceans: a new intertidal species from Curaçao with unusual shell microstructure (Mollusca, Bivalvia, Lucinidae). ZooKeys 620: 1-19. https://doi.org/10.3897/zookeys.620.9569
Figure 2 - Outline drawings of shell interiors of A Pleurolucina harperae and B Pleurolucina leucocyma.
Figure 1 from: Glover EA, Taylor JD (2016) Pleurolucina from the western Atlantic and eastern Pacific Oceans: a new intertidal species from Curaçao with unusual shell microstructure (Mollusca, Bivalvia, Lucinidae). ZooKeys 620: 1-19. https://doi.org/10.3897/zookeys.620.9569
Figure 1 - Pleurolucina harperae sp. n. A–C Holotype NHMUK 20160338 exterior of right and interior of right and left valves L 8.8 mm. D–P Paratypes. NHMUK 20160339 dorsal view L 7.6 mm. E Exterior of left valve L 7.7 mm. F Interior of right valve L 6.3 mm. G Exterior of right valve L 7.9 mm. H Hinge area of right valve L 8.6 mm. I Exterior of left valve L 63 mm. J, K Interiors of right and left valves L 5.0 mm. L Dorsal view showing lunule. Scale bar = 0.5 mm. M, N Details of hinge teeth of J, K. O Protoconch. Scale bar = 100 µm. P Detail of microsculpture. Scale bar = 20 µm.
Data supplement to 'Astrochronology for the Miocene Climatic Optimum at Ocean Drilling Program Site 959 in the eastern Equatorial Atlantic'
<p>Data supplement to "Astrochronology for the Miocene Climatic Optimum at Ocean Drilling Program Site 959 in the eastern Equatorial Atlantic". </p> <p><strong>Table </strong><strong>T1</strong>: Depth conversion to rmbsf.</p> <p><strong>Table T2</strong>: List of all Early to Middle Miocene calcareous nannofossil and diatom bioevents at ODP Site 959.</p> <p><strong>Table T3</strong>: Diagnostic diatoms range chart</p> <p><strong>Table T4</strong>: Diagnostic calcareous nannofossils range chart</p> <p><strong>Table T5</strong>: Magnetic susceptibility data</p> <p><strong>Table T6</strong>: Bulk carbonate δ<sup>1</sup><sup>8</sup>O and δ<sup>13</sup>C data</p> <p><strong>Table T7</strong>: Wt% CaCO<sub>3 </sub>data</p> <p><strong>Table T8</strong>: DeCrack mean greyscale, redness, greenness and blueness data</p>
Eastern North Atlantic - INP closure study
<p>We provide the data and software for the INP closure study during the Department of Energy (DOE) field campaign, Examining the Ice Nucleating Particles from the Eastern North Atlantic (ExINP-ENA), from October 2020 to December 2020 \cite{hiranuma2022examining}. We perform aerosol-INP closure at ENA. </p>
FIGURE 13 in A New Species of Serranus from São Tomé and Príncipe, Eastern Atlantic (Pisces Teleostei, Serranidae)
FIGURE 13. Serranus heterurus from Senegal (photo Sebastien Blache).
FIGURE 2 in A Synopsis of the Eastern and Central Atlantic Combers of the Genus Serranus (Teleostei: Scorpaeniformes: Serranidae)
FIGURE 2. Serranus atricauda. Adult from Faial Island, Azores. Photograph by Peter Wirtz.
FIGURE 3 in A Synopsis of the Eastern and Central Atlantic Combers of the Genus Serranus (Teleostei: Scorpaeniformes: Serranidae)
FIGURE 3. Serranus atricauda. Juvenile from Faial Island, Azores. Photograph by Peter Wirtz.
FIGURE 6 in A Synopsis of the Eastern and Central Atlantic Combers of the Genus Serranus (Teleostei: Scorpaeniformes: Serranidae)
FIGURE 6. Serranus cabrilla. Adult from the Canary Islands. Photograph by Rogelio Herrera.
Figure 4 from: Costa WJEM (2019) Description of a new species of cynopoeciline killifish (Cyprinodontiformes, Aplocheilidae), possibly extinct, from the Atlantic Forest of south-eastern Brazil. ZooKeys 867: 73-85. https://doi.org/10.3897/zookeys.867.34034
Figure 4 Habitat of L.sanguineus sp. nov. in 1988.
Figure 1 from: Costa WJEM (2019) Description of a new species of cynopoeciline killifish (Cyprinodontiformes, Aplocheilidae), possibly extinct, from the Atlantic Forest of south-eastern Brazil. ZooKeys 867: 73-85. https://doi.org/10.3897/zookeys.867.34034
Figure 1 Leptopanchaxsanguineus sp. nov., MNRJ 51331, holotype, male, 20.9 mm SL. Scale bar: 5 mm.
Physicochemical characterization of free troposphere and marine boundary layer ice-nucleating particles collected by aircraft in the eastern North Atlantic
<p>This repository contains the MATLAB data files to generate the figures pertaining to the STXM/NEXAFS analysis given in the publication:</p> <p>Title: Physicochemical characterization of free troposphere and marine boundary layer ice-nucleating particles collected by aircraft in the eastern North Atlantic<br> Authors: Daniel A. Knopf, Peiwen Wang, Benny Wong, Jay M. Tomlin, Daniel P. Veghte, Nurun N. Lata, Swarup China, Alexander Laskin, Ryan C. Moffet, Josephine Y. Aller, Matthew A. Marcus, and Jian Wang</p> <p>Journal: Atmospheric Chemistry and Physics, accepted 2023</p>
Figure 2 in Two new species of miniature psammophilic sarcoglanidine catfishes of the genus Microcambeva from the Atlantic Forest of eastern Brazil (Siluriformes: Trichomycteridae)
Figure 2. Osteological structures of Microcambeva mucuriensis sp. nov., UFRJ 11841, paratype, 17.6 mm standard length: (a) mesethmoidal region and adjacent structures, left and middle portions, dorsal view; (b) left suspensorium and opercular series, lateral view. Larger stippling represents cartilaginous areas. aao, autopalatine anterior ossification; apw, autopalatine posterior process widening; iap, interopercular anterior process. Scale bar: 0.5 mm.
Figure 1 in Two new species of miniature psammophilic sarcoglanidine catfishes of the genus Microcambeva from the Atlantic Forest of eastern Brazil (Siluriformes: Trichomycteridae)
Figure 1. Microcambeva mucuriensis sp. nov., UFRJ 12123, holotype, 25.2 mm standard length: (a) left lateral view (in life); (b) left lateral view (preserved); (c) head, dorsal view; (d) head, ventral view.
Figure 6 in Two new species of miniature psammophilic sarcoglanidine catfishes of the genus Microcambeva from the Atlantic Forest of eastern Brazil (Siluriformes: Trichomycteridae)
Figure 6. Osteological structures of Microcambeva jucuensis sp. nov., UFRJ 11840, paratype, 22.0 mm standard length: (a) mesethmoidal region and adjacent structures, left and middle portions, dorsal view; (b) left suspensorium and opercular series, lateral view. Arrow indicates the anterior autopalatine ossification. Larger stippling represents cartilaginous areas. aao, autopalatine anterior ossification; apw, autopalatine posterior process widening; iap, interopercular anterior process. Scale bar: 0.5 mm.
FIGURE 2 in In situ observations lead to the discovery of the large ctenophore Kiyohimea usagi (Lobata: Eurhamphaeidae) in the eastern tropical Atlantic
FIGURE 2. Close-up anatomical in situ observations of Kiyohimea usagi showing A) Detail of two auricles; AMC = Auricular meridional canal; ACR = Aurical ctene row; AC = Aurical canal, B) Detail of aboral part; IFC = Infundibular canal; STA = statocyst; IRC = Interradial canal; STO = stomach, C) Detail of the oral section; TA = tentacular apparatus; STMC = subtentacular meridional canal; SSMC = substomadaeal meridional canals; TLMC = translobal meridional canal.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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