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741 results for “Atlantic Water”
Figure 9 from: Corgosinho PHC, Kihara TC, Schizas NV, Ostmann A, Arbizu PM, Ivanenko VN (2018) Traditional and confocal descriptions of a new genus and two new species of deep water Cerviniinae Sars, 1903 from the Southern Atlantic and the Norwegian Sea: with a discussion on the use of digital media in taxonomy (Copepoda, Harpacticoida, Aegisthidae). ZooKeys 766: 1-38. https://doi.org/10.3897/zookeys.766.23899
Figure 9 Hase lagomorphicus gen. et sp. n. Holotype (female) (M48/1, 330, DIVA-I): A P1; a1- P1 enp.; b3- P2 enp-2. Paratype (Copepodite V) (M48/1, 330, DIVA-I) B P2; b1- P2 enp; b2- P2 enp-3.
Figure 7 from: Corgosinho PHC, Kihara TC, Schizas NV, Ostmann A, Arbizu PM, Ivanenko VN (2018) Traditional and confocal descriptions of a new genus and two new species of deep water Cerviniinae Sars, 1903 from the Southern Atlantic and the Norwegian Sea: with a discussion on the use of digital media in taxonomy (Copepoda, Harpacticoida, Aegisthidae). ZooKeys 766: 1-38. https://doi.org/10.3897/zookeys.766.23899
Figure 7 Hase lagomorphicus gen. et sp. n. Confocal laser scanning images. Holotype (female) (M48/1, 330, DIVA-I): A A2 B labrum, anterior C labrum, labium and Md, ventral D Md, anterior E Md, posterior.
Figure 19 from: Corgosinho PHC, Kihara TC, Schizas NV, Ostmann A, Arbizu PM, Ivanenko VN (2018) Traditional and confocal descriptions of a new genus and two new species of deep water Cerviniinae Sars, 1903 from the Southern Atlantic and the Norwegian Sea: with a discussion on the use of digital media in taxonomy (Copepoda, Harpacticoida, Aegisthidae). ZooKeys 766: 1-38. https://doi.org/10.3897/zookeys.766.23899
Figure 19 Hase talpamorphicus gen. et sp. n. Holotype (female) (M85/3, 1164): A P3 BP4 C variable P4 exp-3 found on the other side of the same specimen D P5, double genital somite and following urosomites.
Figure 8 from: Corgosinho PHC, Kihara TC, Schizas NV, Ostmann A, Arbizu PM, Ivanenko VN (2018) Traditional and confocal descriptions of a new genus and two new species of deep water Cerviniinae Sars, 1903 from the Southern Atlantic and the Norwegian Sea: with a discussion on the use of digital media in taxonomy (Copepoda, Harpacticoida, Aegisthidae). ZooKeys 766: 1-38. https://doi.org/10.3897/zookeys.766.23899
Figure 8 Hase lagomorphicus gen. et sp. n. Confocal laser scanning images. Holotype (female) (M48/1, 330, DIVA-I): A Mx1, posterior B Mx1, anterior C Mx2, anterior D Mx2, posterior E Mp, anterior.
Figure 4 from: Corgosinho PHC, Kihara TC, Schizas NV, Ostmann A, Arbizu PM, Ivanenko VN (2018) Traditional and confocal descriptions of a new genus and two new species of deep water Cerviniinae Sars, 1903 from the Southern Atlantic and the Norwegian Sea: with a discussion on the use of digital media in taxonomy (Copepoda, Harpacticoida, Aegisthidae). ZooKeys 766: 1-38. https://doi.org/10.3897/zookeys.766.23899
Figure 4 Hase lagomorphicus gen. et sp. n. Holotype (female) (M48/1, 330, DIVA-I): A A1 B A2 C labrum D labium E P5 and genital double somite F furca.
Figures 8-10 from: De Assis JE, Souza JRB, Lima MM, Lima GV, Cordeiro RTS, Pérez CD (2019) Association between deep-water scale-worms (Annelida: Polynoidae) and black corals (Cnidaria: Antipatharia) in the Southwestern Atlantic. Zoologia 36: 1-13. https://doi.org/10.3897/zoologia.36.e28714
Figures 8-10 (8) Corallum morphology of Stylopathesadinocrada; (9) pinnulation pattern of S.adinocrada, showing the "worm run"; (10) organization of spines in S.adinocrada. Scale bars: 8–9 = 10 mm, 10: 100 µm.
Figures 2-7 from: De Assis JE, Souza JRB, Lima MM, Lima GV, Cordeiro RTS, Pérez CD (2019) Association between deep-water scale-worms (Annelida: Polynoidae) and black corals (Cnidaria: Antipatharia) in the Southwestern Atlantic. Zoologia 36: 1-13. https://doi.org/10.3897/zoologia.36.e28714
Figures 2-7 (2) Benhamypolynoecf.antipathicola on the branches of Stylopathesadinocrada: (3) median chaetigers of B.antipathicola showing elytrophores, elytra and dorsal cirri; (4) head of B.antipathicola showing the prostomium, palps and antennae; (5) posterior chaetigers of B.antipathicola showing the ventral cirrus and neuropodia; (6) neurochaetae from posterior chaetigers, showing a faint serration; (7) detail of distal tip of neurochaetae. (ch) chaetae, (dc) dorsal cirrus, (el) elytra, (et) elytrophore, (ct) cirratophore, (la) lateral antennae; (ma) median antennae, (ne) neuropodium, (pa) parapodium, (pl) palp, (pr) prostomium, (tc) tentacular cirrus. Scale bars: 2–4: 1 mm, 5 = 200 µm, 6 = 100 µm, 7 = 10 µm.
Figures 15-18 from: De Assis JE, Souza JRB, Lima MM, Lima GV, Cordeiro RTS, Pérez CD (2019) Association between deep-water scale-worms (Annelida: Polynoidae) and black corals (Cnidaria: Antipatharia) in the Southwestern Atlantic. Zoologia 36: 1-13. https://doi.org/10.3897/zoologia.36.e28714
Figures 15-18 (15) Head of P.cf.greeffi showing the prostomium and their structures; (16) Parapodia of P.cf.greeffi showing notochaetae and neurochaetae; (17) Neurochaetae from median chaetigers of P.cf.greeffi; (18) Detail of distal tip of neurochaetae. (ch) Chaetae, (cp) cephalic peak, (la) lateral antennae, (ma) median antennae, (ng) nuchal groove, (pl) palp, (pr) prostomium. Scale bars: 15 = 1 mm, 16–17 = 100 µm, 18 = 10 µm.
Figures 19-21 from: De Assis JE, Souza JRB, Lima MM, Lima GV, Cordeiro RTS, Pérez CD (2019) Association between deep-water scale-worms (Annelida: Polynoidae) and black corals (Cnidaria: Antipatharia) in the Southwestern Atlantic. Zoologia 36: 1-13. https://doi.org/10.3897/zoologia.36.e28714
Figures 19-21 (19) Corallum morphology of Tanacetipathestanacetum; (20) cross section showing pinnules cycle of T.tanacetum; (21) organization of spines in T.tanacetum. Sacale bars: 19, 20 = 1 cm, 21 = 200 μm.
Figure 1 from: De Assis JE, Souza JRB, Lima MM, Lima GV, Cordeiro RTS, Pérez CD (2019) Association between deep-water scale-worms (Annelida: Polynoidae) and black corals (Cnidaria: Antipatharia) in the Southwestern Atlantic. Zoologia 36: 1-13. https://doi.org/10.3897/zoologia.36.e28714
Figure 1 Records of association of scale-worm polynoids and black corals from deep-water in South America, Northeastern Brazil: (A) record of Benhamypolynoecf.antipathicola, and its antipatharian hosts Stylopathesadinocrada in Potiguar Basin; (B) records of association of Parahololepidellacf.greeffi and its antipatharian hosts (Tanacetipathesbarbadensis, T.tanacetum and T.thamnea) in Potiguar Basin, Brazil.
Figures 11-14 from: De Assis JE, Souza JRB, Lima MM, Lima GV, Cordeiro RTS, Pérez CD (2019) Association between deep-water scale-worms (Annelida: Polynoidae) and black corals (Cnidaria: Antipatharia) in the Southwestern Atlantic. Zoologia 36: 1-13. https://doi.org/10.3897/zoologia.36.e28714
Figures 11-14 (11) Parahololepidellacf.greeffi on the branches of Tanacetipathestanacetum; (12) median chaetigers of P.greeffi showing elytra and dorsal cirri; (13) head of P.greeffi showing the prostomium, palps and antennae; (14) elytrae from posterior chaetigers of P.cf.greeffi showing a smooth edge. (cp) Cephalic peak, (dc) dorsal cirrus, (el) elytra, (et) elythophore, (la) lateral antennae, (ma) median antennae, (pa) parapodium, (pl) palp, (pr) prostomium, (tc) tentacular cirrus. Scale bars: 11–13 = 1 mm, 14 = 100 µm.
Figures 22-27 from: De Assis JE, Souza JRB, Lima MM, Lima GV, Cordeiro RTS, Pérez CD (2019) Association between deep-water scale-worms (Annelida: Polynoidae) and black corals (Cnidaria: Antipatharia) in the Southwestern Atlantic. Zoologia 36: 1-13. https://doi.org/10.3897/zoologia.36.e28714
Figures 22-27 (22) Corallum morphology of Tanacetipathesbarbadensis; (23) cross section showing pinnules cycle of T.barbadensis; (24) organization of spines in T.barbadensis; (25) corallum morphology of Tanacetipathesthamnea; (26) cross section showing pinnules cycle of T.thamnea; (27) organization of spines in T.thamnea. Scale bars: 22, 23, 25, 26 = 1 cm, 24 = 200 μm, 27 = 150 μm.
Figure 3 in Reproductive features of the deep water hermit crab Sympagurus dimorphus (Anomura: Parapaguridae) inhabiting pseudoshells in the SW Atlantic Ocean
Figure 3. Sympagurus dimorphus. Relations among pseudoshell length and shield length vs. volume.
FIG. 34. Limatula demiradiata. Sta. z398 in The Recent species of the genera Limatula and Limea (Bivalvia, Limacea) present in the Atlantic, with particular reference to those in deep water
FIG. 34. Limatula demiradiata. Sta. z398, dorsal view of shell. Scale bar: 1 mm.
FIG. 29. Limatula laminifera. Sta. 118 in The Recent species of the genera Limatula and Limea (Bivalvia, Limacea) present in the Atlantic, with particular reference to those in deep water
FIG. 29. Limatula laminifera. Sta. 118, lateral view of shell from the left side. Scale bar: 1 mm.
FIG. 26. Limatula thalassae. Sta. z387 in The Recent species of the genera Limatula and Limea (Bivalvia, Limacea) present in the Atlantic, with particular reference to those in deep water
FIG. 26. Limatula thalassae. Sta. z387, lateral view of shell from left side. Scale bar: 1 mm.
FIG. 23 in The Recent species of the genera Limatula and Limea (Bivalvia, Limacea) present in the Atlantic, with particular reference to those in deep water
FIG. 23. Limatula celtica. Sta. Incal DS16, dorsal view of shell. Scale bar: 1 mm.
FIG. 18. Limatula smithi. Sta. 189 in The Recent species of the genera Limatula and Limea (Bivalvia, Limacea) present in the Atlantic, with particular reference to those in deep water
FIG. 18. Limatula smithi. Sta. 189, dorsal view of shell. Scale bar: 1 mm.
FIG. 6 in The Recent species of the genera Limatula and Limea (Bivalvia, Limacea) present in the Atlantic, with particular reference to those in deep water
FIG. 6. Limatula subovata. Sta. DS 02, detail of right demibranch. Scale bar: 1 mm.
FIG. 17. Limatula smithi. Sta. 191 in The Recent species of the genera Limatula and Limea (Bivalvia, Limacea) present in the Atlantic, with particular reference to those in deep water
FIG. 17. Limatula smithi. Sta. 191, lateral view of shell from right side. Scale bar: 1 mm.
ScienceDex guides
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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)
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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.