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333 results for “Gulf of Oman”
Figure 10 in Redescription of Euconchoecia chierchiae Müller, 1890 and Euconchoecia aculeata (Scott, 1894) (Halocyprididae: Ostracoda) from the Atlantic, and descriptions of two novel species of Euconchoecia Müller 1890, from the Gulf of Oman
Figure 10. Euconchoecia aculeata male: (A) mandible, coxale not shown, (B) maxilla, (C) sixth limb, (D) caudal furca, (E) intromittent organ.
Figure 9 in Redescription of Euconchoecia chierchiae Müller, 1890 and Euconchoecia aculeata (Scott, 1894) (Halocyprididae: Ostracoda) from the Atlantic, and descriptions of two novel species of Euconchoecia Müller 1890, from the Gulf of Oman
Figure 9. Euconchoecia aculeata male: (A) lateral view, (B) carapace dissected and viewed dorsally – arrows indicate gland openings, (C) first antenna and frontal organ, (D) second antenna viewed from inside, (E) left endopodite viewed from inside, (F) right endopodite viewed from inside.
Figure 3 in Redescription of Euconchoecia chierchiae Müller, 1890 and Euconchoecia aculeata (Scott, 1894) (Halocyprididae: Ostracoda) from the Atlantic, and descriptions of two novel species of Euconchoecia Müller 1890, from the Gulf of Oman
Figure 3. Euconchoecia chierchiae male: (A) lateral view, (B) carapace dissected and viewed dorsally – arrows indicate gland openings, (C) first antenna and frontal organ, (D) second antenna viewed from inside.
Figure 8 in Redescription of Euconchoecia chierchiae Müller, 1890 and Euconchoecia aculeata (Scott, 1894) (Halocyprididae: Ostracoda) from the Atlantic, and descriptions of two novel species of Euconchoecia Müller 1890, from the Gulf of Oman
Figure 8. Euconchoecia aculeata female: (A) mandible, coxale not shown, (B) maxilla, (C) fifth limb, (D) sixth limb, (E) caudal furca.
Figure 2 in Redescription of Euconchoecia chierchiae Müller, 1890 and Euconchoecia aculeata (Scott, 1894) (Halocyprididae: Ostracoda) from the Atlantic, and descriptions of two novel species of Euconchoecia Müller 1890, from the Gulf of Oman
Figure 2. Euconchoecia chierchiae female: (A) mandible, coxale not shown, (B) basal endite of mandible, (C) maxilla, (D) fifth limb, (E) sixth limb, (F) caudal furca.
Figure 7 in Redescription of Euconchoecia chierchiae Müller, 1890 and Euconchoecia aculeata (Scott, 1894) (Halocyprididae: Ostracoda) from the Atlantic, and descriptions of two novel species of Euconchoecia Müller 1890, from the Gulf of Oman
Figure 7. Euconchoecia aculeata female: (A) lateral view, (B) carapace dissected and viewed dorsally – arrows indicate gland openings, (C) first antenna and frontal organ (D) second antenna viewed from inside, (E) endopodite viewed from inside.
Figure 6 in Redescription of Euconchoecia chierchiae Müller, 1890 and Euconchoecia aculeata (Scott, 1894) (Halocyprididae: Ostracoda) from the Atlantic, and descriptions of two novel species of Euconchoecia Müller 1890, from the Gulf of Oman
Figure 6. Euconchoecia chierchiae: (A) as drawn by Müller (1906) female 1.15–1.57 mm, (B) as drawn by Skogsberg (1920) female 1.10–1.30 mm, (C) as drawn by Angel (1993) female 1.08–1.30 mm.
Figure 1 in Redescription of Euconchoecia chierchiae Müller, 1890 and Euconchoecia aculeata (Scott, 1894) (Halocyprididae: Ostracoda) from the Atlantic, and descriptions of two novel species of Euconchoecia Müller 1890, from the Gulf of Oman
Figure 1. Euconchoecia chierchiae female: (A) lateral view, (B) carapace dissected and viewed dorsally – arrows indicate gland openings, (C) first antenna and frontal organ, (D) second antenna viewed from inside, (E) endopodite viewed from inside.
Figure 4 in Redescription of Euconchoecia chierchiae Müller, 1890 and Euconchoecia aculeata (Scott, 1894) (Halocyprididae: Ostracoda) from the Atlantic, and descriptions of two novel species of Euconchoecia Müller 1890, from the Gulf of Oman
Figure 4. Euconchoecia chierchiae male: (A) left endopodite viewed from inside, (B) right endopodite viewed from inside, (C) mandible, coxale not shown, (D) basal endite of mandible, (E) maxilla.
Figure 5 in Redescription of Euconchoecia chierchiae Müller, 1890 and Euconchoecia aculeata (Scott, 1894) (Halocyprididae: Ostracoda) from the Atlantic, and descriptions of two novel species of Euconchoecia Müller 1890, from the Gulf of Oman
Figure 5. Euconchoecia chierchiae male: (A) fifth limb, (B) sixth limb, (C) caudal furca and intromittent organ.
FIGURE 3 in Pilumnidae Samouelle, 1819 (Crustacea: Decapoda: Brachyura: Pilumnidae) of the Persian Gulf and Gulf of Oman, with a note on their phylogeny
FIGURE 3. Pilumnopeus africanus, female CL 11.13 mm, CW 15. 41 (ZUTC 5748). (A) carapace; (B) third maxillipeds; (C) palm of right cheliped (outer face); (D) palm of left cheliped (outer face); (E) carpus of right cheliped (outer face); (F) fourth walking leg.
FIGURE 1 in Pilumnidae Samouelle, 1819 (Crustacea: Decapoda: Brachyura: Pilumnidae) of the Persian Gulf and Gulf of Oman, with a note on their phylogeny
FIGURE 1. Phylogenetic tree of five families, from the concatenation of nucleotide sequence for the mitochondrial gene regions CO1,16Sr RNA and Nuclear gene regions H3. The black star means it is strongly supported by both BI (≥ 90) and ML (≥ 70) and the gray star means it is moderately supported by both BI (≤ 90) and ML (≤ 70). PG= Persian Gulf.
FIGURES 31–42. FIGURES 31–36 in Five new species of Acanthobothrium (Cestoda: Onchoproteocephalidea) from the long-tailed butterfly ray, Gymnura cf. poecilura (Elasmobranchii: Gymnuridae) from the Persian Gulf and Gulf of Oman
FIGURES 31–42. FIGURES 31–36. Scanning electron micrographs of Acanthobothrium halehae n. sp. 31. Scolex. Note: Small numbers on scolex correspond to the figures showing higher magnification images of these surfaces, and white arrow tip show the marginal lappet. 32. Apical pad and hooks. 33. Surface of apical pad. 34. Proximal bothridial surface. 35. Distal bothridial surface. 36. Cephalic peduncle surface. FIGURES 37–42. Scanning electron micrographs of Acanthobothrium makranense n. sp. 37. Scolex. 38. Apical pad and hooks. 39. Surface of apical pad..40. Proximal bothridial surface. 41. Distal bothridial surface. 42. Cephalic peduncle surface. Scale bars: Fig 31=100 µm; Fig. 37=70 µm; Fig. 38=50 µm; Fig. 32=40 µm; Figs. 36, 42=2 µm; Figs. 33, 34, 35, 39, 40, 41=1 µm.
FIGURES 10–21. FIGURES 10–15 in Five new species of Acanthobothrium (Cestoda: Onchoproteocephalidea) from the long-tailed butterfly ray, Gymnura cf. poecilura (Elasmobranchii: Gymnuridae) from the Persian Gulf and Gulf of Oman
FIGURES 10–21. FIGURES 10–15. Scanning electron micrographs of Acanthobothrium omanense n. sp. 10. Scolex. Note: Small numbers on the scolex correspond to the figures showing higher magnification images of these surfaces, and white arrow tip show the marginal lappet. 11. Apical pad and hooks. 12. Surface of apical pad. 13. Proximal bothridial surface. 14. Distal bothridial surface. 15. Cephalic peduncle surface. FIGURES 16–21. Scanning electron micrographs of Acanthobothrium kurdistanense n. sp. 16. Scolex. 17. Apical pad and hooks. 18. Surface of apical pad. 19. Proximal bothridial surface. 20. Surface of anterior region of strobila. 21. Distal bothridial surface. Scale bars: Fig 16=100; Fig. 10=80 µm; Figs. 11, 17=40 µm; Figs 15, 20=2 μm; Figs. 12, 13, 14, 18, 19, 21=1 µm.
FIGURES 47–52 in Five new species of Acanthobothrium (Cestoda: Onchoproteocephalidea) from the long-tailed butterfly ray, Gymnura cf. poecilura (Elasmobranchii: Gymnuridae) from the Persian Gulf and Gulf of Oman
FIGURES 47–52. Scanning electron micrographs of Acanthobothrium persicum n. sp. 47. Scolex. Note: Small numbers on scolex correspond to the figures showing higher magnification images of these surfaces and white arrow tip show the marginal lappet. 48. Apical pad and hooks. 49. Surface of apical pad. 50. Proximal bothridial surface. 51. Distal bothridial surface. 52. Cephalic peduncle surface. Scale bars: Fig. 47=100 µm; Fig. 48=40 µm; Fig. 52=3 µm; Figs. 50=2 µm; Figs. 49, 51=1 µm.
Data from: Ecomorphological adaptation in three mudskippers (Teleostei: Gobioidei: Gobiidae) from the Persian Gulf and the Gulf of Oman
Open the record for dataset details and reuse information.
FIG. 1 in Morphological identification and molecular validation of anchovies (Engraulidae) in the Persian Gulf and Oman Sea
FIG. 1. Sampling areas of Anchovies in northern Persian Gulf and Oman Sea
Figure 9. Paralepidonotus ampulliferus. a anterior end, dorsal view b 1 in Intertidal scale worms (Polychaeta, Polynoidae and Sigalionidae) from the northern coasts of the Persian Gulf and Gulf of Oman
Figure 9. Paralepidonotus ampulliferus. a anterior end, dorsal view b 1st right elytron c ampullae on elytra d fringing papillae e microtubercles f papillae on surface g ventral lamellae h 21st left parapodium, anterior view i notochaeta j upper neurochaeta k middle neurochaetae l lower neurochaeta.
Figure 7. Thormora jukesii. a 9 in Intertidal scale worms (Polychaeta, Polynoidae and Sigalionidae) from the northern coasts of the Persian Gulf and Gulf of Oman
Figure 7. Thormora jukesii. a 9th left parapodium, anterior view b neurochaeta c lower notochaeta d upper neurochaeta.
Figure 3. Lepidonotus purpureus. a anterior end, dorsal view b 3 in Intertidal scale worms (Polychaeta, Polynoidae and Sigalionidae) from the northern coasts of the Persian Gulf and Gulf of Oman
Figure 3. Lepidonotus purpureus. a anterior end, dorsal view b 3rd left elytron c microtubercles d 3rd right parapodium, anterior view e neurochaeta.
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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)
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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.