Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
261
datasets available to search
ShareScore release 0.9.0
Dataset results
261 results for “Arabian Sea”
Fig. 2 in Re-description of two marine sponge species (Demospongiae: Haplosclerida) from the coast of Karachi, Pakistan, Northern Arabian Sea
Fig. 2 — (a) Specimen of Haliclona (Soestella) hornelli (Dendy, 1916) in a rock pool, (b) Preserved specimen of H. (S.) hornelli, (c) Light microscopic image of internal skeletal structure, (d) Scanning electron microscopic image of oxeas (scale = 20 µm), (e) Histological section of ectosomal and choanosomal skeleton (scale = 500 µm), and (f) Spicules (oxeas) in tangential section
Fig. 3 in Re-description of two marine sponge species (Demospongiae: Haplosclerida) from the coast of Karachi, Pakistan, Northern Arabian Sea
Fig. 3 — (a) Specimen of Callyspongia (Cladochalina) fibrosa (Ridley and Dendy, 1886), (b) Light microscopic image of tangential skeleton shows tufted spongin network (scale = 20 µm), (c) Light microscopic image of microtome-section showing spiculo-fibres, and (d) Scanning electron microscopic image of siliceous spicules (scale = 5 µm)
Fig. 1 in Re-description of two marine sponge species (Demospongiae: Haplosclerida) from the coast of Karachi, Pakistan, Northern Arabian Sea
Fig. 1 — Map of Karachi, Pakistan coast showing the collection site of Churna Island and Buleji. (Google Earth Pro: version 7.1.4.1529)
Fig. 1 in A new record of right eyed deep-sea flat fish Poecilopsetta colorata Gunther, 1880 (Pleuronectiformes: Pleuronectidae) from the Arabian Sea
Fig. 1 — Poecilopsetta colorata Gunther, 1880, specimen (SL: 118 mm): a) Lateral view of the adult specimen, and b) Lateral view of the juvenile P. colorata; collected in Southeastern Arabian Sea, Sakthikulangara fishing port, Kerala coast, India; depth of 200 – 300 m
Figure 2 in Objective record of Epinephelus marginatus (Serranidae: Epinephelinae) from the Sultanate of Oman (Arabian Sea)
Figure 2. – Specimens of dusky grouper from Salalah, Oman. A: Epinephelus marginatus, 793 mm TL (MNHN-ICOS-01381). B: E. marginatus, 331 mm TL (MNHN- IC-2019-0025). C: Three individuals of E. marginatus observed at the Salalah fish market on 19/01/2019.
Figure 3 in Distribution and abundance of dinoflagellates from the coastal waters of Karachi, Pakistan, northern part of the Arabian Sea
Figure 3. Monthly distribution of Phytoplankton and dinoflagellate species in offshore (MI-1 and MV-1) and nearshore (MI-2 and MV-2) waters along the Sindh coast of Pakistan. Abbreviations are as: MI: Manora Island; MV: Mubarak Village.
Figure 4 in Distribution and abundance of dinoflagellates from the coastal waters of Karachi, Pakistan, northern part of the Arabian Sea
Figure 4. Principal Component analysis (PCA) of hydro-biological variables, such as, phytoplankton (Phy) and dinoflagellates (Dino) abundance, chlorophyll a (Chl a), dissolved oxygen (DO), salinity (Sal), water temperature (W.tem), pH and transparency (trans) recorded for the coastal and near-shore waters (combined data)
Figure 5 in Temporal variation in the reproductive pattern of blood cockle Anadara antiquata from Pakistan (northern Arabian Sea)
Figure 5. Temporal variation in gonad index (GI) of male and female A. antiquata from Phitti Creek and Sonmiani.
Figure 3 in Temporal variation in the reproductive pattern of blood cockle Anadara antiquata from Pakistan (northern Arabian Sea)
Figure 3. Photomicrographs of A. antiquata: A–D: stages of spermatogenesis; E–H: stages of oogenesis. A, E: Developing; B, F: Ripe; C, G: Spawned out; D, H: Resorbing. Abbreviations: F - Follicle, Sc - Spermatocytes; St - Spermatids; Sz - Spermatozoa; Ef - Empty follicle; Ct - Connective tissue; Og - Oogonia; Pvo - Previtellogenic oocyte; Vo - Vitellogenic oocyte; N - Nucleus; n - nucleolus; Mo - Mature oocyte; Ao - Atretic oocyte.
Figure 8. a in Echinodermata of Lakshadweep, Arabian Sea with the description of a new genus and a species
Figure 8. a. Ophiothrix (Ophiothrix) marginata, disc and arms, dorsal view, b. Ophiothrix (Ophiothrix) marginata, ventral view of part of an arm, c. Ophiothrix (Ophiothrix) marginata, enlarged view of clavate arm spines.
Figure 11. a. Diadema savignyi, b. Echinothrix calamaris, c. Tripneustes gratilla, d in Echinodermata of Lakshadweep, Arabian Sea with the description of a new genus and a species
Figure 11. a. Diadema savignyi, b. Echinothrix calamaris, c. Tripneustes gratilla, d. Echinometra mathaei, with olive-green spines, e. Echinometra mathaei, with black spines, f. Stomopneustes variolaris.
Figure 6. a in Echinodermata of Lakshadweep, Arabian Sea with the description of a new genus and a species
Figure 6. a. Gymnolophus obscura, dorsal view, b. Gymnolophus obscura, ventral view, c. Macrophiothrix longipeda, d. Ophiothrix (Acanthophiothrix) purpurea, e. Ophiocoma scolopendrina, f. Ophiomastix elegans.
Figure 5. a. Culcita novaeguineae, b. Culcita schmideliana, c in Echinodermata of Lakshadweep, Arabian Sea with the description of a new genus and a species
Figure 5. a. Culcita novaeguineae, b. Culcita schmideliana, c. Echinaster luzonicus, abactinal view, d. Echinaster luzonicus, actinal view of an arm.
Figure 13. a in Echinodermata of Lakshadweep, Arabian Sea with the description of a new genus and a species
Figure 13. a. Holothurian sp. 1, b. Holothurian sp. 2, c. Holothurian sp. 3, d. Holothurian sp. 4, e. Echinostrephus molaris.
Figure 4. a in Echinodermata of Lakshadweep, Arabian Sea with the description of a new genus and a species
Figure 4. a. Fromia nodosa, abactinal view, b. Fromia nodosa, actinal view, c. Dactylosaster cylindricus, d. Linckia laevigata, e. Linckia multifora, f. Choriaster granulatus.
Figure 2 in Amphibians of Anjudiva Archipelago West Coast, Arabian Sea, India
Figure 2. Anjudiva archipelago: 1*. Anjudiva Island; 2. Maharshi Agastya Temple Island; 3. Mogeragudda Island; 4*. Devagadgudda Island; 5. Madhyalingad Island; 6*. Kurmagadh Island; 7. Flamingo Island; 8. Kangigudda Island (* indicates islands with frog populations) (long lines are break water bridges and barriers); Main Land: Karnataka State.
Figure 2. - K2P in Range extension of Gerres infasciatus (Perciformes: Gerreidae) from the Red Sea and the Arabian Gulf, with distributional implications for the G. filamentosus complex
Figure 2. - K2P distance neighbouring-joining tree of COI sequences (615 bp) of gerreid species in the Gerres filamentosus complex; G. oyena used as outgroup.
Figure 1. - Gerres filamentosus complex. A in Range extension of Gerres infasciatus (Perciformes: Gerreidae) from the Red Sea and the Arabian Gulf, with distributional implications for the G. filamentosus complex
Figure 1. - Gerres filamentosus complex. A: Gerres infasciatus. SMF 35412, 99.5 mm SL, off Jizan, Saudi Arabia, Red Sea; B: G. microphthalmus, NSMT-P 45901, holotype, female, 189 mm SL, Kyushu, Japan; C: G. macracanthus, SMF 35037, 98 mm SL, off Jizan, Saudi Arabia, Red Sea; D: G. filamentosus, KAUMI 12250, 139 mm SL, off Sabah, Borneo Island, Malaysia. Photographs (A, C) were taken by S.V. Bogorodsky and (D) by M. Matsunuma.
Figure 1 in New record and redescription of Uranoscopus crassiceps Alcock, 1890 (Uranoscopidae) from Oman, Arabian Sea, northwestern Indian Ocean, based on adult specimens
Figure 1. - Uranoscopus crassiceps, OMMSFC 1086, 270 mm SL, Oman. A: Lateral view; B: Lateral view of head; C: Dorsal view of head; D: Ventral view of head; E: Anterior view of head.
Table 4 in A new species of Tortanus (Atortus) (Copepoda, Calanoida, Tortanidae) from Minicoy Island, southeastern Arabian Sea
<p><b>Table 4.</b> Differential diagnosis of the female <i>T. minicoyensis</i> <b>sp. nov.</b> from all other species of the subgenus <i>Atortus</i> from the Indian Ocean.</p><table><tbody><tr><th><b>Species</b></th><th><b>Fifth pedigerous somite</b></th><th><b>Coupling device</b></th><th><b>Genital compound somite</b></th><th><b>Caudal rami</b></th></tr></tbody><tbody><tr><th><b><i>T. minicoyensis</i> sp. nov.</b></th><td>Asymmetrical, left margin with a notch and right margin with a single downward directed triangular lobe (Figures 2A, 2C, 2D)</td><td>Left process larger than right covering the Asymmetrical, right dorsolateral process of fifth margin with a bulge pedigerous somite and at midpoint with 2 lateral surface of genital ventrolateral spines compound somite (Figure 2D) (Figures 2C, 2D)</td><td>Asymmetrical with 2 rounded medial processes, left ramus slightly larger than the right (Figures 2C, 2D)</td></tr><tr><th><i>T. andamanensis</i></th><td>The right process produced more posteriorly than the left (Nishida et al., 2015, fig. 1A)</td><td>Right process larger, covering the dorsolateral process of the fifth pediger and right lateral surface of genital compound somite (Nishida et al., 2015, figs. 1A, 1B)</td><td>Right anterolateral margin slightly swollen (Nishida et al., 2015, fig. 1D)</td><td>Symmetrical with left ramus slightly produced medially while the right ramus concave (Nishida et al., 2015, figs. 1A, 1D)</td></tr><tr><th><i>T. magnonyx</i></th><td>Asymmetrical, with right side more swollen. (Ohtsuka and Conway, 2005, fig. 2A)</td><td>Not described</td><td>Asymmetrical, expanded anterolaterally, with a pointed process on the right ventrolateral side (Ohtsuka and Conway 2005, figs. 2A–2H)</td><td>Asymmetrical, left ramus larger and wider than right, constricted at base (Ohtsuka and Conway, 2005, figs. 2A, 2C, 2D)</td></tr><tr><th><i>T. insularis</i></th><td>Symmetrical in dorsal view (Ohstuka and Conway, Not described 2003, figs. A, F)</td><td>Asymmetrical, expanded anterolaterally on both sides with peg sensillum at tip (Ohstuka and Conway, 2003, figs. 2C–2E)</td><td>Asymmetrical, left ramus larger than right (Ohstuka and Conway, 2003, figs. 2A, 2C, 2D)</td></tr><tr><th></th><td>Nearly symmetrical, the</td><td></td><td></td><td>Asymmetrical with</td></tr><tr><th><i>T. tropicus</i></th><td>right side being produced backwards in a wing-like process</td><td>Not described (Sewell, 1932, fig. 131a)</td><td>Asymmetrical, small bulge on the left side (Sewell, 1932, fig. 131a)</td><td>distinctly stouter left ramus at its base than that of right (Sewell, 1932, fig.</td></tr><tr><th></th><td>(Sewell, 1932, fig. 131a)</td><td></td><td></td><td>131a)</td></tr><tr><th></th><td></td><td></td><td>Asymmetrical, expanded</td><td></td></tr><tr><th></th><td></td><td></td><td>anterolaterally on both</td><td></td></tr><tr><th></th><td></td><td></td><td>sides ending in small</td><td>Asymmetrical, left ramus</td></tr><tr><th><i>T. recticauda</i></th><td>Symmetrical (Bowman, 1987, fig. 1A)</td><td>Not described</td><td>papilla with apical spinule; right expansion strongly</td><td>slightly wider and longer than right (Bowman,</td></tr><tr><th></th><td></td><td></td><td>convex to straight laterally</td><td>1987, figs. 1A, 1C)</td></tr><tr><th></th><td></td><td></td><td>(Bowman, 1987, figs.</td><td></td></tr><tr><th></th><td></td><td></td><td>1A–1C)</td><td></td></tr></tbody></table>
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.