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212 results for “Andaman Sea”
FIGURE 1 in Two new species of the genus Galathea Fabricius, 1793 (Crustacea: Decapoda Anomura: Galatheidae) from the Andaman Sea, India
FIGURE 1. Map of the study area indicating collection sites in Indian EEZ. 1, Galathea nicobarica sp. nov.; 2, Galathea tirmiziae sp. nov.
The Mode-2 Internal Solitary Wave Mooring Observations in Andaman Sea
<p>Observation Data of the Second Mode Internal Solitary Waves in Central Andaman Sea (10.17°N, 95.47°E).</p>
FIG. 4 in First record and DNA Barcoding of Oman cownose ray, Rhinoptera jayakari Boulenger, 1895 from Andaman Sea, India
FIG. 4. — Neighbour Joining (NJ) phylogenetic tree of Rhinoptera jayakari Boulenger, 1895 and related species inferred from mitochondrial COI gene sequences.
Figure 1 from: Apiraksena K, Namchote S, Komsuwan J, Dechraksa W, Tharapoom K, Veeravechsukij N, Glaubrecht M, Krailas D (2020) Survey of Stenomelania Fisher, 1885 (Cerithioidea, Thiaridae): The potential of trematode infections in a newly-recorded snail genus at the coast of Andaman Sea, South Thailand. Zoosystematics and Evolution 96(2): 807-819. https://doi.org/10.3897/zse.96.59448
Figure 1 Distribution of collected snails from 13 localities, along the coast of Andaman Sea, south Thailand.
Figure 3 from: Apiraksena K, Namchote S, Komsuwan J, Dechraksa W, Tharapoom K, Veeravechsukij N, Glaubrecht M, Krailas D (2020) Survey of Stenomelania Fisher, 1885 (Cerithioidea, Thiaridae): The potential of trematode infections in a newly-recorded snail genus at the coast of Andaman Sea, South Thailand. Zoosystematics and Evolution 96(2): 807-819. https://doi.org/10.3897/zse.96.59448
Figure 3 Images of Loxogenoides bicolor (Krull, 1933) Kaw 1945. a. Specimen stained with 0.5% neutral red; b. Drawing image; c. Sporocyst stained with 0.5% neutral red. Abbreviations – eb: excretory bladder; p: pharynx; pg: penetration gland; os: oral sucker; s: stylet; sp: sporocyst; ta: tail; vi: virgulate organ; vs: ventral sucker. Scale bars: 100 μm.
Figure 4 from: Apiraksena K, Namchote S, Komsuwan J, Dechraksa W, Tharapoom K, Veeravechsukij N, Glaubrecht M, Krailas D (2020) Survey of Stenomelania Fisher, 1885 (Cerithioidea, Thiaridae): The potential of trematode infections in a newly-recorded snail genus at the coast of Andaman Sea, South Thailand. Zoosystematics and Evolution 96(2): 807-819. https://doi.org/10.3897/zse.96.59448
Figure 4 Haplorchis taichui (Nishigori, 1924) Chen 1936. a. Specimen stained with 0.5% neutral red; b. Drawing image; c. Redia stained with 0.5% neutral red. Abbreviations – dvf: dorso-ventral finfold; eb: excretory bladder; exp: excretory pore; es: eyespot; lf: lateral finfold; os: oral sucker; p: pharynx; pg: penetration gland; re: redia; ta: tail. Scale bar: 100 μm.
Figure 2 from: Apiraksena K, Namchote S, Komsuwan J, Dechraksa W, Tharapoom K, Veeravechsukij N, Glaubrecht M, Krailas D (2020) Survey of Stenomelania Fisher, 1885 (Cerithioidea, Thiaridae): The potential of trematode infections in a newly-recorded snail genus at the coast of Andaman Sea, South Thailand. Zoosystematics and Evolution 96(2): 807-819. https://doi.org/10.3897/zse.96.59448
Figure 2 Shells of Stenomelania sp. (Fisher 1885) from south of Thailand. a. Morph 1: S. cf. aspirans, Krabi Province; b. Morph 2: S. cf. crenulata, Krabi Province; c. Morph 3: Neoradina aff. prasongi, Krabi and Trang Provinces; d. Morph 4: S. cf. punctata, Krabi and Trang Provinces; e. Morph 5: S. cf. torulosa, Krabi, Trang and Satun Provinces. Scale bar: 10 mm.
Figure 5 from: Apiraksena K, Namchote S, Komsuwan J, Dechraksa W, Tharapoom K, Veeravechsukij N, Glaubrecht M, Krailas D (2020) Survey of Stenomelania Fisher, 1885 (Cerithioidea, Thiaridae): The potential of trematode infections in a newly-recorded snail genus at the coast of Andaman Sea, South Thailand. Zoosystematics and Evolution 96(2): 807-819. https://doi.org/10.3897/zse.96.59448
Figure 5 Images of Procerovum cheni Hsȕ, 1951. a. Specimen stained with 0.5% neutral red; b. Drawing of image; c. Sporocyst stained with 0.5% neutral red. Abbreviations – dvf: dorso-ventral finfold eb: excretory bladder; es: eyespot; lf: lateral finfold; os: oral sucker; p: pharynx; pg: penetration gland; re: redia; ta: tail. Scale bar: 100 μm.
Figure 6 from: Apiraksena K, Namchote S, Komsuwan J, Dechraksa W, Tharapoom K, Veeravechsukij N, Glaubrecht M, Krailas D (2020) Survey of Stenomelania Fisher, 1885 (Cerithioidea, Thiaridae): The potential of trematode infections in a newly-recorded snail genus at the coast of Andaman Sea, South Thailand. Zoosystematics and Evolution 96(2): 807-819. https://doi.org/10.3897/zse.96.59448
Figure 6 The phylogenetic relationship of trematodes was constructed using ITS2 sequences, based on neighbour-joining analysis (3,000 bootstrap replications) and the other published DNA sequences obtained from GenBank. Nodes are annotated with bootstrap support value ≥ 50. Taxon names and voucher or GenBank accession numbers are provided at the tips of the tree (see also Table 4).
FIGURE 5 in A new white-spotted moray eel, Gymnothorax aurocephalus sp. nov. (Muraenidae Muraeninae) from Andaman Sea, India
FIGURE 5. Dentition of upper and lower jaws of holotype of Gymnothorax aurocephalus sp. nov.
FIGURE 4 in A new white-spotted moray eel, Gymnothorax aurocephalus sp. nov. (Muraenidae Muraeninae) from Andaman Sea, India
FIGURE 4. Lateral view of head pores of holotype of Gymnothorax aurocephalus sp. nov.
FIGURE 1 in A new white-spotted moray eel, Gymnothorax aurocephalus sp. nov. (Muraenidae Muraeninae) from Andaman Sea, India
FIGURE 1. Map showing the collection locations of Gymnothorax aurocephalus sp. nov.
FIGURE 2 in A new white-spotted moray eel, Gymnothorax aurocephalus sp. nov. (Muraenidae Muraeninae) from Andaman Sea, India
FIGURE 2. Radiograph of holotype of Gymnothorax aurocephalus sp. nov.
Fig. 2. Ehlersileanira andamanensis n in A New Species of the Genus Ehlersileanira (Polychaeta: Sigalionidae) from the Andaman Sea, Thailand
Fig. 2. Ehlersileanira andamanensis n. sp.: A, anterior end, dorsal view, auricles are relatively big but the specimen was drawn at the attitude in order to show the lateral antenna on left, second article of median and left lateral antennae are folding, while that of lateral antennae on right is missing, dorsal tubercles on segment 3 are noticed; B, parapodium of segment 17, anterior view; C, posterior view of B; D, diagrammatic end-view of neuropodium from B, chaetae and stylodes indicated, anterior to left; E, upper neurochaeta (simple, spinous capillary) from B; F–G, neurochaetae (compound spinigers) from B; H, left elytron from segment 17, position of scar indicated; I, parapodium of segment 34, posterior view; J, anterior view of same, PMBC 20304 (A–H) and PMBC 15814 (I–J). Scales=1.0 mm (H), 0.5 mm (A–C, I–J), and 200 µm (E–G). Abbreviation: sp=segmental papilla.
X-ray diffraction (XRD) measurement of bulk and clay mineral composition at India National Gas Hydrate Program 01 (NGHP-01) Sites on the Indian continental margin (Krishna-Godavari Basin, Kerala-Konkan Basin, Mahanadi Basin, Andaman Sea)
<p>This dataset contains bulk and clay mineral relative abundances measured by X-ray diffraction (XRD) measured at 12 offshore sites drilled and cored during the Indian National Gas Hydrate Program 01 (NGHP-01) in 2006 by the JOIDES Resolution. Sediment samples from from the Kerala-Konkan Basin, Arabian Sea (Hole 01A), the Krishna-Godavari Basin, Bay of Bengal (Holes 03B, 05C, 07BD, 10BD, 14A, 15A, 16A, 20AB), the Andaman Sea (Hole 17A), and the Mahanadi Basin, Bay of Bengal (Holes 18A, 19A) were measured for bulk and clay XRD at the University of Missouri using a Scintag Pad V X-ray diffractometer.</p> <p>These sites are between 895 and 2663 m of water depth and were from drilled to depths between 172 and 675 m below seafloor. These data were published in:</p> <p><strong>Phillips, S.C., Johnson, J.E., Underwood, M.B., Guo, J., Giosan, L., and Rose, K., 2014. Long-timescale variation in bulk and clay mineral composition of Indian continental margin sediments in the Bay of Bengal, Andaman Sea, and Arabian Sea. <em>Marine and Petroleum Geology</em> 58A, 117-138, https://doi.org/10.1016/j.marpetgeo.2014.06.018 <a href="https://doi.org/10.1016/j.marpetgeo.2014.06.018">Link</a></strong></p> <p>Samples were collected at a resolution of approximately 1 per core. Four-component relative abundances (total clay, quartz, feldspar, calcite) of bulk sediment powders were calculated using a singular value decomposition (Fisher and Underwood, 1995). Clay fractions were prepared using the filter peel method and 0.45-mm membranes, and saturated with ethylene glycol (Moore and Reynolds, 1997). Clay mineral relative abundances (illite, smectite, kaolinite, chlorite) were calculated using the method of Biscaye (1965) for comparison with previously measured studies from the Indian Ocean. See Phillips et al. (2014) for additional information.</p> <p>References:</p> <p>Biscaye, P.E., 1965. Mineralogy and sedimentation of recent deep-sea clay in the Atlantic Ocean and adjacent seas and oceans. <em>Geological Society of America Bulletin</em>. 76, 803-832. https://doi.org/10.1130/0016-7606(1965)76[803:MASORD]2.0.CO;2</p> <p>Fisher, A.T., Underwood, M.B., 1995. Calibration of an X-ray diffraction method to determine relative mineral abundances in bulk powders using matrix singular value decomposition: a test from the Barbados accretionary complex. In: Shipley, T.H., Ogawa, Y., Blum, P. (Eds.), <em>Proceedings of the Ocean Drilling Program, Initial Reports</em>, vol. 156, pp. 29-37. doi:10.2973/odp.proc.ir.156.103.1995</p> <p>Moore, D.M., Reynolds, R.C., 1997. X-ray <em>Diffraction and the Identification and Analysis of Clay Minerals</em>, second ed. Oxford University Press, New York.</p> <p>Phillips, S.C., Johnson, J.E., Underwood, M.B., Guo, J., Giosan, L., and Rose, K., 2014. Long-timescale variation in bulk and clay mineral composition of Indian continental margin sediments in the Bay of Bengal, Andaman Sea, and Arabian Sea. <em>Marine and Petroleum Geology</em> 58A, 117-138, https://doi.org/10.1016/j.marpetgeo.2014.06.018</p>
Figure 7 from: Rodcharoen E, Bruce NL, Pholpunthin P (2017) Cirolana phuketensis, a new species of marine isopod (Crustacea, Isopoda, Cirolanidae) from the Andaman Sea coast of Thailand. ZooKeys 695: 1-17. https://doi.org/10.3897/zookeys.695.13771
Figure 7 - Cirolana phuketensis sp. n. male holotype, (PSUZC–CR0286-01) (5.0mm) A dorsal view B lateral view. Scale bar: 2 mm.
Figure 4 from: Rodcharoen E, Bruce NL, Pholpunthin P (2017) Cirolana phuketensis, a new species of marine isopod (Crustacea, Isopoda, Cirolanidae) from the Andaman Sea coast of Thailand. ZooKeys 695: 1-17. https://doi.org/10.3897/zookeys.695.13771
Figure 4 - Cirolana phuketensis sp. n., male paratype (PSUZC–CR0286-02) (5.1 mm) A pereopod 1 B mesial view of pereopod 1 C mesial view of dactylus of pereopod 1 D pereopod 2 E pereopod 4 F pereopod 7.
Figure 6 from: Rodcharoen E, Bruce NL, Pholpunthin P (2017) Cirolana phuketensis, a new species of marine isopod (Crustacea, Isopoda, Cirolanidae) from the Andaman Sea coast of Thailand. ZooKeys 695: 1-17. https://doi.org/10.3897/zookeys.695.13771
Figure 6 - Cirolana phuketensis sp. n., male paratype (PSUZC–CR0286-02) (5.1 mm) A uropod B ventral view of uropod peduncle and exopod C pleotelson D pleotelson apex.
Figure 5 from: Rodcharoen E, Bruce NL, Pholpunthin P (2017) Cirolana phuketensis, a new species of marine isopod (Crustacea, Isopoda, Cirolanidae) from the Andaman Sea coast of Thailand. ZooKeys 695: 1-17. https://doi.org/10.3897/zookeys.695.13771
Figure 5 - Cirolana phuketensis sp. n., male paratype (PSUZC–CR0286-02) (5.1 mm) (A–E) pleopods 1–5 respectively.
Figure 3 from: Rodcharoen E, Bruce NL, Pholpunthin P (2017) Cirolana phuketensis, a new species of marine isopod (Crustacea, Isopoda, Cirolanidae) from the Andaman Sea coast of Thailand. ZooKeys 695: 1-17. https://doi.org/10.3897/zookeys.695.13771
Figure 3 - Cirolana phuketensis sp. n., male paratype (PSUZC–CR0286-02) (5.1 mm) A right mandible B dorsal view of article 3 of right mandible palp C distal part of left mandible D right maxilla E right maxillula F right maxilliped G endite.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.