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288 results for “marine coasts”

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zenodo32/100

FIGURE 1 in Polyphasic analysis for elucidating the taxonomic position of selected unicellular marine cyanobacteria from Indian and Hong Kong coast

FIGURE 1. Bright field photomicrographs of a. BDU 10144. b. BDU 70542. c. BDU 140431. d. BDU 141741. e. BDHKU 20401. f. BDHKU 35301 g. BDU 130052. h. BDU 100913. i. BDU 130192. j. BDU 130911. k. BDHKU 35101. l. BDU 20121. Scale bar: 10μm.

opennotspecifiedMay 2017View details →
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FIGURE 4 in Polyphasic analysis for elucidating the taxonomic position of selected unicellular marine cyanobacteria from Indian and Hong Kong coast

FIGURE 4. Length of ITS region of the studied marine unicellular cyanobacteria —Spacer 1, —tRNAIle, —spacer2, —tRNAAla, —Spacer 3 and their GC content are presented within parenthesis.

opennotspecifiedMay 2017View details →
zenodo32/100

FIGURE 3 in Polyphasic analysis for elucidating the taxonomic position of selected unicellular marine cyanobacteria from Indian and Hong Kong coast

FIGURE 3. Phylogenetic estimation on relationship of marine unicellular cyanobacteria inferred by maximum likelihood analysis of 16S rRNA gene sequences (~1386 bp). Number at nodes indicates the bootstrap values (1000 replicates) obtained from the analysis. Bootstrap values (≥ 50%) are indicated on the branches. The investigated strains are marked with a black triangle.

opennotspecifiedMay 2017View details →
zenodo32/100

FIGURES 75–90 in Marine benthic diatoms in the newly discovered coral reefs, off Basra coast, Southern Iraq

FIGURES 75–90. Marine benthic diatoms in coral reefs off Basra. Figs 75, 76. Amphora grevilleana, Figs 77, 78. Amphora janischii, Figs 79, 80. Amphora maletracta var. constricta, Fig. 81. Amphora marina, Fig. 82. Amphora mexicana, Figs 83, 84. Amphora ocellata, Figs 85,86. Tetramphora ostrearia, Figs 87,88. Tetramphora rhombica, Fig. 89. Amphora spectabilis, Fig. 90. Amphora sp.

opennotspecifiedOct 2018View details →
zenodo32/100

FIGURES 91–102 in Marine benthic diatoms in the newly discovered coral reefs, off Basra coast, Southern Iraq

FIGURES 91–102. Marine benthic diatoms in coral reefs off Basra. Fig. 91. Nitzschia behrei, Fig. 92. Nitzschia distans, Fig. 93. Nitzschia fluminensis, Fig. 94. Nitzschia lorenziana, Fig. 95. Nitzschia sigma, Fig. 96. Nitzschia sp., 97. Pssamodictyon panduriformis Fig. 98. Tryblionella coarctata, Fig. 99. Tryblionella didyma, Fig. 100. Tryblionella nicobarica, Fig., Fig. 101. Amphiprora sulcata, Fig. 102. Auricula intermedia.

opennotspecifiedOct 2018View details →
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FIGURES 103–110 in Marine benthic diatoms in the newly discovered coral reefs, off Basra coast, Southern Iraq

FIGURES 103–110. Marine benthic diatoms in coral reefs off Basra. Fig. 103. Campylodiscus bicostatus, Fig. 104. Campylodiscus crebrecostatus, Fig. 105. Campylodiscus daemelianus, Fig. 106. Campylodiscus decorus, Fig. 107. Campylodicus imperialis, Fig. 108. Petrodictyon gemma, Fig. 109. Surirella fastuosa, Fig. 110. Campylodiscus neofastuosus.

opennotspecifiedOct 2018View details →
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FIGURES 52–61 in Marine benthic diatoms in the newly discovered coral reefs, off Basra coast, Southern Iraq

FIGURES 52–61. Marine benthic diatoms in coral reefs off Basra. Fig. 51. Navicula distans., Fig. 52. Navicula kariana var. frigida, Fig. 53. Navicula transistantioides, Fig. 54. Navicula sp., Fig. 55. Seminavis sp., Fig. 56. Trachyneis antillarum, Fig. 57. Trachyneis aspera, Fig. 58. Trachyneis clepsydra, Fig. 59. Trachyneis debyi, Fig. 60. Tracyneis velata, Fig. 61. Donkinia carinata.

opennotspecifiedOct 2018View details →
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FIGURES 62–74 in Marine benthic diatoms in the newly discovered coral reefs, off Basra coast, Southern Iraq

FIGURES 62–74. Marine benthic diatoms in coral reefs off Basra. Fig. 62. Pleurosigma diverse-striatum, Fig. 63. Pleurosigma strigosum, Figs 64, 65. Plagiotropis lepidoptera, Fig. 66. Stauroneis sp., Fig. 67. Amphora arcuata, Fig. 68. Amphora arenaria, Fig. 69. Amphora cf. commutata, Fig. 70. Amphora cingulata, Fig. 71. Halamphora coffeaeformis, Fig. 72. Halamphora costata, Figs 73,74. Amphora graeffeana.

opennotspecifiedOct 2018View details →
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FIGURES 21–37 in Marine benthic diatoms in the newly discovered coral reefs, off Basra coast, Southern Iraq

FIGURES 21–37. Marine benthic diatoms in coral reefs off Basra. Fig. 21. Mastogloia quinquecostata, Fig. 22. Cocconeis latecostata, Fig. 23. Berkeleya scopuloru, Figs 24, 25. Climaconei sp. Fig. 26. Parlibellus rhombiformis, Fig. 27. Parlibellus sp., Fig. 28. Biremis ambigua, Fig. 29. Fallacia forcipata, Fig. 30. Fallacia nummularia, Fig. 31 Fallacia sp., Fig. 32. Progonoia musca, Fig. 33. Caloneis elongata, Fig. 34. Caloneis liber, Fig. 35. Diploneis cf. interrupta, Fig. 36. Diploneis chersonensis, Fig. 37. Diploneis fusca.

opennotspecifiedOct 2018View details →
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FIGURES 38–51 in Marine benthic diatoms in the newly discovered coral reefs, off Basra coast, Southern Iraq

FIGURES 38–51. Marine benthic diatoms in coral reefs off Basra. Fig. 38. Diploneis gemmatula, Fig. 39. Diploneis nitescens, Fig. 40. Diploneis smithii, Figs 41, 42. Diploneis weissflogii, Fig, 43. Diploneis sp., Fig. 44. Navicula arenaria, Fig. 45. Navicula cancellata, Figs 46–48. Navicula carinifera, Fig. 49. Navicula cf. cincta, Fig. 50. Navicula directa, Fig. 51. Navicula distans.

opennotspecifiedOct 2018View details →
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FIGURES 11–20 in Marine benthic diatoms in the newly discovered coral reefs, off Basra coast, Southern Iraq

FIGURES 11–20. Marine benthic diatoms in the coral reefs off Basra. Fig. 11. Actinocyclus curvatulus, Fig. 12. Actinocyclus octonarius, Fig. 13. Lyrella abrupta, Fig. 14. Lyrella clavata, Fig. 15. Lyrella hennedyi, Fig. 16. Lyrella hennedyi var. subcarinata, Fig. 17, Lyrella spectabilis, Fig. 18. Petroneis granulata, Fig. 19. Petroneis marina, Fig. 20. Petroneis sp.

opennotspecifiedOct 2018View details →
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FIGURES 2–10 in Marine benthic diatoms in the newly discovered coral reefs, off Basra coast, Southern Iraq

FIGURES 2–10. Marine benthic diatoms in the coral reefs off Basra. Fig. 2. Cyclotella striata, Fig. 3. Cyclotella stylorum, Fig. 4. Tryblioptychus cocconeiformis, Figs 5, 6. Podosira stelliger, Fig. 7. Paralia sulcata, Fig. 8. Coscinodiscus centralis, Fig. 9. Coscinodiscus marginatus, Fig. 10. Triceratium robertsianum.

opennotspecifiedOct 2018View details →
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FIGURE. 4 in Checklist of marine benthic algae from the Russian continental coast of the Sea of Japan

FIGURE. 4. Number of species of green algae, distributed by families, registered along the Russian continental coast of the Sea of Japan: a) all studying area, b) northern part, c) southern part.

opennotspecifiedMar 2020View details →
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FIGURE 3 in Checklist of marine benthic algae from the Russian continental coast of the Sea of Japan

FIGURE 3. Number of species of brown algae, distributed by families, registered along the Russian continental coast of the Sea of Japan: a) all studying area, b) northern part, c) southern part.

opennotspecifiedMar 2020View details →
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FIGURE 1 in Checklist of marine benthic algae from the Russian continental coast of the Sea of Japan

FIGURE 1. Map of the Russian continental coast of the Sea of Japan showing the northern (I) and southern (II) parts of the studying area.

opennotspecifiedMar 2020View details →
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Data from: Nuclear markers reveal a complex introgression pattern among marine turtle species on the Brazilian coast

A surprisingly high frequency of interspecific sea turtle hybrids have been previously recorded in a nesting site along a short stretch of the Brazilian coast. Mitochondrial DNA data indicated that as much as 43% of the females identified as E. imbricata are hybrids in this area (Bahia State of Brazil). It is a remarkable find, since most of the nesting sites surveyed worldwide, including some in northern Brazil, presents no hybrids, and rare Caribbean sites present no more than 2% of hybrids. Thus, a detailed understanding of the hybridization process is needed to evaluate natural or anthropogenic causes of this regional phenomenon in Brazil, which could be an important factor affecting the conservation of this population. We analyzed a set of 12 nuclear markers to investigate the pattern of hybridization involving three species of sea turtles: hawksbill (Eretmochelys imbricata), loggerhead (Caretta caretta), and olive ridley (Lepidochelys olivacea). Our data indicate that most of the individuals in the crossings L. olivacea × E. imbricata and L. olivacea × C. caretta are F1 hybrids, whereas C. caretta × E. imbricata crossings present F1 and backcrosses with both parental species. In addition, the C. caretta × E. imbricata hybridization seems to be gender and species biased, and we also found one individual with evidence of multispecies hybridization among C. caretta × E. imbricata × Chelonia mydas. The overall results also indicate that hybridization in this area is a recent phenomenon, spanning at least two generations or ~40 years.

opencc-zeroDec 2011View details →
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FIGURE 2. Pseudochromadora reathae n in New free-living marine nematode species (Nematoda: Desmodoridae) from the coast of New Zealand

FIGURE 2. Pseudochromadora reathae n. sp. Female. A. Entire female. B. Lateral surface view of head. C. Lateral surface view of head. Scale bar: A = 24 µm; B, C = 20 µm.

opennotspecifiedSep 2010View details →
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FIGURE 6. Pseudodesmodora lacrima n in New free-living marine nematode species (Nematoda: Desmodoridae) from the coast of New Zealand

FIGURE 6. Pseudodesmodora lacrima n. sp. Female. A. Entire female. B. Lateral surface view of head. C. Posterior body region showing details of cuticle in surface view. Scale bar: A = 110 µm; B, C = 30 µm.

opennotspecifiedSep 2010View details →
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FIGURE 5. Pseudodesmodora lacrima n in New free-living marine nematode species (Nematoda: Desmodoridae) from the coast of New Zealand

FIGURE 5. Pseudodesmodora lacrima n. sp. Male. A. Entire male. B. Lateral surface view of head. C. Lateral view of head showing internal structures. D. Posterior body region showing copulatory apparatus. Scale bar: A = 80 µm; B, C, D = 20 µm.

opennotspecifiedSep 2010View details →
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FIGURE 4. Pseudochromadora reathae n in New free-living marine nematode species (Nematoda: Desmodoridae) from the coast of New Zealand

FIGURE 4. Pseudochromadora reathae n. sp. SEM. A. Lateral view of female head. B. Lateral view of female neck region showing spines and ecto-symbiotic bacteria. Scale bars: A, B = 10 µm.

opennotspecifiedSep 2010View details →

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Allen Brain Atlas

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Last verified 2026-04-30Open record

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.

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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.

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Last verified 2026-04-29Open record

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.

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Last verified 2026-04-29Open record