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FIGURE 41 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)
FIGURE 41. Owstonia hawaiiensis, male, Hawaiian Islands, 19 ° 52 ' 9.8 " N, 156 ° 6 ' 4 " W, Tiburon 292, depth 408.5 m, 13 April 2001. Video frame-grab, color corrected by Lonny Lundsten, image courtesy © 2001 MBARI.
FIGURE 39 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)
FIGURE 39. Owstonia hastata, paratype, AMS I. 1258112 ‒ 010, 133 mm SL, Queensland, Australia. Photograph by Sandra J. Raredon.
FIGURE 36 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)
FIGURE 36. Owstonia fallax, holotype, CSIRO H 763 ‒ 06, 110 mm SL, male, Queensland, Australia. Photograph by Sandra J. Raredon.
FIGURE 19 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)
FIGURE 19. Postflexion larval Owstonia, lateral view left, dorsal view right: A, AMS I. 36418 ‒ 0025, 4.9 mm SL; B, AMS I. 19742 ‒ 032, 6.9 mm SL.
FIGURE 11 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)
FIGURE 11. Body scale removed from left side just posterior to pectoral fin in selected species of Owstonia: A, O. maccullochi, AMS I. 37598 – 007; B, O. melanoptera, AMS I. 36454; C, O. taeniosoma, CAS 133928; D, O. weberi, AMS I. 28137 – 003.
FIGURE 10 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)
FIGURE 10. Premaxilla and dentary (mostly right side reversed) to show dentition in selected species of Owstonia. A, O. contodon, USNM 438013, 162 mm SL; B, O. fallax, CSIRO H. 763 ‒ 06, holotype, 110 mm SL; C, O. grammodon, USNM 149321, 127 mm SL; D, O. hawaiiensis, BPBM 29600, holotype, 124 mm SL; E, O. ignota, USNM 344400, holotype, 118 mm SL; F, O. japonica, ANSP 151948, 136 mm SL.
FIGURE 8 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)
FIGURE 8. Margins of preopercle lower limb (not drawn to scale), showing relative spine development in selected species of Owstonia: A, O. contodon, USNM 438013, 162 mm SL; B, O. elongata, USNM 432454, 110 mm SL; C, O. geminata, ASIZP 68128, 79 mm SL; D, O. maccullochi, holotype (right side reversed), AMS IA. 5815, 156 mm SL; E, O. maccullochi, NTM S. 11765 − 001, 146 mm SL; F, O. rhamma, holotype, MNHN 1995 – 0005, 102 mm SL; G, O. sarmiento, ANSP 165126, 82 mm SL; H., O. scottensis, CSIRO H. 7136 − 04, 103 mm SL; I, O. sibogae, ANSP 152035, 113 mm SL; J, O. taeniosoma, CAS 133928, 126 mm SL; K, O. tosaensis, ANSP 153169, 100 mm SL; L, O. weberi, ZMUC P. 531552, 127 mm SL.
FIGURE 7 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)
FIGURE 7. Radiographs of selected species of Owstonia to show number of anal-fin pterygiophores anterior to first haemal spine (indicated by white arrowhead): A, O. japonica, NSMT P. 32720, 137 mm SL, Japan; B, O. sarmiento, AMS I. 25826 – 0 0 7, 76 mm SL, eastern Australia; C, O. tosaensis, CSIRO H. 6431 – 03, 155 mm SL, western Australia; D, O. taeniosoma, BSKU 75249, 169 mm SL, Japan; E, O. elongata, MNHN 2014 ‒ 29345, 111 mm SL, New Caledonia. Number of anterior analfin pterygiophores in these specimens are: A = 2, B = 3, C = 4, D = 6 and E = 8.
FIGURE 2 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)
FIGURE 2. Right dorsal gill arches to show presence of two rod-like, cartilage-tipped uncinate processes on the first epibranchial and small ovoid interarcual cartilage in Owstonia sarmiento, ANSP 165126, 82 mm SL. Abbreviations: IAC = interarcual cartilage; UP = uncinate process.
FIGURE 1 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)
FIGURE 1. Fusion of epineurals to ribs in Owstonia sarmiento, ANSP 165126, 82 mm SL; a synapomorphy of the Cepolidae.
FIGURE 10 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)
FIGURE 10. (Continued). G, O. kamoharai, NTM S. 12631 ‒ 017, 122 mm SL; H, O. melanoptera, AMS I. 36454 ‒ 005, holotype, 116 mm SL; I, O. psilos, NMV A. 29733 ‒ 007, 125 mm SL; J, O. sibogae, ANSP 152035, 123 mm SL; K, O. taeniosoma, CAS 1 33928, 126 mm SL; L, O. weberi, USNM 410299, 118 mm SL.
FIGURE 15 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)
FIGURE 15. Premaxillary stripes in selected species of Owstonia: A, O. hastata, NTM S. 11779 – 002, 124 mm SL; B, O. nudibucca, ANSP 151993, 224 mm SL, Mentawai Islands; C, O. sibogae, CAS 32914, 96 mm SL, Philippines; D, O. ainonaka, AMS I. 33437 – 002, 213 mm SL. Photographs by Sandra J. Raredon.
FIGURE 29. Owstonia contodon, USNM 437757 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)
FIGURE 29. Owstonia contodon, USNM 437757, male, 303 mm SL, Philippines, Palawan. Photograph by Jeffrey T. Williams.
FIGURE 28 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)
FIGURE 28. Owstonia ainonaka, holotype, AMS I. 33437 ‒ 002, 213 mm SL, Australia, NSW off Coffs Harbour. Photograph by Sandra J. Raredon.
FIGURE 30 in Morphological and molecular data reveal the cryptic diversity among populations of Aegla paulensis (Decapoda, Anomura, Aeglidae), with descriptions of four new species and comments on dispersal routes and conservation status
FIGURE 30. Bayesian tree (TPM 2 uf + G) for Aegla species based on partial fragment of 16 S. Node numbers represent posterior probabilities (values <50 % are not shown), and divergence time in millions of years (my); * indicates the calibration points to molecular clock. The clade C proposed by Pérez-Losada et al. (2004) is highlighted in grey. The basin and sub-basin origin of the discussed species in this study are shown after the specific names.
FIGURE 24. A – L in Morphological and molecular data reveal the cryptic diversity among populations of Aegla paulensis (Decapoda, Anomura, Aeglidae), with descriptions of four new species and comments on dispersal routes and conservation status
FIGURE 24. A – L, proximal portion of fifth pereiopod showing coxa and sexual tube of long and narrow type. A – B, Aegla paulensis Schmitt, 1942 s. str., male topotype (MZUSP 34368). C – D, Aegla rosanae Campos Jr., 1998, male topotype (MZUSP 34369). E – F, Aegla vanini n. sp., male paratype (MZUSP 34372). G – H, Aegla japi n. sp., male paratype (MZUSP 34375). I – J, Aegla jaragua n. sp. male paratype (MZUSP 34378). K-L, Aegla jundiai n. sp., male paratype (MZUSP 13490). Bars: A – D, F – H, J = 200 µm; K, L = 100 µm; E, I = 500 µm.
FIGURE 8 in Morphological and molecular data reveal the cryptic diversity among populations of Aegla paulensis (Decapoda, Anomura, Aeglidae), with descriptions of four new species and comments on dispersal routes and conservation status
FIGURE 8. Types of Aegla Leach, 1820 male sexual tubes. A, long and narrow (A. lancinhas Bond-Buckup & Buckup in Santos et al., 2015, MZUSP 34403). B, short and wide (A. leptochela Bond-Buckup & Buckup, 1994, MZUSP 34491).
FIGURE 1 in Morphological and molecular data reveal the cryptic diversity among populations of Aegla paulensis (Decapoda, Anomura, Aeglidae), with descriptions of four new species and comments on dispersal routes and conservation status
FIGURE 1. Distribution of the species of Aegla in four main hydrographic basins of southern Brazil: Rio Grande, Rio Tietê (Upper Paraná system), Rio Paraíba do Sul and Ribeira de Iguape. Indications L 1 through L 7 refer to the locations mentioned under “ sampling area ” in the Material & Methods section.
Fig. 2 in Species Diversity And Distribution Of Synanthropic Acarid Mites (Acariformes, Acaridia) In Transcarpathia
Fig. 2. Species diversity and the number of acarid mites in farm buildings in different zones of Transcarpathia.
Fig. 1 in Species Diversity And Distribution Of Synanthropic Acarid Mites (Acariformes, Acaridia) In Transcarpathia
Fig. 1. Map of acarid mites collection sites in Transcarpathian Region: a — map of Transcarpathian Region by altitudinal zonation; b — air temperature map of Transcarpathian Region; c — precipitation map of Transcarpathian Region.
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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)
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.