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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.

opennotspecifiedDec 2016View details →
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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.

opennotspecifiedDec 2016View details →
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FIGURE 67 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)

FIGURE 67. Owstonia raredonae, holotype, SAIAB 82406, 97 mm SL, off Mozambique. Photograph by P. C. Heemstra, © SAIAB.

opennotspecifiedDec 2016View details →
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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.

opennotspecifiedDec 2016View details →
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FIGURE 89 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)

FIGURE 89. Owstonia sp. 2, MNHN 2014‒0163, 36 mm SL, French Polynesia, Tarasoc seamounts. Photograph by Sandra J. Raredon.

opennotspecifiedDec 2016View details →
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FIGURE 61 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)

FIGURE 61. Owstonia nudibucca, paratype, SAIAB 201332, 288 mm SL, Andaman Sea, Gulf of Mottama. Photograph by Peter N. Psomadakis.

opennotspecifiedDec 2016View details →
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FIGURE 66 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)

FIGURE 66. Owstonia psilos, paratype, NMV A.29733–007, 125 mm SL, Western Australia; insert part of dorsal fin showing traces of dark blotch. Photograph by Sandra J. Raredon.

opennotspecifiedDec 2016View details →
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FIGURE 47. Owstonia kamoharai, CSIRO H.2075–01, 407 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)

FIGURE 47. Owstonia kamoharai, CSIRO H.2075–01, 407 mm SL, Western Australia, off Port Hedland. Photograph courtesy of CSIRO.

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FIGURE 83 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)

FIGURE 83. Owstonia totomiensis, holotype, FMNH 55424, 306 mm SL, Japan. Photograph by Sandra J. Raredon.

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FIGURE 76 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)

FIGURE 76. Owstonia simotera, holotype, SAIAB 605, 298 mm SL, Mozambique, off Bazaruto. After Smith, 1968, plate 6c, image from original photographic negative courtesy of Ofer Gon, © SAIAB.

opennotspecifiedDec 2016View details →
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FIGURE 45. Owstonia japonica, CAS 133935, 174 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)

FIGURE 45. Owstonia japonica, CAS 133935, 174 mm SL, Japan off Kochi. Photograph by Sandra J. Raredon.

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FIGURE 73. Owstonia sibogae, ANSP 152035, 156 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)

FIGURE 73. Owstonia sibogae, ANSP 152035, 156 mm SL, Indonesia, Sumbawa. Photograph by Sandra J. Raredon.

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FIGURE 59 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)

FIGURE 59. Owstonia nalani, holotype, MNHN 2002‒3362, 54 mm SL, New Caledonia. Photograph by Sandra J. Raredon.

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FIGURE 5 in Using Gordiid cysts to discover the hidden diversity, potential distribution, and new species of Gordiids (Phylum Nematomorpha)

FIGURE 5. Maxent model summary of gordiid infected snail geography showing known occurrence points (black circles) and predicted potential geographic distribution (green areas of streams) in Payne County, Oklahoma. Blue areas of streams are identified as unsuitable. Purple and red arrows indicate locations of free-living adults of Gordius n. sp. and Chordodes morgani, respectively. Note that all Gordius n. sp. were collected in the predicted geographic distribution, and C. morgani was collected from a dog water bowl from a home near a region of a stream with predicted distribution for gordiids. Scale bar = 6.7 km.

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FIGURE 4 in Using Gordiid cysts to discover the hidden diversity, potential distribution, and new species of Gordiids (Phylum Nematomorpha)

FIGURE 4. Scanning electron and light microscope micrographs of adult free-living gordiids reared from field collected cysts or collected as free-living adults from Payne County, Oklahoma. (A) Dorsal view of the posterior region of a female Paragordius varius. Note the three posterior tail lobes (Tl). Scale bar = 500 Μm. (B) Ventral view of the posterior region of a male Paragordius varius. Note the two long posterior tail lobes (Tl), cloaca (c), and spines on the ventral midline (white arrows). Scale bar = 200 Μm. (C) Midbody cuticular structures of a male P. varius. Note the hemisphirical structures (Hs). Scale bar = 10 Μm. (D) Tapered anterior end and cuticular patern of a male Chordodes morgani. Scale bar = 100 Μm. (E) Midbody region of a male C. morgani showing the characteristic leopard pattern. Scale bar = 300 Μm. (F) Midbody region of a male C. morgani showing the characteristic crown areole pattern. Scale bar = 100 Μm. (G) Ventral view of the posterior region of a male C. morgaini. Note no tail lobes and an oval cloaca (c). Scale bar = 200 Μm. (H) Cloaca opening surrounded by circumcloacal spines. Scale bar = 10 Μm. (I) Cuticular structures on the posterior region of a male C. morgaini. Note the crown areoles (Ca), bulging areoles (BA), and bristles (white arrow). Scale bar = 8 Μm. (J) Tapered anterior end and cuticular patern of a male Gordius n. sp. Scale bar = 10 Μm. (K) Areole pattern on the posterior body region of a male Gordius n. sp. Note the weakly developed areoles (A) and the presence of bristles (white arrows). Scale bar = 20 Μm. (L) Ventral view of the posterior region of a male Gordius n. sp. Note the two posterior tail lobes (Tl), cloaca (c), and post cloacal crescent (Pcc). Scale bar = 120 Μm.

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FIGURE 3 in Using Gordiid cysts to discover the hidden diversity, potential distribution, and new species of Gordiids (Phylum Nematomorpha)

FIGURE 3. (A) Female Acheta domesticus releasing a single female Paragordius varius. (B) A gordian knot of male and female P. var ius after emerging from a female A. domesticus. Note that males are the darker and thiner individuals. Scale bars = 1 cm.

opennotspecifiedDec 2016View details →
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FIGURE 1 in Using Gordiid cysts to discover the hidden diversity, potential distribution, and new species of Gordiids (Phylum Nematomorpha)

FIGURE 1. Photomicrographs of gordiid cyst and larval types recovered from Physa acuta snails collected in Payne County, Oklahoma. (A) Cyst of Gordius sp. Note the lack of spines on the preseptum and tighly double folded larva. Scale bar = 25 Μm. (B) Cyst of Paragordius sp. Note the characterisitc spines on the preseptum (black arrow) and double folding of the postseptum (white arrow) never reaching the posterior end of the preseptum. Scale bar = 15 Μm. (C) Cyst of Chordodes/Neochordodes sp. Note the single folding position of the postseptum and relatively small spines on the preseptum. Scale bar = 10 Μm. (D) Larva of Gordius sp. in the process of folding. Note the characteristic single spine on the posterior end of the postseptum (arrow). Scale bar = 15 Μm. (E) Unencysted larva of Paragordius sp. Note the characteristically long spines of the outer hooks of the preseptum (black arrow) and characteristic granules of the pseudointestine (white arrow). Scale bar = 15 Μm. (F) Unencysted larva of Chordodes/Neochordodes sp. Note the equal length ratio of the prespeptum and postseptum and relatively small spines on the preseptum. Scale bar = 10 Μm.

opennotspecifiedDec 2016View details →
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FIGURE 2 in Using Gordiid cysts to discover the hidden diversity, potential distribution, and new species of Gordiids (Phylum Nematomorpha)

FIGURE 2. Positive (black circles) and negative (white circles) localities for (A) Paragordius spp., (B) Gordius spp., and (C) Chordodes/Neochordodes spp. in Payne County, Oklahoma. Numbers represent names of each site (see Table 1). Scale bars = 6.9 km.

opennotspecifiedDec 2016View details →
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FIGURE 11 in Cryptic diversity within the narrowly endemic Lerista wilkinsi group of north Queensland—two new species (Reptilia: Scincidae)

FIGURE 11. (A) Lerista cinerea preserved (QMJ40097, holotype), (B) dorsal view of head, (C) lateral view of head (photos by P. Waddington, QM).

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FIGURE 7 in Cryptic diversity within the narrowly endemic Lerista wilkinsi group of north Queensland—two new species (Reptilia: Scincidae)

FIGURE 7. (A) Lerista hobsoni sp. nov. preserved (QMJ93709, holotype), (B) dorsal view of head, (C) lateral view of head (photos by P. Waddington, QM).

opennotspecifiedDec 2016View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record