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.
14,755
datasets available to search
ShareScore release 0.7.1
Dataset results
14,755 results for “redescription”
Fig. 1 in Resolution of the Acroteriobatus leucospilus species complex, with a redescription of A. leucospilus (Norman, 1926) and descriptions of two new western Indian Ocean species of Acroteriobatus (Rhinopristiformes, Rhinobatidae)
Fig. 1 Acroteriobatus andysabini sp. nov., SAIAB 97396, juvenile male holotype, 565 mm TL fresh, in total dorsal view taken directly after catching. Photograph by Elaine Heemstra, NRF-SAIAB
Fig. 2 in Resolution of the Acroteriobatus leucospilus species complex, with a redescription of A. leucospilus (Norman, 1926) and descriptions of two new western Indian Ocean species of Acroteriobatus (Rhinopristiformes, Rhinobatidae)
Fig. 2 Acroteriobatus andysabini sp. nov., SAIAB 97396, juvenile male holotype, 550 mm TL, in total dorsal view. Scale bar: 5 cm. Photograph courtesy Marsha Englebrecht ©
Fig. 17. Phylogenetic hypothesis using nuclear gene sequences TMO-4C4 and 18S in A New Genus and Species of Pygmy Pipehorse from Taitokerau Northland, Aotearoa New Zealand, with a Redescription of Acentronura Kaup, 1853 and Idiotropiscis Whitley, 1947 (Teleostei, Syngnathidae)
Fig. 17. Phylogenetic hypothesis using nuclear gene sequences TMO-4C4 and 18S retrieved with Maximum Likelihood (ML), Maximum Parsimony (MP), and Bayesian Inference (MrBayes), representing 17 species from clade 6 from the analysis of Hamilton et al. (2017) and the new taxon. Tree rooted with the southern Australian trunk-brooder pipefish Heraldia nocturna. Nodal support at the generic level is shown in ML/MP/MrBayes order. See Data Accessibility for tree file.
Fig. 15 in A New Genus and Species of Pygmy Pipehorse from Taitokerau Northland, Aotearoa New Zealand, with a Redescription of Acentronura Kaup, 1853 and Idiotropiscis Whitley, 1947 (Teleostei, Syngnathidae)
Fig. 15. µCT scanned skeleton of Idiotropiscis lumnitzeri, CAS HH-0423, male, 69.9 mm SL. (A) Osteocranium in lateral view highlighting the ventral cleithral cheek spine and small spine posteroventral of pectoral-fin base. (B) Subdorsal-fin base in lateral view highlighting the one upper and one lower subdorsal spines. Abbreviations: CS, cleithral spine; LSDS, lower subdorsal spine; PLS, posterolateral spine on pectoral-fin base; USDS, upper subdorsal spine.
Fig. 16 in A New Genus and Species of Pygmy Pipehorse from Taitokerau Northland, Aotearoa New Zealand, with a Redescription of Acentronura Kaup, 1853 and Idiotropiscis Whitley, 1947 (Teleostei, Syngnathidae)
Fig. 16. Lateral view of µCT scanned neurocranium of (A) CyliX tupareomanaia, NMNZ P.046322; (B) Hippocampus barbouri, USNM 220605. Abbreviations: ANP, anterior nuchal plate; CO, coronet on anterior nuchal plate; PNP, posterior nuchal plate; SC, supracleithrum; SOC, supraoccipital.
Fig. 14 in A New Genus and Species of Pygmy Pipehorse from Taitokerau Northland, Aotearoa New Zealand, with a Redescription of Acentronura Kaup, 1853 and Idiotropiscis Whitley, 1947 (Teleostei, Syngnathidae)
Fig. 14. Dorsal view of µCT scanned neurocranium of the head of (A) Idiotropiscis australe, WAM P.33543-001, male; (B) Idiotropiscis larsonae, GCRL 21518, male; (C) Idiotropiscis lumnitzeri, CAS HH-0423, male. Abbreviations: BLP, bilateral lobed protuberances; SC, supraoccipital crest.
Fig. 13 in A New Genus and Species of Pygmy Pipehorse from Taitokerau Northland, Aotearoa New Zealand, with a Redescription of Acentronura Kaup, 1853 and Idiotropiscis Whitley, 1947 (Teleostei, Syngnathidae)
Fig. 13. Lateral view of µCT scanned skeletons of preserved specimens of Idiotropiscis spp. redescribed in this study. (A) I. australe, WAM P.33543- 001, male, 54.7 mm SL. (B) I. larsonae, GCRL 21518, female, paratype, 33.0 mm SL. (C) I. lumnitzeri, CAS HH-0423, male, 69.9 mm SL. (D) I. lumnitzeri, AMS I.45395-001, female, 54.0 mm SL.
Fig. 12 in A New Genus and Species of Pygmy Pipehorse from Taitokerau Northland, Aotearoa New Zealand, with a Redescription of Acentronura Kaup, 1853 and Idiotropiscis Whitley, 1947 (Teleostei, Syngnathidae)
Fig. 12. Lateral view of preserved specimens of Idiotropiscis spp. redescribed in this study. (A) I. australe, WAM P.33543-001, male, 54.7 mm SL. (B) I. larsonae, NTM S.10805-001, male, holotype, 33.5 SL. (C) I. larsonae, GCRL 21518, female, paratype, 33.0 mm SL. (D) I. lumnitzeri, CAS HH-0423, male, 69.9 mm SL. (E) I. lumnitzeri, AMS I.45395-001, female, 54.0 mm SL.
Fig. 11. X in A New Genus and Species of Pygmy Pipehorse from Taitokerau Northland, Aotearoa New Zealand, with a Redescription of Acentronura Kaup, 1853 and Idiotropiscis Whitley, 1947 (Teleostei, Syngnathidae)
Fig. 11. X-ray radiography of (A) A. breViperula, BMNH 1890.1.14.51, male, holotype; (B) A. tentaculata, BMNH 1869.6.21.7, male, holotype; (C) I. larsonae, NTM S.10805-001, male, holotype, 55.5 mm SL (Photograph credits for A. breViperula and A. tentaculata to Oliver Crimmen and Ralf Britz, © The Trustees of the Natural History Museum, London; I. larsonae to Michael Hammer, © Museum and Art Gallery of the Northern Territory).
Fig. 7 in A New Genus and Species of Pygmy Pipehorse from Taitokerau Northland, Aotearoa New Zealand, with a Redescription of Acentronura Kaup, 1853 and Idiotropiscis Whitley, 1947 (Teleostei, Syngnathidae)
Fig. 7. Distribution of CyliX tupareomanaia in Taitokerau Northland, North Island, New Zealand. Square - type locality of holotype AIM MA122274 at Waiatapaua Bay, Whangaruru. Star - locality of paratype NMNZ P.056154, Cavalli Islands. Circle - locality of paratype NMNZ P.046322, east of Oturori Rock, Bay of Islands. Arrow - specimen photographed at Poor Knights Islands.
Fig. 10 in A New Genus and Species of Pygmy Pipehorse from Taitokerau Northland, Aotearoa New Zealand, with a Redescription of Acentronura Kaup, 1853 and Idiotropiscis Whitley, 1947 (Teleostei, Syngnathidae)
Fig. 10. Dorsal view of µCT scanned neurocranium of (A) Acentronura breViperula, CAS 247135, female; (B) Acentronura gracilissima, CAS 247139, male; (C) Acentronura tentaculata, CAS-SU 6681, male. Abbreviations: BLP, bilateral lobed protuberances; SC, supraoccipital crest.
Fig. 4 in A New Genus and Species of Pygmy Pipehorse from Taitokerau Northland, Aotearoa New Zealand, with a Redescription of Acentronura Kaup, 1853 and Idiotropiscis Whitley, 1947 (Teleostei, Syngnathidae)
Fig. 4. µCT scan of CyliX tupareomanaia, NMNZ P.046322, male, paratype, 55.5 mm SL. (A, B) Anterolateral view of the head highlighting the bifurcated and cup-like crest present on the supraoccipital, continuous cleithral ring, and the strongly elevated ventrolateral bulge of the pectoral-fin base. (C) Anterodorsal aspect of the neurocranium highlighting the bifurcated and cup-like pentamerous bony crest present on the supraoccipital. Abbreviations: FS, frontal spine; PFB, pectoral-fin base; SC, supraoccipital crest; SCL, supracleithrum.
Fig. 2 in A New Genus and Species of Pygmy Pipehorse from Taitokerau Northland, Aotearoa New Zealand, with a Redescription of Acentronura Kaup, 1853 and Idiotropiscis Whitley, 1947 (Teleostei, Syngnathidae)
Fig. 2. CyliX tupareomanaia. (A) AIM MA122274, female, preserved holotype, 31.4 mm SL; Waiatapaua Bay, Whangaruru, Northland, New Zealand (photograph © Auckland Museum). (B) NMNZ P.056154, female, preserved paratype, 35.5 mm SL; Cavalli Islands, Northland, New Zealand (photograph © Auckland Museum). (C) NMNZ P.046322, male, preserved paratype, 55.5 mm SL; east of Oturori Rock, Bay of Islands, Northland, New Zealand (photograph Graham Short).
Fig. 1 in A New Genus and Species of Pygmy Pipehorse from Taitokerau Northland, Aotearoa New Zealand, with a Redescription of Acentronura Kaup, 1853 and Idiotropiscis Whitley, 1947 (Teleostei, Syngnathidae)
Fig. 1. CyliX tupareomanaia. (A) AIM MA122274, female, holotype shortly after death, 31.4 mm SL; Waiatapaua Bay, Whangaruru, Northland, New Zealand (photograph © Auckland Museum). (B) NMNZ P.056154, female, paratype, shortly after death, 35.5 mm SL; Cavalli Islands, Northland, New Zealand (photograph © Irene Middleton).
Fig. 8 in A New Genus and Species of Pygmy Pipehorse from Taitokerau Northland, Aotearoa New Zealand, with a Redescription of Acentronura Kaup, 1853 and Idiotropiscis Whitley, 1947 (Teleostei, Syngnathidae)
Fig. 8. Lateral view of preserved specimens of Acentronura spp. redescribed in this study. (A) A. breViperula, CAS 247135, female, 40.1 mm SL. (B) A. gracilissima, CAS-SU 6681, male, 70.4 mm SL. (C) A. tentaculata, CAS 247139, male, 50.8 mm SL. (D) A. tentaculata, CAS 247139, female, 53.9 mm SL.
Fig. 6 in A New Genus and Species of Pygmy Pipehorse from Taitokerau Northland, Aotearoa New Zealand, with a Redescription of Acentronura Kaup, 1853 and Idiotropiscis Whitley, 1947 (Teleostei, Syngnathidae)
Fig. 6. CyliX tupareomanaia in situ. (A) AIM MA122274, female, holotype, Waiatapaua Bay, Whangaruru, Northland, New Zealand, 12 m depth (photograph © Shane Housham). (B) Waiatapaua Bay, Whangaruru, Northland, New Zealand, 12 m depth (photograph © Shane Housham). (C) Waiatapaua Bay, Whangaruru, Northland, New Zealand, 12 m depth (photograph © Richard Smith). (D) Waiatapaua Bay, Whangaruru, Northland, New Zealand, 12 m depth (photograph © Irene Middleton). (E) Waiatapaua Bay, Whangaruru, Northland, New Zealand, 12 m depth (photograph © Irene Middleton). (F) Poor Knights Islands, Northland, New Zealand, at 10 m depth (photograph © Kent Erickson).
Fig. 5 in A New Genus and Species of Pygmy Pipehorse from Taitokerau Northland, Aotearoa New Zealand, with a Redescription of Acentronura Kaup, 1853 and Idiotropiscis Whitley, 1947 (Teleostei, Syngnathidae)
Fig. 5. µCT scan of the ventral aspect of first trunk ring of CyliX tupareomanaia, NMNZ P.046322, male, paratype, 55.5 mm SL, in ventral aspect highlighting positions of large medioventral conical spines on the cleithral symphysis and the first trunk ring between the pectoral-fin bases. Abbreviations: CL, cleithral spines; CSS, medioventral conical spine on the cleithral symphysis; MVFTRS, medioventral first trunk ring spine between the pectoral-fin bases; PLS, posterolateral spine on pectoral-fin base.
FIGURES 1–9 in Redescription and lectotype designation of Gynaikothrips microchaetus Ananthakrishnan & Jagadish (Thysanoptera: Phlaeothripidae)
FIGURES 1–9. Gynaikothrips microchaetus. (1) Head. (2) Pronotum. (3) Antenna & female fore tarsus. (4) Meso & metanota and pelta. (5) Fore wing sub-basal setae. (6) Segments IX–X. (7) Tergites V–VI. (8) Male tergite VIII. (9) Male sternite VIII.
Fig. 12 in Description of a new species of Spiralothelphusa Bott, 1968, and redescription of Spiralothelphusa wuellerstorfi (Heller, 1862) (Decapoda: Brachyura: Gecarcinucidae)
Fig. 12. Spiralothelphusa andhra sp. nov., paratype, ♀ (13.3 × 10.7 mm) (ZSI-FBRC INV/2258). A. Cephalothorax, dorsal view. B. Pleon. C. Thoracic sternites showing vulvae. Scale bars: A = 2 mm; B–C = 1 mm.
Fig. 8 in Description of a new species of Spiralothelphusa Bott, 1968, and redescription of Spiralothelphusa wuellerstorfi (Heller, 1862) (Decapoda: Brachyura: Gecarcinucidae)
Fig. 8. Map of South India showing precise records of Spiralothelphusa wuellerstorfi (Heller, 1862) and collection sites of Spiralothelphusa andhra sp. nov.
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.