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.
354
datasets available to search
ShareScore release 0.9.0
Dataset results
354 results for “elasmobranch”
Figure 2 in Elasmobranchs from the Lower Triassic Sulphur Mountain Formation near Wapiti Lake (BC, Canada)
Figure 2. Semi-schematic drawing (a reduced number of crenulations and foramina are shown to assist with clarity) of a symphysial tooth of Wapitiodus aplopagus gen. et sp. nov. (based on the holotype specimen TMP 97.74.10) illustrating the tooth terminology used in this paper. Abbreviations: lcr, longitudinal crest (either ridge or keel running mesiodistally over the crown linking the central cusp and tooth shoulders); lcu, lateral cusplets (here tiny secondary 'cusps' flanking the main cusp); cre, crenulations (vertical ridges on the surface of the crown); lap/lip, labial/ lingual peg (a bulbous projection on the base of either the labial or lingual side of the cusp of the crown).
Figure 1 in Elasmobranchs from the Lower Triassic Sulphur Mountain Formation near Wapiti Lake (BC, Canada)
Figure 1. Map and setting of the locality 'Ganoid Ridge' near Wapiti Lake (part of the 'Wapiti Lake Provincial Park'). The black dots indicate the sample areas, and the black cross indicates the highest concentration of shark remains at the Ganoid Ridge. See the text for an explanation. Reproduced with permission from NRC Research Press.
Figure 3 in Elasmobranchs from the Lower Triassic Sulphur Mountain Formation near Wapiti Lake (BC, Canada)
Figure 3. Wapitiodus aplopagus gen. et sp. nov.: photograph (A) and drawing (B) of holotype specimen TMP 97.74.10. See the Appendix for the abbreviations.
Fig. 15 in A new genus of rhinebothriidean cestodes from batoid elasmobranchs, with the description of five new species and two new combinations
Fig. 15. Line drawing of bothridium of the holotype (QM GL4621) of Stillabothrium amuletum (Butler, 1987) comb. n. from Glaucostegus typus [Anonymous (Bennett)].
Fig. 13 in A new genus of rhinebothriidean cestodes from batoid elasmobranchs, with the description of five new species and two new combinations
Fig. 13. Histological sections through bothridium of Stillabothrium cadenati (Euzet, 1954) comb. n. from Zanobatus schoenleinii (Müller et Henle). Arrows indicate divisions between proximal and distal portions of transverse septa. Abbreviations: ATS – an- teriormost transverse septum; IV – intestinal villus; RM – radial musculature; RTS – reduced transverse septum; SM – septal mus- culature; ST – stalk; TM – transverse muscle bundle.
Fig. 12 in A new genus of rhinebothriidean cestodes from batoid elasmobranchs, with the description of five new species and two new combinations
Fig. 12. Line drawings of Stillabothrium cadenati comb. n. from Zanobatus schoenleinii (Müller et Henle). A – whole worm (LRP 9135); B – bothridium (LRP 9134); C – terminal proglottid (LRP 9136).
Fig. 7 in A new genus of rhinebothriidean cestodes from batoid elasmobranchs, with the description of five new species and two new combinations
Fig. 7. Scanning electron micrographs of Stillabothrium campbelli sp. n. from Himantura cf. pastinacoides. A – scolex; letters indicate locations of other SEMs; B – bothridium; C – distal bothridial surface at third loculus (upper half) and transverse septum (lower half); D – proximal bothridial surface with rim; E – proximal bothridial surface near rim; F – strobila. White arrowheads indicate cilia in Fig. 7C,D.
Fig. 3 in A new genus of rhinebothriidean cestodes from batoid elasmobranchs, with the description of five new species and two new combinations
Fig. 3. Scanning electron micrographs of Stillabothrium ashleyae sp. n. from Dasyatis biasa (Last, White et Naylor). A–C – scoleces, letters indicate locations of other SEMs; D – distal bothridial surface at anterior loculus; E – proximal bothridial surface and rim, letter indicates location of F; F – proximal bothridial surface; G – stalk; H – strobila.
Fig. 2 in A new genus of rhinebothriidean cestodes from batoid elasmobranchs, with the description of five new species and two new combinations
Fig. 2. Line drawings of Stillabothrium ashleyae sp. n. from Dasyatis biasa (Last, White et Naylor). A – whole worm (holotype; MZUM [P] 2016.6 [H]); B – scolex (LRP 9011); C – terminal proglottid (LRP 9010) with position of sections labeled (uterus not shown); D – section of mature proglottid at level of testes (LRP 9037); E – section of mature proglottid posterior to ovarian bridge (LRP 9030).
Fig. 1 in A new genus of rhinebothriidean cestodes from batoid elasmobranchs, with the description of five new species and two new combinations
Fig. 1. Phylogram based on Bayesian analysis of 1 084 bp region of D1–D3 28S rDNA. Numbers above branches indicate Bayesian posterior probabilities, numbers below indicate Bootstrap percentage values, based on 1 000 replicates. Scale indicates expected num- ber of substitutions per site. Diagrammatic line drawings of fully opened bothridia of the seven described species mapped onto the clades representing those respective species. Host species information in Table 1.
Fig. 9 in A new genus of rhinebothriidean cestodes from batoid elasmobranchs, with the description of five new species and two new combinations
Fig. 9. Scanning electron micrographs of Stillabothrium hyphantoseptum sp. n. from Pastinachus solocirostris Last, Manjaji et Years- ley. A – scolex; letters indicate locations of other SEMs; B – distal bothridial surface at second loculus and transverse septum; C, D – proximal bothridial surface with rim; E – proximal bothridial surface near rim; F – proximal bothridial surface; G – strobila.
Fig. 8 in A new genus of rhinebothriidean cestodes from batoid elasmobranchs, with the description of five new species and two new combinations
Fig. 8. Line drawings of Stillabothrium hyphantoseptum sp. n. from Pastinachus solocirostris Last, Manjaji et Yearsley. A – whole worm (holotype; MZUM [P] 2016.13 [H]); B – scolex (LRP 9092); C – terminal proglottid (LRP 9088).
Fig. 6 in A new genus of rhinebothriidean cestodes from batoid elasmobranchs, with the description of five new species and two new combinations
Fig. 6. Line drawings of Stillabothrium campbelli sp. n. from Himantura cf. pastinacoides. A – whole worm (holotype; MZUM [P] 2016.11 [H]); B – scolex (LRP 9066); C – terminal proglottid (LRP 9067).
Fig. 5 in A new genus of rhinebothriidean cestodes from batoid elasmobranchs, with the description of five new species and two new combinations
Fig. 5. Scanning electron micrographs of Stillabothrium davidcynthiaorum sp. n. from Himantura uarnak 3 (A, C, F) and Himantura heterura (Bleeker) (B, D, E, G). A, B – scoleces, letters indicate locations of other SEMs; C – distal bothridial surface in center of loc- ulus; D – proximal bothridial surface with rim; E – proximal bothridial surface near rim; F – proximal bothridial surface; G – strobila.
Fig. 4 in A new genus of rhinebothriidean cestodes from batoid elasmobranchs, with the description of five new species and two new combinations
Fig. 4. Line drawings of Stillabothrium davidcynthiaorum sp. n. from Himantura heterura (Bleeker). A – whole worm (LRP 9046); B – scolex (holotype, MZUM [P] 2016.9 [H]); C – terminal proglottid (LRP 9046).
FIG. 4 in Tentaculariids (Cestoda, Trypanorhyncha) of elasmobranchs from Malaysian Borneo
FIG. 4. — Nybelinia aequidentata: A, scolex with lobate velum; B, basal (left illustration) towards metabasal armature of a tentacle cut in two parts, bothrial surface. Scale bars: A, 500 µm; B, 100 µm.
FIG. 1. — Homeokotorella anterioporus n. gen., n in Tentaculariids (Cestoda, Trypanorhyncha) of elasmobranchs from Malaysian Borneo
FIG. 1. — Homeokotorella anterioporus n. gen., n. sp. ex Taeniura lymma 1: A, B, scolex; C, metabasal armature, bothrial surface; D, basal towards metabasal armature, bothrial surface (BH and MH indicate basal and metabasal hooks, respectively); E, F, mature proglottid, in F, open circles are vitelline follicles. Scale bars: A, B, E, F, 125 µm; C, D, 20 µm.
FIG. 2. — Nybelinia pseudafricana n in Tentaculariids (Cestoda, Trypanorhyncha) of elasmobranchs from Malaysian Borneo
FIG. 2. — Nybelinia pseudafricana n. sp. holotype, ex Lamiopsis tephrodes: A, scolex; B, basal towards metabasal armature, bothrial surface; C, metabasal armature, bothrial surface; D, mature proglottid. Scale bars: A, D, 125 µm; B, C, 50 µm.
Measures and models of visual acuity in epipelagic and mesopelagic teleosts and elasmobranchs
Open the record for dataset details and reuse information.
Evaluating the suitability of close-kin mark-recapture as a demographic modelling tool for a critically endangered elasmobranch population
Open the record for dataset details and reuse information.
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.