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.
144
datasets available to search
ShareScore release 0.9.0
Dataset results
144 results for “Carapace”
Fig. 1 in From an Old Eroded Carapace: Rediscovery of the Majid Crab Leptomithrax sinensis Rathbun, 1916 (Crustacea, Brachyura, Majidae) from Taiwan and Japan
Fig. 1. Leptomithrax sinensis: A, overall habitus. L. bifidus: B, overall habitus; C: thoracic sternum and pleon; D: G1, in-situ. A, L. sinensis, holotype male (25.3 × 32.0 mm) (USNM 48219), northern South China Sea; B-D, L. bifidus, lectotype male (25.8 × 32.3 mm) (MZS Cru3193), Sagami Bay, Japan. Photo credits: B by T. Komai; C, D by M. Meister.
FIGURE 1. Diagrams showing positions used for morphometric measurements. A, carapace B in A revision of the shovel-nosed lobsters of the genus Thenus (Crustacea: Decapoda: Scyllaridae), with descriptions of three new species
FIGURE 1. Diagrams showing positions used for morphometric measurements. A, carapace B, first and second antennal segments; C, pereiopods 1–3; D, first abdominal segment; E, sixth abdominal segment and telson.
FIGURE 16. Carapace. A in Deepwater crabs from seamounts and chemosynthetic habitats off eastern New Zealand (Crustacea: Decapoda: Brachyura)
FIGURE 16. Carapace. A, Cyrtomaia cornuta Richer de Forges & Guinot, 1995, male, cl 46.9 mm (NIWA 14182), dorsal view. B–C, Dorhynchus ramusculus (Baker, 1906), male, cl 13.3 mm (NIWA 9941), right lateral and dorsal views. D, Platymaia maoria Dell, 1963, ovigerous female, cl 55.8 mm (NIWA 14191). E, Vitjazmaia latidactyla Zarenkov, 1994, ovigerous female, cl 72.0 mm (NIWA 16800).
Figure 4 in Carapace ontogeny of the bromeliad dwelling ostracod Elpidium bromeliarum Müller, 1880 (Crustacea: Ostracoda)
Figure 4. Elpidium bromeliarum. (a) A-1 specimen; antenna showing swollen claw (arrow), inside which the serrated claw typical of adult males is formed. (b) female specimen; antenna, with all three claws smooth. (c) A-1 specimen; anlage of hemipenis. Scale bars: 0.05 mm (a, b); 0.1 mm (c).
Figure 3 in Carapace ontogeny of the bromeliad dwelling ostracod Elpidium bromeliarum Müller, 1880 (Crustacea: Ostracoda)
Figure 3. Elpidium bromeliarum, (a–f) adult stage, (g–o) juvenile stages. (a) female, right lateral view. (b) female, ventral view. (c) female, dorsal view. (d) male, right lateral view. (e) male, ventral view. (f) male, dorsal view. (g) A-1 stage, right lateral view. (h) A-1 stage, ventral view. (i) A-1 stage, dorsal view. (j) A-2 stage, right lateral view. (k) A-2 stage, ventral view. (l) A-2 stage, dorsal view. (m) A-3 stage, right lateral view. (n) A-3 ventral view. (o) A-3 stage, dorsal view. Scale bars: 200 µm (a–i); 100 µm (j–o).
Figure 1 in Carapace ontogeny of the bromeliad dwelling ostracod Elpidium bromeliarum Müller, 1880 (Crustacea: Ostracoda)
Figure 1. Scatterplot of width (μm) per length (μm) measurements of 506 specimens of E. bromeliarum. Clusters correspond to A-8 juvenile stage, which is restricted to brooding chamber, (in purple), A-7 to A-1 free-living juvenile stages (in green), adult males (in blue) and adult females (in red).
Figure 2 in Carapace ontogeny of the bromeliad dwelling ostracod Elpidium bromeliarum Müller, 1880 (Crustacea: Ostracoda)
Figure 2. Elpidium bromeliarum, juvenile stages. (a) A-4 stage, right lateral view. (b) A-4 stage, ventral view. (c) A-4 stage, dorsal view. (d) A-5 stage, right lateral view. (e) A-5 stage, ventral view. (f) A-5 stage, dorsal view. (g) A-6 stage, right lateral view. (h) A-6 stage, ventral view. (i) A-6 stage, dorsal view. (j) A-7 stage, right lateral view. (k) A-7 stage, ventral view. (l) A-7 stage, dorsal view. Scale bars: 100 µm (a–c, e); 50 µm (d, f–l).
FIGURES 1285–1288. 1285–1288. Heliconilla thaleri comb. nov., male. 1285. Carapace, dorsal. 1286–1288 in Systematics and biogeography of the spider genus Mallinella Strand, 1906, with descriptions of new species and new genera from Southeast Asia (Araneae, Zodariidae) 3369
FIGURES 1285–1288. 1285–1288. Heliconilla thaleri comb. nov., male. 1285. Carapace, dorsal. 1286–1288. Integument of caeapace.
FIGURES 1275–1278. 1275, 1277. Heliconilla thaleri comb. nov., holotype. 1276, 1278. H. thaleri comb. nov., paratype. 1275–1276. Carapace, frontal. 1277–1278 in Systematics and biogeography of the spider genus Mallinella Strand, 1906, with descriptions of new species and new genera from Southeast Asia (Araneae, Zodariidae) 3369
FIGURES 1275–1278. 1275, 1277. Heliconilla thaleri comb. nov., holotype. 1276, 1278. H. thaleri comb. nov., paratype. 1275–1276. Carapace, frontal. 1277–1278. PVS.
FIGURE 13. Female carapace, lateral view. A. Periegops suteri. B. Drymusa capensis. C in The placement of the spider genus Periegops and the phylogeny of Scytodoidea (Araneae: Araneomorphae)
FIGURE 13. Female carapace, lateral view. A. Periegops suteri. B. Drymusa capensis. C. Scytodes globula, right side, mirrored. D. Stedocys leopoldi. E. Loxosceles rufescens. F. Sicarius rupestres. Scales: A–F 1 mm.
Figure 16. Ocular area, carapace. A in Phylogenetic analysis of the tropical wolf spider subfamily Cteninae (Arachnida, Araneae, Ctenidae)
Figure 16. Ocular area, carapace. A, Zoropsis spinimana; B, Ctenus dubius; C, Leptoctenus byrrhus; D, Gephyroctenus philodromoides.
FIGURE 3. Carapace, lateral. A in Two new species of the "Heterocarpus gibbosus Bate, 1888" species group (Crustacea: Decapoda: Pandalidae) from the western Pacific and north-western Australia*
FIGURE 3. Carapace, lateral. A, Heterocarpus abulbus sp. nov., holotype ov. female 36.5 mm cl (NTOU M00789); B, H. abulbus sp. nov., Philippines, "AUOROA 2007" stn CP 2672, female 25.9 mm cl (NTOU M00792); C, H. gibbosus Bate, 1888, Philippines, "PANGLAO 2005", stn CP 2359, male 27.9 mm cl (NTOU M00796); D, H. corona sp. nov., Kiribati, female, 30.6 mm cl (MNHN-Pa 12351); E, H. corona sp. nov., holotype ov. female 32.6 mm cl (MNHN-Na 17190); F, H. corona sp. nov.. Fiji, "MUSORSTOM 10" stn CP 1396, male 32.7 mm cl (MNHN-Pa 16246). Scales = 10 mm.
FIGURE 10. Lateral carapace views. A in A review of Chiromantes obtusifrons (Dana, 1851) (Decapoda: Brachyura: Sesarmidae), with descriptions of four new sibling-species from Christmas Island (Indian Ocean), Guam and Taiwan
FIGURE 10. Lateral carapace views. A, Chiromantes obtusifrons (Dana, 1851), UFUF-14837, male (17.7×13.2 mm), Hawaiian Is.; B, C. garfunkel sp. nov., QM-W29172, holotype male (17.0×13.0 mm), Christmas I.
FIGURES 4–8. Enoploctenus inazensis Strand, 1909. Female 4–6. Male 7–8. 4. Holotype, epigynum ventral view. 5. Holotype, internal genitalia dorsal view. 6. Holotype, carapace dorsal view. 7. Syntype, palp ventral view. 8 in Demystifying three species of Ctenidae (Arachnida: Araneae) described by Embrik Strand. Part I, Ecuador
FIGURES 4–8. Enoploctenus inazensis Strand, 1909. Female 4–6. Male 7–8. 4. Holotype, epigynum ventral view. 5. Holotype, internal genitalia dorsal view. 6. Holotype, carapace dorsal view. 7. Syntype, palp ventral view. 8. Syntype, palp tibia retrolateral view. Abbreviations: c, conductor; cd, copulatory ducts; e, embolus; fd, fertilization ducts; ls, lateral spurs; ma, median apophyis; ms, median sector; rta, retrolateral tibial apophysis; rtn; retroapical tibial notch; s, spermathecae. Scale bars figures 4, 5: 0.5mm; figures 6–8: 1.0mm.
FIGURE 22. Bolostromus riveti Simon, 1903. Male. A. Carapace, dorsal view. B. Carapace ventral view. C. Carapace, lateral view. D. Leg I in Review of the American genus Bolostromus Ausserer, 1875 with the description of fourteen new species (Araneae, Cyrtaucheniidae)
FIGURE 22. Bolostromus riveti Simon, 1903. Male. A. Carapace, dorsal view. B. Carapace ventral view. C. Carapace, lateral view. D. Leg I, retrolateral view (arrow point to modified setae). Scale bars: 0.5mm.
Keels of boxfish carapaces strongly improve stabilisation against roll
Open the record for dataset details and reuse information.
Figures 1-8. Carapace and tergites I-II. 1 in Saharo-Sindian buthid scorpions; description of two new genera and species from Occidental Sahara and Afghanistan
Figures 1-8. Carapace and tergites I-II. 1. Saharobuthus elegans sp. n., male holotype. 2. Compsobuthus acutecarinatus, female holotype. 3. Leiurus quinquestriatus, male. 4. Mesobuthus eupeus persicus, female. 5. Pantobuthus complicatus sp. n., female holotype. 6. Odontobuthus doriae, female. 7. Buthus draa, female. 8. Hottentotta schach, male (scales = 5 mm).
FIG. 4. — Proeryon charbonnieri n in Large polychelidan lobsters with a rounded carapace from the Middle Jurassic La Voulte-sur-Rhône Lagerstätte: taxonomic clarifications
FIG. 4. — Proeryon charbonnieri n. sp. from the La Voulte Lagerstätte: A, paratype MNHN.F.A50741, dorsal surface, natural light (A1) and tail-fan (A2); B, paratype UJF-ID.11548-49 (former paralectotype of S. giganteus n. comb.), partial tail-fan, counterpart, cross-polarized light; C, paratype MNHN.F.B11759, dorsal surface, natural light; D, paratype UJF-ID.14052 (former paralectotype of S. giganteus n. comb.), dorsal surface, cross-polarized light, small-sized specimen; E, paratype MHNGr.Pa.10203, dorsal surface, natural light. Abbreviations: a, branchiocardiac groove; b1, hepatic groove; ba, uropodal basipod; di, uropodal diaeresis; e1e, cervical groove; ei, cervical incision; ex, uropodal exopod; lc, lateral carina; o, eye; oph, ophiuroid; P1, pereiopod 1; s5-s6, pleonites 5 to 6; t, telson. Scale bars: 20 mm. Images: A1, A2, Peter Massicard (E-Recolnat project); B-D, D. Audo; E, Noël Podevigne.
FIG. 3. — Proeryon charbonnieri n in Large polychelidan lobsters with a rounded carapace from the Middle Jurassic La Voulte-sur-Rhône Lagerstätte: taxonomic clarifications
FIG. 3. — Proeryon charbonnieri n. sp. from the La Voulte Lagerstätte: A-C, holotype UJF-ID 14023 (former paralectotype of S. giganteus n. comb.); A, dorsal view, cross-polarized light; B, third maxillipeds and pereiopods, 3D model from CT-scan data, modified from Audo et al. (2014c); C, interpretative line-drawing; D, paratype MSNM i20703, dorsal view, cross-polarized light. Abbreviations: a, branchiocardiac groove; a1, antennula; a2, antenna; b1, hepatic groove; bc, branchial carina; bi, hepatic incision; c, postcervical groove; d, gastro-orbital groove; e1e, cervical groove; ei, cervical incision; lc, lateral carina; mdb, mandible; mxp3, third maxilliped; o, ocular incision; P1-P5, pereiopods 1 to 5; pc, postcervical carina; po, postorbital carina; s1-s5, pleonites 1 to 5. Scale bars: 50 mm. Images: D. Audo.
FIG. 1 in Large polychelidan lobsters with a rounded carapace from the Middle Jurassic La Voulte-sur-Rhône Lagerstätte: taxonomic clarifications
FIG. 1. — Soleryon giganteus (Van Straelen, 1923) n. comb. from the La Voulte Lagerstätte: A, B, lectotype UJF-ID.14066, dorsal view,under polarized light, part (A); and counter-part, with line-drawing of grooves and carinae (B); C, holotype of Cycleryon romani Audo, Schweigert, Saint Martin & Charbonnier, 2014 (FSL 170522), dorsal view, under polarized light; D, sketch of carapace outline, grooves and carinae adapted from Audo et al. (2014c). Abbreviations: a, branchiocardiac groove; b1, hepatic groove; b1c, hepatic carina; bc, branchial carina; bi, hepatic incision; c, postcervical groove; d, gastro-orbital groove; e1e, cervical groove; ei, cervical incision; fm, frontal margin; o, ocular incision; pc, postcervical carina; pla, posterolateral angle; pr, postrostral carina. Scale bars: 50 mm. Images: D. Audo.
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.