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.
477
datasets available to search
ShareScore release 0.9.0
Dataset results
477 results for “Myriapoda”
FIG. 4 in The giant pill-millipedes of Madagascar: revision of the genus Zoosphaerium (Myriapoda, Diplopoda, Sphaerotheriida)
FIG. 4. — Zoosphaerium neptunus (Butler, 1872), SEM: A, gnathochilarium, posterior view, arrow marks position of lateral sensory cones (FMMC 5440); B, right mandible, overview (FMMC 5440); C-F, endotergum of midbody tergite; C, holotype of Z. digitale n. syn.; D, lectotype of Z. pygidiale n. syn.; E, FMMC 5440; F, marginal bristle, detail (FMMC 5440). Abbreviations: 1, endotergum, internal section; 2, endotergum, medial section; 3, endotergum, external section; 3iT, 3 internal teeth; C, condylus; cP, central pads; eT, external tooth; mp, molar plate; P, palpus; pT, pectinate lamella. Scale bars: A, 500 μm; B, 1 mm; C, D, 200 μm; E, 400 μm; F, 10 μm.
FIG. 2 in The giant pill-millipedes of Madagascar: revision of the genus Zoosphaerium (Myriapoda, Diplopoda, Sphaerotheriida)
FIG. 2. — Zoosphaerium neptunus (Butler, 1872): A-C, right anterior telopod (lectotype of Z. pygidiale n. syn.); A, posterior view; B, inner view; C, anterior view; D, E, right anterior telopod (holotype of Z. digitale n. syn.); D, anterior view; E, posterior view; F, G, posterior telopods (lectotype of Z. pygidiale n. syn.); F, posterior view; G, anterior view; H, I, posterior telopods (holotype of Z. digitale n. syn.); H, anterior view; I, posterior view. Scale bars: 1 mm.
FIG. 1 in The giant pill-millipedes of Madagascar: revision of the genus Zoosphaerium (Myriapoda, Diplopoda, Sphaerotheriida)
FIG. 1. — Zoosphaerium neptunus (Butler, 1872): A-C ♂ (MNHN CB020); A, habitus; B, coxa of 1st left leg with 1st stigma-carrying plate; C, posterior body end with anal shield, ventral view, last three leg pairs and telopods removed; D, closing ledges of anal shield (holotype of Z. digitale n. syn.); E, closing ledges of anal shield (lectotype of Z. pygidiale n. syn.); F, G, holotype; F, 9th left leg; G, operculum of vulva; H, coxa of 2nd left leg with vulva (paralectotype of Z. pygidiale n. syn.); I, coxa of 2nd left leg with gonopore (MNHN CB020). Abbreviations: 12T, 12th tergite; AS, anal shield; Cx, coxa; LT, laterotergite; O, operculum; St, stigma-carrying plate. Scale bars: A, 10 mm; B-I, 1 mm.
Figs 7–10 in Monophyly of the Myriapoda? Reliability of current arguments
Figs 7–10. Polyxenus lagurus, series of semithin transverse sections through the head, showing components of the tentorial complex from anterior to posterior as indicated in Fig. 2. 7. Head cut in front of oral opening, showing left frontal process (fp) and right transverse bar (tb) in connection with epipharyngeal bar (eb) next to pharynx (ph). 8. Same, a little farther back, showing parts of curved epipharyngeal bar (eb). 9. Same, farther back, showing mandibular base (mb) and gnathal lobe (mg) within the preoral chamber and the origin of mandibular muscles from the posterior process (pp). 10. Same, a little farther back, showing articulation of mandibular gnathal lobe (mg) with hypopharyngeal bar (hb).
Figs 3–6 in Monophyly of the Myriapoda? Reliability of current arguments
Figs 3–6. Pauropus sp., series of ultrathin transverse sections through the head, showing components of the tentorial complex from anterior to posterior as indicated in Fig. 1. 3. Preoral chamber cut at level of mandibular gnathal lobe (mg), showing epipharnygeal bar (eb) and frontal process (fp). Arrow indicates insertion of muscle fibres. 4. Same, a little farther back, showing transverse bar (tb) as a side branch of the epipharyngeal bar (eb). Arrows indicate muscle attachments. 5. Same, farther back, showing the base of the right posterior process and its connection to epi- (eb) and hypopharnygeal bar (hb) as well as pharynx (ph) and infrabuccal chamber (if). 6. Cephalic cavity, showing posterior processes (pp) below the gut. Arrow indicates the cavity of the left posterior process.
Figs 11–15 in Monophyly of the Myriapoda? Reliability of current arguments
Figs 11–15. Frontal view of tentorial complex in 11. Lithobius (Chilopoda) as illustrated by Snodgrass (1950, modified) and corresponding components, drawn on the same illustration for direct comparison, in 12. Symphyla, 13. Tetramerocerata (Pauropoda), 14. Pselaphognatha (Diplopoda) as well as 15. Geophilomorpha (Chilopoda).Abbreviations (in brackets: Snodgrass's terminology): eb epipharyngeal bar, epa epipharyngeal arm, flt fultura, hap head apodeme, hb hypopharyngeal bar, hpa hypopharyngeal arm, pp posterior process, tb transverse bar.
Figs 1–2 in Monophyly of the Myriapoda? Reliability of current arguments
Figs 1–2. Schematic illustration of the cephalic tentorium in (1) Pauropus sp. (ventral view) and (2) Polyxenus lagurus (dorsal view). Numbered broken lines refer to oblique transverse sections. Abbreviations: eb epipharyngeal bar, fp frontal process, hb hypopharyngeal bar, pp posterior process, tb transverse bar.
Figure 6 in A preliminary survey and range extension of millipedes species introduced in Brazil (Myriapoda, Diplopoda)
Figure 6. (A) Prosopodesmus jacobsoni, gonopod in mesal view (after Silvestri, 1910); (B) Glyphiulus granulatus, anterior gonopods in posterior view; (C) Trachyjulus calvus, anterior gonopods in anterior view; (D) Trachyjulus calvus, posterior gonopods in anterior view (after Schubart, 1946); (E) Leptogoniulus sorornus, anterior gonopods in anterior view; (F) Leptogoniulus sorornus, telopodite of left posterior gonopod in anterior view (after Shelley & Lehtinen, 1999). Scale bars: 20 µm (B); 100 µm (C, D); 750 µm (E); 1 mm (F). Image (A) not to scale.
Figure 5 in A preliminary survey and range extension of millipedes species introduced in Brazil (Myriapoda, Diplopoda)
Figure 5. (A) Oxidus gracilis, gonopod in mesal view; (B) Orthomorpha coarctata, gonopod in mesal view; (C) Trigoniulus corallinus, anterior gonopods in anterior view; (D) Trigoniulus corallinus, telopodite of left posterior gonopod in anterior view; (E) Rhinotus purpureus, anterior gonopod in posterior view; (F) Rhinotus purpureus, posterior gonopod in posterior view. Scale bars: 100 µm (A, B, E, F); 750 µm (C); 1 mm (D).
Figure 3 in A preliminary survey and range extension of millipedes species introduced in Brazil (Myriapoda, Diplopoda)
Figure 3. Introduced species in Brazil: (A) Brazilian regions; (B) Proportion of species by states and regions; (C) Richness by grid 1°×1°. See Table 1 for the abbreviations of the states.
Figure 4 in A preliminary survey and range extension of millipedes species introduced in Brazil (Myriapoda, Diplopoda)
Figure 4. Introduced species in Brazil, habitus: (A) Orthomorpha coarctata; (B) Oxidus gracilis; (C, D) Glyphiulus granulatus; (E) Trigoniulus corallinus; (F) Rhinotus purpureus. Scale bars: 2 mm (A, B, E); 500 µm (C, D); 200 µm (F).
Figure 2 in A preliminary survey and range extension of millipedes species introduced in Brazil (Myriapoda, Diplopoda)
Figure 2. Distribution maps of Trigoniulus corallinus, Leptogoniulus sorornus (Spirobolida, Pachybolidae), Cylindroiulus truncorum (Julida, Julidae), Paraspirobolus lucifugus (Spirobolida, Spirobolellidae), and Rhinotus purpureus (Polyzoniida, Siphonotidae).
Figure 1 in A preliminary survey and range extension of millipedes species introduced in Brazil (Myriapoda, Diplopoda)
Figure 1. Distribution maps of Oxidus gracilis, Orthomorpha coarctata (Polydesmida, Paradoxosomatidae), Prosopodesmus jacobsoni (Polydesmida, Haplodesmidae), Glyphiulus granulatus (Spirostreptida, Cambalopsidae), Trachyjulus calvus (Spirostreptida, Cambalopsidae), Epitrigoniulus cruentatus (Spirobolida, Pachybolidae), and Cylindroiulus britannicus (Julida, Julidae).
Figure 7 in A preliminary survey and range extension of millipedes species introduced in Brazil (Myriapoda, Diplopoda)
Figure 7. (A) Epitrigoniulus cruentatus, anterior gonopods in posterior view (after Brölemann, 1903); (B) Epitrigoniulus cruentatus, posterior gonopods in anterior view (after Brölemann, 1903). Distal region in detail; (C) Paraspirobolus lucifugus, anterior gonopods in anterior view; (D) Paraspirobolus lucifugus, posterior gonopod in anterior view (after Attems, 1900); (E) Cylindroiulus britannicus, gonopod in anterior view. Detail of telson in lateral view (after Blower, 1985); (F) Cylindroiulus truncorum, gonopod in anterior view (after Blower, 1985). Images not to scale.
Figure 1 in Diversity, distribution, and conservation of millipedes (Myriapoda: Diplopoda) in the Douala-Edéa National Park, Littoral Region of Cameroon
Figure 1. Study site in the Douala-Edéa National Park.
Figure 2 in Diversity, distribution, and conservation of millipedes (Myriapoda: Diplopoda) in the Douala-Edéa National Park, Littoral Region of Cameroon
Figure 2. Species rarefaction curve among different habitat types in Douala-Edéa National Park.
FIG. 7 in Checklist of the terrestrial and freshwater arthropods of French Polynesia (Chelicerata; Myriapoda; Crustacea; Hexapoda)
FIG. 7. — Raiateana oulietea Boulard, 1979 from Raiatea. Photograph: F. Jacq.
FIG. 4 in Checklist of the terrestrial and freshwater arthropods of French Polynesia (Chelicerata; Myriapoda; Crustacea; Hexapoda)
FIG. 4. — Misumenops melloleitaoi Berland,1942 from Tahiti.Photograph:F.Jacq.
FIG. 6 in Checklist of the terrestrial and freshwater arthropods of French Polynesia (Chelicerata; Myriapoda; Crustacea; Hexapoda)
FIG. 6. — Ischnura cardinalis Kimmins, 1929 from Taha'a. Photograph: F. Jacq.
FIG. 2 in Checklist of the terrestrial and freshwater arthropods of French Polynesia (Chelicerata; Myriapoda; Crustacea; Hexapoda)
FIG. 2. — Rhyncogonus sp. from Raiatea. Photograph: F. Jacq.
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.