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.
268
datasets available to search
ShareScore release 0.9.0
Dataset results
268 results for “Spirobolidae”
Fig. 22 in Phylogeny of three species groups of Rhinocricus Karsch, 1881 based on morphological characters (Diplopoda, Spirobolida, Rhinocricidae)
Fig. 22 Seventh body ring, anterior view, showing internal extensions, Poecilocricus sp. pj, projections. Scale bar = 1 mm
Figs. 29–31 in Phylogeny of three species groups of Rhinocricus Karsch, 1881 based on morphological characters (Diplopoda, Spirobolida, Rhinocricidae)
Figs. 29–31 Posterior body rings, lateral view, showing the length of the epiproct. 29 Prolonged in a small process, not surpassing paraproct, Rhinocricus sooretama. 30 Prolonged into a large process, surpassing paraproct, Argentocricus. sp. 31 Lacking process, R. funebris. e, epiproct; p, paraproct; h, hypoproct. Scale bar = 2 mm
Figs. 20, 21 in Phylogeny of three species groups of Rhinocricus Karsch, 1881 based on morphological characters (Diplopoda, Spirobolida, Rhinocricidae)
Figs. 20, 21 Anterior body rings, ventral view, showing the length of projections on coxa of leg pair 3. 20 Short, wider than long, Rhinocricus asper. 21 Elongated, twice its width, Rhinocricus sooretama. proj, projections. Scale bar = 2 mm
Figs. 2, 3 in Phylogeny of three species groups of Rhinocricus Karsch, 1881 based on morphological characters (Diplopoda, Spirobolida, Rhinocricidae)
Figs. 2, 3 Anterior body rings, ventral view, showing ventral edge of clypeus. 2 Rounded, Rhinocricus fortaleza. 3 Pointed, Rhinocricus sooretama. ve, ventral edge. Scale bar = 2 mm
Fig. 1 in Phylogeny of three species groups of Rhinocricus Karsch, 1881 based on morphological characters (Diplopoda, Spirobolida, Rhinocricidae)
Fig. 1 Most parsimonious tree of Schubat's groups of Rhinocricus after implied weighting (K = 9.105) (filled circle = nonhomoplasious transformations, unfilled circle = homoplasious transformations). Numbers above and below the circles indicate the character number and state, respectively. Numbers in parentheses below the branches represent relative Bremer values. Capital letters indicate clades discussed in the
FIGURE 6 in A giant African millipede re-discovered, re-located and re-classified after 120 years (Diplopoda, Spirobolida, Pachybolidae)
FIGURE 6. Right vulva of Pelmatojulus tectus (Cook, 1897), specimen from Cameroon. A. ventral view. B. lateral view. C. anterior-ventral view. D.posterior view. Abbreviations: lb = lobe of lateral valve, lv = lateral valve, mv = mesal valve, op = operculum. Scale bars = 0.5 cm (A, B), 0.2 mm (C, D).
FIGURE 4 in A giant African millipede re-discovered, re-located and re-classified after 120 years (Diplopoda, Spirobolida, Pachybolidae)
FIGURE 4. Gonopods of Pelmatoiulus tectus (Cook, 1897), specimen from Cameroon (A–C) A. Anterior gonopods, anterior view. B. Anterior gonopods, posterior view. C. Left posterior gonopod, anterior view. Abbreviations: cx = coxa, lo = apical lobe of telopodite, sf = sigmoid flange of telopodite, st = sternum, tlp = telopodite. Scale bars = 1 mm.
FIGURE 3 in A giant African millipede re-discovered, re-located and re-classified after 120 years (Diplopoda, Spirobolida, Pachybolidae)
FIGURE 3. Gonopods of Pelmatojulus tectus (Cook, 1897) (A–D) and P. togoensis (Cook, 1897) (E–G), after Cook (1899), rearranged. A, E. Anterior gonopods, anterior view. B: Anterior gonopods, posterior view. C, F. right posterior gonopod, anterior view. D, G. right posterior gonopod, posterior view. Not drawn to scale.
FIGURE 5. Pelmatoiulus spp., left posterior gonopod. A, B in A giant African millipede re-discovered, re-located and re-classified after 120 years (Diplopoda, Spirobolida, Pachybolidae)
FIGURE 5. Pelmatoiulus spp., left posterior gonopod. A, B: P. tectus (Cook, 1897), male from Cameroon. C, D: P. togoensis (Cook, 1897), male from Ghana. A, C: anterior view. B, D: apical lobe with efferent canal. Abbreviations: al = apical lobe, cn = constriction, eg = efferent groove, pr = basal process, sa = striate area, sl = subapical lobe. Scale bars: 1 mm (A, B), 0.5 mm (B, D).
FIGURE 2 in A giant African millipede re-discovered, re-located and re-classified after 120 years (Diplopoda, Spirobolida, Pachybolidae)
FIGURE 2. Pelmatojulus tectus (Cook, 1897), male from Cameroon, A–D. Right antenna. A. Apical view. B. Close-up of a dyad of sensilla from apical (7th) antennomere. C. Tip of sensillum from apical antennomere. D. Apico-dorsal sensilla from 6th antennomere. E–F. Gnathochilarium. Abbreviations: ll = lamella lingualis, st = stipes. Scale bars = 0.5 mm (E–F), 0.1 mm (A), 0.01 mm (B, D), 0.001 mm (C).
Fig. 4 in Cladistic analysis and taxonomic revision of the genus Poecilocricus Schubart, 1962 (Diplopoda, Spirobolida, Rhinocricidae)
Fig. 4 The most parsimonious tree (black square = exclusive synapomorphies, white square = homoplasious synapomorphies). Capital letters indicate clades discussed in the text. Bremer values: numbers below the character state in parentheses
Fig. 3 in Cladistic analysis and taxonomic revision of the genus Poecilocricus Schubart, 1962 (Diplopoda, Spirobolida, Rhinocricidae)
Fig. 3 Characters of telopodite of the posterior gonopod. a Poecilocricus itacarambiensis sp. nov., showing the external branch bifurcated in two short branches, character 38 (2), projections on femoral base, character 37 (1) and solenomere lanceolated; b Anadenobolus sp. showing external branch lamellated, character 38 (0) and solenomere thin and long; c, Argentocricus subtriangularis, showing external branch digitiform, character 38 (1). eb external branch, fb femoral base, sl solenomere. Scale = 1 mm
Fig. 12 in Cladistic analysis and taxonomic revision of the genus Poecilocricus Schubart, 1962 (Diplopoda, Spirobolida, Rhinocricidae)
Fig. 12 Poecilocricus lina sp. nov., male holotype (LES 0021899) a–f. a Anterior body rings, lateral view; b anterior body rings, ventral view; c posterior body rings, lateral view; d right posterior gonopod, anterior view; e anterior gonopod, anterior view; f anterior gonopod, posterior view. b bulge, cxt coxite, eb external branch, ep epiproct, ib inner branch, lob lobe, pr paraproct, sl solenomere, st sternite, tl telopodite. Scale = 1 mm
Fig. 6 Poecilocricus singularis Schubart, 1962a in Cladistic analysis and taxonomic revision of the genus Poecilocricus Schubart, 1962 (Diplopoda, Spirobolida, Rhinocricidae)
Fig. 6 Poecilocricus singularis Schubart, 1962a, male (MZSP 1145) a–c. a Anterior gonopod, anterior view; b anterior gonopod, posterior view; c left posterior gonopod, anterior view. cxt coxite, eb external branch, sl solenomere, st sternite, tl telopodite. Scale = 1 mm
Fig. 2 in Cladistic analysis and taxonomic revision of the genus Poecilocricus Schubart, 1962 (Diplopoda, Spirobolida, Rhinocricidae)
Fig. 2 Characters of anterior gonopod. a sternite constricted of Rhinocricus cachoeirensis, character 24 (1); b coxite of Poecilocricus singularis with similar round spots at both sides, character 26 (1) and constriction in lateral portion, character 27 (1); c membranous rounded bulge in medial portion of telopodite, Argentocricus subtriangularis, character 32 (1); d coxite in medial portion constricted, character 34 (0) and chitnized rounded bulge of telopodite, Erythrocricus electrofasciatus, character 32 (0); e coxite shortened in medial portion, Poecilocricus mataraca sp nov., character 35 (1). cxt coxite, st sternite, tl telopodite. Scale = 1 mm
Fig. 10 in Cladistic analysis and taxonomic revision of the genus Poecilocricus Schubart, 1962 (Diplopoda, Spirobolida, Rhinocricidae)
Fig. 10 Poecilocricus itaracam- biensis sp. nov., male holotype (IBSP 3659) a–f. a Anterior body rings, lateral view; b posterior body rings, lateral view; c anterior body rings, ventral view; d right posterior gonopod, anterior view; e anterior gonopod, anterior view; f anterior gonopod, posterior view. cxt coxite, eb external branch, ep epiproct, hp hypoproct, ib inner branch, lob lobe, pr paraproct, sl solenomere, st sternite, tl telopodite. Scale = 1 mm
Fig. 11 in Cladistic analysis and taxonomic revision of the genus Poecilocricus Schubart, 1962 (Diplopoda, Spirobolida, Rhinocricidae)
Fig. 11 Poecilocricus itacarambiensis sp. nov., male holotype (IBSP 3659) a–c. a Anterior gonopod, anterior view; b anterior gonopod, posterior view; c right posterior gonopod, anterior view. Poecilocricus lina sp. nov., male holotype (LES 0,021,899) d–f. d anterior gonopod, anterior view; e anterior gonopod, posterior view; f right posterior gonopod, anterior view. b bulge, cxt coxite, eb external branch, ib inner branch, lob lobe, sl solenomere, st sternite, tl telopodite. Scale = 1 mm
Fig. 5 Poecilocricus singularis Schubart, 1962a in Cladistic analysis and taxonomic revision of the genus Poecilocricus Schubart, 1962 (Diplopoda, Spirobolida, Rhinocricidae)
Fig. 5 Poecilocricus singularis Schubart, 1962a, male (MZSP 1145) a–f. a Anterior body rings, ventrolateral view; b anterior body rings, ventral view; c posterior body rings, lateral view; d left posterior gonopod, anterior view; e anterior gonopod, anterior view; f anterior gonopod, posterior view. cxt coxite, eb external branch, ep epiproct, ib inner branch, lob lobe, pr paraproct, sl solenomere, st sternite, tl telopodite. Scale = 1 mm
Fig. 1 in Cladistic analysis and taxonomic revision of the genus Poecilocricus Schubart, 1962 (Diplopoda, Spirobolida, Rhinocricidae)
Fig. 1 Characters of external morphology. a Gnathochilarium, showing detail of mentum, Poecilocricus singularis, character 4 (1); b second body ring in ventral view, Poecilocricus singularis, character 7 (1). Seventh body ring in ventral view: c showing opening of gonopod without constriction, Erythrocricus sanguineostria- tus, character 10 (0); d showing opening of gonopod constricted, Argentocricus nobilis, character 10 (1). Poecilocricus singularis: e coxae of leg pair 5, character 14 (2); f coxae of leg pair 6, character 15 (2); g coxae of leg pair 7, character 16 (2); h telson in ventral view, showing shape of opening of paraproct, character 20 (0). cx coxae, hp hypoproct, m mentum, pr paraproct, stp stipes. Scale = 1 mm
Fig. 9 in Cladistic analysis and taxonomic revision of the genus Poecilocricus Schubart, 1962 (Diplopoda, Spirobolida, Rhinocricidae)
Fig. 9 Poecilocricus vazante sp. nov., male holotype (IBSP 13064) a–g. a Anterior body rings, lateral view; b anterior body rings, ventral view; c posterior body rings, lateral view; d left posterior gonopod, anterior view; e anterior gonopod, anterior view; f anterior gonopod, posterior view; g detail of femoral base of telopodite of the posterior gonopod. cxt coxite, eb external branch, ep epiproct, hp hypoproct, ib inner branch, lob lobe, pr paraproct, pj projections of femoral base, sl solenomere, st sternite, tl telopodite. Scale = 1 mm
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.