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.
15
datasets available to search
ShareScore release 0.9.0
Dataset results
15 results for “Geckolepis”
Figure 8 in Off the scale: a new species of fishscale gecko (Squamata: Gekkonidae: Geckolepis) with exceptionally large scales
Figure 8 Micro-CT images of pectoral girdle of Geckolepis, based on G. megalepis sp. nov. (ZSM 2126/2007). (A) Ventral and (B) lateral view. Abbreviations: 1cf, primary coracoid fenestra; 2cf, secondary coracoid fenestra; acr, acromion process; cf, clavicular fenestra; cl, clavicle; cor, coracoid; ic, interclavicle; gf, glenoid fossa; hu, humerus; hu.c, humeral condyle; hu.dtp, deltopectoral crest of humerus; hu.ec, ectepicondylar crest of humerus; hu.hc, humeral crest of humerus; mc, metacarpal; ms, mesosternum; p, phalanges; ps, presternum; pu, patella ulnaris; r, radius; rl, radiale; s, scapula; sc.1c, primary coracoid ray of scapulocoracoid; sc.2c, secondary coracoid ray of scapulocoracoid; scf, scapulocoracoid fenestra; sf, scapular fenestra; ss, suprascapula; sc.sr, scapular ray of scapulocoracoid; sr, sternal ribs; sucf, supracoracoid foramen; u, ulna; ul, ulnare; xs, xiphisternum.
Figure 6 in Off the scale: a new species of fishscale gecko (Squamata: Gekkonidae: Geckolepis) with exceptionally large scales
Figure 6 Micro-CT images of skull (cranium and jaw) of the holotype of Geckolepis megalepis sp. nov. (ZSM 2126/2007). (A) Dorsal, (B) ventral, (C) lateral, (D) labial, and (E) lingual view. Abbreviations: adf, anterior inferior dental foramen; amf, anterior mylohyoid foramen; ar, articular facet; asnp, ascending nasal process of premaxilla; bo, basioccipital; bp, basipterygoid process of parabasisphenoid; ch, choana; cob, compound bone; cor, coronoid; d, dentary; dpp, (continued on next page...) Figure 6 (... continued) descending parietal process; ect, ectopterygoid; ept, epipterygoid; f, frontal; hscc, horizontal semi-circular canal; if, incisive foramen; j, jugal; larst, lateral aperture of the recessus scalae tympani; mdf, mandibular fossa; mf, mental foramen; mko, opening of the Meckelian canal, mx, maxilla; mx.ap, anterior process of maxilla; mx.fp, facial process of maxilla; mx.pp, posterior process of maxilla; mx.ps, palatal shelf of maxilla; n, nasal; occ, occipital condyle; oto, otooccipital; pal, palatine; pal.mp, maxillary process of palatine; pal.vf, vomerine flange of palatine; par, parietal; pbsh, parabasisphenoid; pmx, premaxilla; pmx.pps, premaxilla palatal shelf; pof, postorbitofrontal; pop, paroccipital process; ppp, posterolateral process of parietal; prf, prefrontal; pro, prootic; pro.ca, crista alaris of prootic; pro.cp, crista prootica of prootic; psaf, posterior surangular foramen; pscc, posterior semicircular canal; pt, pterygoid; pt.qp, quadrate process of pterygoid; q, quadrate; q.ch, conch of quadrate; rap, retroarticular process; s, stapes; saf, surangular foramen; scr, sclerotic ring; smx, septomaxilla; spl, splenial; sof, suborbital fenestra; sq, squamosal, so, supraoccipital; spht, sphenooccipital tubercle; tbr, trabeculae; v, vomer; v.lp, lateral process of vomer; v.mp, maxillary process of vomer. A rotational video of the skull is provided in Video S1.
Figure 5 in Off the scale: a new species of fishscale gecko (Squamata: Gekkonidae: Geckolepis) with exceptionally large scales
Figure 5 Micro-CT images of mineraliZed scales of Geckolepis specimens. Shown in dorsal (A, D, F, H, J) and ventral (B, E, G, I, K) view, and coronal cut at the parietal level (C) of Geckolepis megalepis (A– C, ZSM 2126/2007), Geckolepis OTU AB (D–E, ZSM 1520/2008), G. maculata (F–G, ZMB 9655), and G. humbloti (H–I, ZSM 80/2010; J–K, ZSM 81/2006). Note the high density of the scale covering in all the species, and the lack of mineralization in the postmental scales (compare with Figs. 2 and 3).
Figure 2 in Off the scale: a new species of fishscale gecko (Squamata: Gekkonidae: Geckolepis) with exceptionally large scales
Figure 2 Schematic drawings exemplifying morphological measurements and scale counts, following the scheme of Hawlitschek et al. (2016) based on Köhler et al. (2009). (A) Measurements and pholidosis of the head, drawn from the specimen in Fig. 3A (small scales around the eye and nostril not depicted); (B) body measurements; (C) postmental scale conditions, adapted from Lemme et al. (2013); (D) postnasal scale configuration types, adapted from Köhler et al. (2009). Scale counts in A: purple, canthal scales; blue, supralabials; red, infralabials. In C, cyan indicates mental scales and purple indicates postmental scales. For abbreviations and unillustrated characters, see Materials and Methods.
Figure 7 in Off the scale: a new species of fishscale gecko (Squamata: Gekkonidae: Geckolepis) with exceptionally large scales
Figure 7 Micro-CT images of spinal column of Geckolepis, based on G. megalepis sp. nov. (ZSM 2126/2007). (A) Lateral and (B) dorsal view. Abbreviations: lb, lumbar; sc, sacral. Regions are indicated by the posterodorsal-most point of the neural arches.
Figure 10 in Off the scale: a new species of fishscale gecko (Squamata: Gekkonidae: Geckolepis) with exceptionally large scales
Figure 10 Comparative micro-CT images of the skull (cranium and jaw) of other Geckolepis species. Shown in dorsal (A, F, K, P), ventral (B, G, L, Q), lateral (C, H, M, R), labial (D, I, N, S), and lingual (E, J, O, T) view. Depicting Geckolepis OTU AB (A–E, ZSM 1520/2008), holotype of G. maculata (F–J, ZMB 9655), and G. humbloti (K–O, ZSM 80/2010; P–T, ZSM 81/2006). From volume-rendering of micro-CT scans. Rotational videos of these skulls are provided in Videos S2–S5. For labels, see Fig. 6.
Figure 4 in Off the scale: a new species of fishscale gecko (Squamata: Gekkonidae: Geckolepis) with exceptionally large scales
Figure 4 Specimens of Geckolepis megalepis sp. nov. in preservative. (A–C) The holotype, ZSM 2126/2007; (D–F) paratype ZSM 232/2016. Shown in dorsal (A, D) and ventral (C, F) view, with a close-up view of the postmental scales (B, E) coloured for reference to Fig. 1. Scale bars indicate 10 mm. Chin insets are not to scale.
Figure 9 in Off the scale: a new species of fishscale gecko (Squamata: Gekkonidae: Geckolepis) with exceptionally large scales
Figure 9 Micro-CT images of pelvic girdle of Geckolepis, based on G. megalepis sp. nov. (ZSM 2126/2007). (A) Dorsal and (B) lateral view. Abbreviations: ac, acetabulum; ag, astragalocalcaneum; ep, epipubis; f, femur; fb, fibula; f.it, internal trochanter; f.itf, intertrochanteric fossa; f.fc, femoral condyle; hyi, hypoischium; il, ilium; il.pap, preacetabular process of ilium; is, ischium; is.t, ischiadic tuberosity; ltp, lenticular tibial patella; mt, metatarsals; of, obturator foramen; p, phalanges; pic, proischiadic cartilage; pb, pubis; pb.pl, processus lateralis of pubis; pc, post-cloacal bone; pt, pubic tubercle; tb, tibia; tf, thyroid fenestra.
Figure 3 in Off the scale: a new species of fishscale gecko (Squamata: Gekkonidae: Geckolepis) with exceptionally large scales
Figure 3 Specimens of Geckolepis megalepis sp. nov. in life. (A) A specimen observed by A. Anker (photograph used with permission); (B) a specimen observed by FG, and (C) a specimen photographed after scale loss, with inset indicating the transparent 'tear zone' at the base of a scale. None of the photographed animals were collected, but their attribution to G. megalepis is clear on the basis of the large size of their scales. Note that the tails of all three specimens are regenerated.
Fig. 5 in Resurrection of the Comoran fish scale gecko Geckolepis humbloti Vaillant, 1887 reveals a disjunct distribution caused by natural overseas dispersal
Fig. 5 Photos of Geckolepis humbloti. a ZSM 80/2010 from the type locality Grand Comoro. Lateral scales were shed in a defensive reaction during capturing. b ZSM 84/2010 at 632 m near Pomoni, Anjouan, the highest recorded locality of any Geckolepis. c ZSM 1699/2008 at Choungui, Mayotte, in a natural hiding place under the bark of a tree. d Habitat of G. humbloti at the dry forest of Saziley, Mayotte
Fig. 4 in Resurrection of the Comoran fish scale gecko Geckolepis humbloti Vaillant, 1887 reveals a disjunct distribution caused by natural overseas dispersal
Fig. 4 The skulls of Geckolepis humbloti (ZSM 81/2006 and ZSM 80/ 2010) in a dorsal, b ventral, and c lateral view. Length of bar = 1 mm. See Supplementary A3 for PDF-embedded interactive 3D models of these skulls
Fig. 1 in Resurrection of the Comoran fish scale gecko Geckolepis humbloti Vaillant, 1887 reveals a disjunct distribution caused by natural overseas dispersal
Fig. 1 Results of the molecular genetic analysis of Geckolepis. The maximum likelihood tree is based on 12S and ND4 sequences. Only closely related outgroups are shown. Support values of 1000 bootstrap repeats are given below nodes. TB Tsingy de Bemaraha, AN Anjouan, GC Grand Comoro, MA Mayotte, Mo Mohéli. All representatives of the taxonomically unresolved Geckolepis maculata complex are named Geckolepis maculata in the tree
Fig. 2 in Molecules and morphology suggest cryptic species diversity and an overall complex taxonomy of fish scale geckos, genus Geckolepis
Fig. 2 Left: Simplified ND4 tree of Geckolepis showing major clades and lineages referred to as OTUs as shown in Fig. 1 (relationships of G. polylepis are derived from analyses of the 12S gene sequences). Major diagnostic morphological differences of each (or combined) OTU are summarized at the right of each respective clade (considers only adult
Figure 1 in Off the scale: a new species of fishscale gecko (Squamata: Gekkonidae: Geckolepis) with exceptionally large scales
Figure 1 Molecular phylogeny and distribution of Geckolepis OTUs based mainly on Lemme et al. (2013). Dotted lines in the phylogeny indicate uncertain placement. The phylogenetic position and distribution of Geckolepis humbloti is inferred from Hawlitschek et al. (2016).
Fig. 3 in Resurrection of the Comoran fish scale gecko Geckolepis humbloti Vaillant, 1887 reveals a disjunct distribution caused by natural overseas dispersal
Fig. 3 Map created in QGIS 2.8.1 showing the known distribution of Geckolepis humbloti. Colored dots represent known localities: Red = Anjouan, blue = Mohéli, green = Mayotte, yellow = Grand Comoro, black = Madagascar (Tsingy de Bemaraha). In addition to the samples used in this study, locality data was taken from Hawlitschek et al. (2011), Hawlitschek and Glaw (2014), and Wang et al. (2015). Inlay shows the position in the context of the African continent
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.