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.
135
datasets available to search
ShareScore release 0.9.0
Dataset results
135 results for “Saphonecrus”
Fig. 30 in Fig. 7 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015
Fig. 30. Position of the Taiwanese species on the phylogenetic tree of the genus Pseudechiniscus based on the concatenated matrix (18S rRNA+28S rRNA+ITS-1). Values at nodes separated by forward slashes signify Bayesian posterior probability and bootstrap values (ML), respectively. Maximum supports, i.e., 1.00 for BI and 100 for ML, are indicated by asterisks (*), whereas nodes unsupported in either analysis are marked by hashtags (#). The scale refers to the Bayesian consensus tree and represents substitutions per site. Species numbering preserved from Gąsiorek et al. (2021c).
Fig. 28 in Fig. 7 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015
Fig. 28. Morphology of Pseudechiniscus (Pseudechiniscus) totoro sp. nov. (PCM): A, holotypic female in dorsolateral view (insert shows claws III); B, allotypic male in dorsolateral view; C, dorsal sculpturing; D, ventral sculpturing. Scale bars in μm.
Fig. 26 in Fig. 7 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015
Fig. 26. Morphology of Pseudechiniscus (Pseudechiniscus) formosus sp. nov. (PCM): A, holotypic female in dorsal view; B, dorsal sculpturing (arrowheads indicate large capituli of pillars); C, ventral sculpturing. Scale bars in μm.
Fig. 12 in Fig. 7 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015
Fig. 12. Holotypic female of Hypechiniscus crassus sp. nov. (dorsolateral view, PCM). White arrowhead indicates papilla IV. Scale bar in μm.
Fig. 13 in Fig. 7 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015
Fig. 13. Habitus of Hypechiniscus crassus sp. nov. (PCM): A, female (dorsal view); B, allotypic male (dorsolateral view). Arrowhead indicates papilla IV. Scale bars in μm.
Fig. 17 in Fig. 7 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015
Fig. 17. Schematic depiction of female morphology of Hypechiniscus crassus sp. nov.: A, dorsum; B, venter.
Fig. 4 in Fig. 7 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015
Fig. 4. Habitus of females of Echiniscus clevelandi with fully developed sculpturing (dorsal view, SEM). Scale bars in μm.
Fig. 24 in Fig. 7 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015
Fig. 24. Morphology of Pseudechiniscus (Meridioniscus) dreyeri sp. nov. (PCM): A, holotypic female in dorsolateral view (insert shows claws II); B, dorsal sculpturing; C, ventral sculpturing. Scale bars in μm.
Fig. 21 in Fig. 7 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015
Fig. 21. Sculpturing of a female of Nebularmis crebraclava (PCM): A, cephalic region; B, central body portion; C, caudal region. Scale bars in μm.
Fig. 8 in Fig. 7 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015
Fig. 8. Morphological details of Echiniscus clevelandi (SEM): A–C, varying levels of the sculpturing development of the scapular plate; D, cephalic region with peribuccal appendages and marked subcephalic swellings; E, claws II; F, claws IV. Scale bars in μm.
Fig. 22 in Fig. 7 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015
Fig. 22. Morphological details of females of Nebularmis crebraclava (PCM): A, cephalic region with peribuccal appendages; B, subcephalic plates and spines I; C, claws I; D, claws IV. Scale bars in μm.
Fig. 16 in Fig. 7 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015
Fig. 16. Morphological details of Hypechiniscus crassus sp. nov. (SEM): A, cephalic region with peribuccal appendages; B, sculpturing of the scapular plate in close-up (empty incised arrowheads indicate rudimentary striae); C, claws I; D, claws IV. White arrowheads point out pseudoaccessory points, and empty arrowhead – aberrant secondary spur on external claw. Scale bars in μm.
Fig. 3 in Fig. 7 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015
Fig. 3. Habitus of males of Echiniscus clevelandi (PCM): A, typical sculpturing (dorsolateral view); B, atypical sculpturing with poorly developed pores and asymmetric lack of spine B (dorsolateral view). Scale bars in μm.
Fig. 23 in Fig. 7 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015
Fig. 23. Historical biogeography of the genus Nebularmis as inferred in the S-DIVA on the Bayesian phylogenetic tree under the random local clock with the speciation: Yule process as the tree prior. B1–B5 denote subsequent nodes, all but B2 (0.85) had maximal (1.00) support. Echiniscus testudo and Diploechiniscus oihonnae were used as outgroups.
Fig. 19. The concatenated 18S in Fig. 7 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015
Fig. 19. The concatenated 18S rRNA+28S rRNA+ITS1 consensus Bayesian phylogenetic tree of Hypechiniscus, with Acanthechiniscus islandicus as the outgroup. Branch support is given as BI posterior probability values above branches and ML bootstrap values below branches. Maximum supports, i.e., 1.00 for BI and 100 for ML, are indicated by asterisks (*). The ML and the BI tree had the same topology. Scale bar represents substitutions per site.
Fig. 11 in Fig. 7 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015
Fig. 11. Phylogenetic relationships within the Echiniscus virginicus complex based on concatenated ITS-1, ITS-2 and COI sequences as inferred in the Bayesian approach. Echiniscus succineus was used as an outgroup. Scale bar represents substitutions per site.
Fig. 15 in Fig. 7 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015
Fig. 15. Sculpturing of Hypechiniscus crassus sp. nov. (PCM): A, dorsal (female); B, ventral (female). Arrowhead indicates papilla IV. Scale bars in μm.
Fig. 10 in Fig. 7 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015
Fig. 10. Habitus of Echiniscus hoonsooi (PCM) from Japan: A, female (dorsolateral view, insert shows claws II); B, dorsal sculpturing in close-up. Scale bars in μm.
Fig. 14 in Fig. 7 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015
Fig. 14. Habitus of Hypechiniscus crassus sp. nov. (dorsal view, SEM): A, female; B, male. Arrowheads indicate papilla IV. Scale bars in μm.
Fig. 2 in Fig. 7 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015
Fig. 2. Habitus of females of Echiniscus clevelandi (PCM): A, fully developed sculpturing and chaetotaxy (dorsal view); B, typical sculpturing and asymmetric lack of spine C (dorsolateral view); C, atypical sculpturing with poorly developed pores and full chaetotaxy (dorsal view). Scale bars in μm.
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.