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.
2,401
datasets available to search
ShareScore release 0.7.1
Dataset results
2,401 results for “subterranean”
Figure 7 in Intra- and interspecific skull variation in two sister species of the subterranean rodent genus Ctenomys (Rodentia, Ctenomyidae): coupling geometric morphometrics and chromosomal polymorphism
Figure 7. Phenogram computed from the Mahalanobis distances between chromosomal groups for Ctenomys torquatus from Brazil (2n = 40, 44, and 46), C. torquatus from Uruguay (2n = 44u), and Ctenomys pearsoni (2n = 66 and 70). Tree made by using the neighbour-joining method with branch lengths proportional to morphological distances. Scale bar: 4 units.
Figure 4 in Intra- and interspecific skull variation in two sister species of the subterranean rodent genus Ctenomys (Rodentia, Ctenomyidae): coupling geometric morphometrics and chromosomal polymorphism
Figure 4. Kernel density estimates on principal components (PC) 1 and 2 of shape variables and convex hulls for specimens of Ctenomys torquatus (•) and Ctenomys pearsoni (Δ). Variance percentages are given on the y axis. Dark areas indicate higher density regions.
Figure 6 in Intra- and interspecific skull variation in two sister species of the subterranean rodent genus Ctenomys (Rodentia, Ctenomyidae): coupling geometric morphometrics and chromosomal polymorphism
Figure 6. Plot of the six chromosomal populations for the first two axes of the linear discriminant analysis (LDA) for three integrated views. Ctenomys torquatus, 2n = 40, 44, 44u, and 46; Ctenomys pearsoni, 2n = 66 and 70.
Figure 3 in Intra- and interspecific skull variation in two sister species of the subterranean rodent genus Ctenomys (Rodentia, Ctenomyidae): coupling geometric morphometrics and chromosomal polymorphism
Figure 3. Box-and-whisker plots showing the distribution of centroid size for the lateral view of the skull of two Ctenomys torquatus and Ctenomys pearsoni specimens, and for each sex. Upper and lower hinges correspond to the first and third quartiles, and whiskers correspond to the 95% confidence interval.
Figure 2 in Intra- and interspecific skull variation in two sister species of the subterranean rodent genus Ctenomys (Rodentia, Ctenomyidae): coupling geometric morphometrics and chromosomal polymorphism
Figure 2. Ctenomys torquatus skull, with indication of morphological landmarks for the dorsal (A), ventral (B), and lateral (C) views of the cranium. Appendix 2 gives the key to the landmarks. Scale bar: 1 cm.
Fig. 26 in An unexpected discovery of a new subgenus and a species of Plusiocampa (Campodeidae, Diplura) alongside an overview of Central European subterranean campodeids
Fig. 26. Distribution of Plusiocampinae (Plusiocampa Silvestri, 1912 and Hystrichocampa Condé, 1962) in Central Europe; blue indicates karst regions.
Figs 24–25 in An unexpected discovery of a new subgenus and a species of Plusiocampa (Campodeidae, Diplura) alongside an overview of Central European subterranean campodeids
Figs 24–25. Plusiocampa (Plusiocampa) dobati Condé in Dobat, 1975. Urosternite I. 24. Male. 25. Female. a1 = a1-glandular setae. Scale bars = 0.1 mm.
Figs 18–23 in An unexpected discovery of a new subgenus and a species of Plusiocampa (Campodeidae, Diplura) alongside an overview of Central European subterranean campodeids
Figs 18–23. Plusiocampa (Plusiocampa) dobati Condé in Dobat, 1975. 18. Cupuliform organ of the last antennomere. 19. Central cylindrical structure of an olfatory chemoreceptor sensillum of the cupuliform organ. 20. Gouge sensilla. 21. Frontal process. 22. Telotarsal end of metathoracic leg. 23. Detail of telotarsal claw. Scale bars in µm.
Figs 13–17 in An unexpected discovery of a new subgenus and a species of Plusiocampa (Campodeidae, Diplura) alongside an overview of Central European subterranean campodeids
Figs 13–17. Plusiocampa (Pentachaetocampa) inopinata subgen. et sp. nov. 13. Tarsal end of metathoracic leg. 14. Detail of telotarsal claw. 15. Urosternites I-II of a female. 16. g1-glandular setae of urosternite I of a female. 17. Stylus of urosternite VII. Scale bars in µm.
Figs 5–6 in An unexpected discovery of a new subgenus and a species of Plusiocampa (Campodeidae, Diplura) alongside an overview of Central European subterranean campodeids
Figs 5–6. Plusiocampa (Pentachaetocampa) inopinata subgen. et sp. nov. Urosternite I. 5. Male. 6. Female. a1 = a1-glandular setae, g1 = g1-glandular setae. Scale bars: = 0.1 mm.
Figs 3–4 in An unexpected discovery of a new subgenus and a species of Plusiocampa (Campodeidae, Diplura) alongside an overview of Central European subterranean campodeids
Figs 3–4. Plusiocampa (Pentachaetocampa) inopinata subgen. et sp. nov., holotype, ♀. 3. Pro-, meso- and metanotum, left side. 4. Urotergites I–IX, left side. Scale bars = 0.2 mm.
Fig. 10 in Three new species of the subterranean genus Guiodytes from Guangxi, China (Coleoptera: Carabidae: Clivinini)
Fig. 10. Female genitalia of species of Guiodytes Tian, 2013, ventral view. A. G. deharvengi Tian, 2014. B. G. bedosae Tian, 2013. C. G. cavicola Tian, 2013. D. G. inexpectatus Tian & Zhou sp. nov., holotype, ♀ (SCAU).
Fig. 8 in Three new species of the subterranean genus Guiodytes from Guangxi, China (Coleoptera: Carabidae: Clivinini)
Fig. 8. Huang Dong cave, type locality of Guiodytes yueliangensis Huang & Tian sp. nov. A. Mountain massif Yueliang Shan. B. Entrance. C. Specimen of G. yueliangensis Huang & Tian sp. nov., holotype, ♂ (SCAU), found in the cave.
Fig. 4 in Three new species of the subterranean genus Guiodytes from Guangxi, China (Coleoptera: Carabidae: Clivinini)
Fig. 4. Left elytron of species of Guiodytes Tian, 2013. A. G. deharvengi Tian, 2014. B. G. bedosae Tian, 2013. C. G. cavicola Tian, 2013. D. G. weii Huang & Faille sp. nov., holotype, ♂ (SCAU). E. G. yueliangensis Huang & Tian sp. nov., holotype, ♂ (SCAU). F. G. inexpectatus Tian & Zhou sp. nov., holotype, ♀ (SCAU). Dorsal pores indicated by white points.
Fig. 6 in Three new species of the subterranean genus Guiodytes from Guangxi, China (Coleoptera: Carabidae: Clivinini)
Fig. 6. Dapo Dong cave, type locality of Guiodytes weii Huang & Faille sp. nov. A. Entrance. B. A flatworm (Turbellaria) in the cave. C. Guofu Wei taking pictures in the Dapo Dong cave. D. A bat observed in the cave.
Fig. 3 in Three new species of the subterranean genus Guiodytes from Guangxi, China (Coleoptera: Carabidae: Clivinini)
Fig. 3. Head and pronotum of species of Guiodytes Tian, 2013. A. G. deharvengi Tian, 2014. B. G. bedosae Tian, 2013. C. G. cavicola Tian, 2013. D. G. weii Huang & Faille sp. nov., holotype, ♂ (SCAU). E. G. yueliangensis Huang & Tian sp. nov., holotype, ♂ (SCAU). F. G. inexpectatus Tian & Zhou sp. nov., holotype, ♀ (SCAU).
Fig. 11 in Three new species of the subterranean genus Guiodytes from Guangxi, China (Coleoptera: Carabidae: Clivinini)
Fig. 11. Guiodytes inexpectatus Tian & Zhou sp. nov., holotype, ♀ (SCAU), found in the Zhuzhu Dong cave.
Figs 27-29 in Subterranean Neobisium (Pseudoscorpiones: Neobisiidae) from Albania
Figs 27-29. Neobisium (Blothrus) cf. vjetrenicae Hadži, 1932, male from Helmit Abyss. (27) Trochanter, femur and patella of right pedipalp, dorsal view. (28) Right pedipalpal chela, dorsal view. (29) Right pedipalpal chela (teeth omitted), paraxial view. Scale line: 0.5 mm.
Figs 19-26 in Subterranean Neobisium (Pseudoscorpiones: Neobisiidae) from Albania
Figs 19-26. Neobisium (Blothrus) valsuanii n. sp., male holotype (unless otherwise stated). (19) Carapace. (20) Left chelicera, dorsal view. (21) Trochanter, femur and patella of left pedipalp, dorsal view. (22) male paratype from Shpella Bushiti: right pedipalpal chela (setae omitted), dorsal view. (23) Left pedipalpal chela (teeth omitted), paraxial view, with details of teeth. (24) Apex of chelal fingers, paraxial view. (25) Right leg IV, paraxial view. (26) Apex of telotarsus of leg IV, paraxial view. Scale lines: 0.2 mm (20, 24, 26); 0.5 mm (19, 21-23, 25).
Figs 11-18 in Subterranean Neobisium (Pseudoscorpiones: Neobisiidae) from Albania
Figs 11-18. Neobisium (Blothrus) latellai n. sp., female holotype. (11) Carapace. (12) Right chelicera, dorsal view. (13) Trochanter, femur and patella of right pedipalp, dorsal view. (14) Right pedipalpal chela, dorsal view. (15) Same (teeth omitted), antiaxial view, with details of teeth. (16) Apex of chelal fingers, antiaxial view. (17) Right leg IV, antiaxial view. (18) Apex of telotarsus of leg IV, antiaxial view. Scale lines: 0.2 mm (12, 16, 18); 0.5 mm (11, 13-15, 17).
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.