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.
18,745
datasets available to search
ShareScore release 0.9.0
Dataset results
18,745 results for “Taxonomies”
Fig. 5 in Taxonomy of Micronectidae (Heteroptera: Nepomorpha) from Vietnam, with descriptions of 11 new species
Fig. 5. Habitus photos of species of Micronecta Kirkaldy, 1897, ♂♂. A. M. grisea (Fieber, 1844) (ZRC). B. M. guttatostriata Lundblad, 1933 (ZVNU). C. M. drepani Nieser, 2000 (ZVNU). D. M. erythra Nieser, Chen & Yang, 2005, right hemelytron (ZVNU). E. M. cultellata sp. nov., holotype (ZVNU). F. M. anatolica Lindberg, 1922 (ZVNU). G. M. arcuata sp. nov., holotype (ZVNU). H. M. fulvopicta sp. nov., holotype (ZVNU). I. M. acuminata sp. nov., holotype (ZVNU), right hemelytron and genitalia dissected. J–L. M. vietnamica sp. nov., J = holotype (ZVNU). All to the same scale.
Fig. 26 in Taxonomy of Micronectidae (Heteroptera: Nepomorpha) from Vietnam, with descriptions of 11 new species
Fig. 26. Morphological features of Synaptonecta issa (Distant, 1910), ♂ (ZVNU). A. Fore leg. B. Median lobe of sternite VII. C. Right paramere. D. Left paramere.
Fig. 8 in A fresh start in ambersnail (Gastropoda: Succineidae) taxonomy: finding a foothold using a widespread species of Oxyloma
Fig. 8. Oxyloma salleanum (L. Pfeiffer, 1850). Spring Garden Lake, Volusia County, Florida [O. effusum (L. Pfeiffer, 1853) topotypes]. A–B. Reproductive organs of specimen 2737 (NMV F 304258, shell height 11.0 mm) in ventral view, and male genitalia. C –D. Reproductive organs of specimen 2745 (NMV F 304259, 11.7 mm) in ventral view, and male genitalia. Details of the male genitalia of specimens 2737 and 2745 (B, D), with penial sheath opened to expose the epiphallus and penis with proximal appendix. Penis opened to show the spatial relationships of appendix and epiphallus openings to proximal penis, and the longitudinal folds bearing calcite rosettes embedded in the epithelium. Abbreviations: see Material and methods.
Fig. 7 in A fresh start in ambersnail (Gastropoda: Succineidae) taxonomy: finding a foothold using a widespread species of Oxyloma
Fig. 7. Oxyloma salleanum (L. Pfeiffer, 1850). Intracoastal waterway at Lake Salvador, near Jean Lafitte, Louisiana. A–B. Reproductive organs of specimen 2789 (NMV F 304257, shell height 10.55 mm), in ventral view, and male genitalia. C–D. Reproductive organs of specimen 2788 (NMV F 304256, 10.1 mm), in ventral view, and male genitalia. Details of the male genitalia (B, D), with penial sheath opened to expose the epiphallus and penis with proximal appendix. Penis opened to show the spatial relationships of appendix and epiphallus openings to proximal penis, and the longitudinal folds bearing calcite rosettes embedded in the epithelium. Abbreviations: see Material and methods.
Fig. 5 in A fresh start in ambersnail (Gastropoda: Succineidae) taxonomy: finding a foothold using a widespread species of Oxyloma
Fig. 5. Apertural and reverse view of shell of Oxyloma salleanum (L. Pfeiffer, 1850) and O. effusum (L. Pfeiffer, 1853). A. Photograph of Oxyloma effusum shell taken from the type locality in eastern Florida. Shell is 11.28 mm total height. B. Photograph of Oxyloma salleanum shell taken from the type locality near New Orleans, Louisiana. Shell is 13.11 mm total height. C. Syntypes of Oxyloma salleanum (NHMUK # 20170302). D. Syntypes of Oxyloma effusum (NHMUK # 20170303). Scale bars = 1 mm.
Fig. 3. Maximum likelihood phylogeny from 882 in A fresh start in ambersnail (Gastropoda: Succineidae) taxonomy: finding a foothold using a widespread species of Oxyloma
Fig. 3. Maximum likelihood phylogeny from 882 bp alignment of 15 LSU sequences presenting only the focal taxa and localities. Ultra-fast bootstrap values indicated behind the nodes supported. Full 51-individual analysis reported in Supp. file 2, Supp. file 3. Type localities indicated with an *.
Fig. 6 in A fresh start in ambersnail (Gastropoda: Succineidae) taxonomy: finding a foothold using a widespread species of Oxyloma
Fig. 6. Oxyloma salleanum (L. Pfeiffer, 1850). Intracoastal waterway at Lake Salvador, near Jean Lafitte, Louisiana, specimen 2789 (NMV F 304257, shell height 10.55 mm). A. Dissected animal, with mantle reflected to right to show general layout of organs within body cavity, and organs of mantle cavity in ventral view. B. Genitalia in situ, showing route of right band of the columellar muscle, over male genitalia to reach right ocular peduncle, with branch passing under male genitalia to reach right inferior tentacle, and a lateral branch to insert on vagina. Abbreviations: see Material and methods.
Fig. 4. A in A fresh start in ambersnail (Gastropoda: Succineidae) taxonomy: finding a foothold using a widespread species of Oxyloma
Fig. 4. A. Plot of principal component analysis on Oxyloma effusum (L. Pfeiffer, 1853) (n = 19) and O. salleanum (L. Pfeiffer, 1850) (n = 46) shells collected from the type localities. Landmarked types and original figures are included for each species. Convex hulls are drawn from non-type shells examined. The centroid means of each species shown with oversize symbol. Outline drawings represent the mean form of each nominal species compared to the overall mean shape. B. The outlines of the two nominal species superimposed with O. salleanum in black and O. effusum in gray. The heat map deformation grid shows the shape change from the mean form of O. effusum to the mean form of O. salleanum. Vectors on landmarks show the direction and magnitude of change.
Fig. 1 in A fresh start in ambersnail (Gastropoda: Succineidae) taxonomy: finding a foothold using a widespread species of Oxyloma
Fig. 1. Map of North America showing confirmed localities for Oxyloma salleana (L. Pfeiffer, 1850). Shown in gray are major rivers (USGS 2004).
Fig. 2. Maximum likelihood phylogeny from 690 in A fresh start in ambersnail (Gastropoda: Succineidae) taxonomy: finding a foothold using a widespread species of Oxyloma
Fig. 2. Maximum likelihood phylogeny from 690 bp alignment of 34 COI sequences presenting only the focal taxa and localities. Ultra-fast bootstrap values indicated behind the nodes supported. Full 142-individual analysis reported in Supp. file 2, Supp. file 3. Type localities indicated with an *. Species supported by species delimitation analyses indicated with a hollow circle.
UAV bugs dataset and taxonomy
<p>This data set contains 569 real world bugs, 168 UAV-specific bugs and their taxonomy. Our replication package consists of two maim folders:bugSet and bugTaxonomy</p> <p>bugSet</p> <p>In this folder we have placed all the bugs that we have indentified from PX4 and Ardupilot on GitHub. Data collection process is explained in detail in Section 3.1 of the paper. Each line in bugSet.xlsx provides project name and the link of 569 real-world bugs.</p> <p>bugTaxonomy</p> <p>Our manual analysis was conducted in 3 iterations(Section 3.2 in the paper). In each file(3 iterations) we provide the following information: (a) Project name;(b)Bug link; (c)bug label or bug description.</p>
Figure 9. Leptolebias itanhaensis, UFRJ 6323 in Monophyly and taxonomy of the Neotropical seasonal killifish genus Leptolebias (Teleostei: Aplocheiloidei: Rivulidae), with the description of a new genus
Figure 9. Leptolebias itanhaensis, UFRJ 6323, female, paratype, 16.2-mm standard length (some hours after collection); Brazil, Estado de São Paulo, Itanhaém (photo by W. J. E. M. Costa).
Figure 6. Leptolebias aureoguttatus, UFRJ 6331 in Monophyly and taxonomy of the Neotropical seasonal killifish genus Leptolebias (Teleostei: Aplocheiloidei: Rivulidae), with the description of a new genus
Figure 6. Leptolebias aureoguttatus, UFRJ 6331, male, 22.3-mm standard length (some hours after collection); Brazil, Estado do Paraná, Praia de Leste (photo by W. J. E. M. Costa).
FIG. 241 in Mammals collected and illustrated by the Baudin Expedition to Australia and Timor (1800-1804): A review of the current taxonomy of specimens in the Muséum national d'Histoire naturelle de Paris and the illustrations in the Muséum d'Histoire naturelle du Havre
FIG. 241. — Bovidae. Charles-Alexandre Lesueur. Pencil and ink – 21 × 16 cm. Inv. no. 80282. Credits: MHNH.
FIG. 240 in Mammals collected and illustrated by the Baudin Expedition to Australia and Timor (1800-1804): A review of the current taxonomy of specimens in the Muséum national d'Histoire naturelle de Paris and the illustrations in the Muséum d'Histoire naturelle du Havre
FIG. 240. — Sciuridae. Charles-Alexandre Lesueur. Gray wash – 24 × 37 cm. Inv. no. 80270. Credits: MHNH.
FIG. 239 in Mammals collected and illustrated by the Baudin Expedition to Australia and Timor (1800-1804): A review of the current taxonomy of specimens in the Muséum national d'Histoire naturelle de Paris and the illustrations in the Muséum d'Histoire naturelle du Havre
FIG. 239. — Primates, Lemuridae. Charles-Alexandre Lesueur. Pencil and ink – 14 × 18 cm. Inv. no. 80198. Credits: MHNH.
FIG. 238 in Mammals collected and illustrated by the Baudin Expedition to Australia and Timor (1800-1804): A review of the current taxonomy of specimens in the Muséum national d'Histoire naturelle de Paris and the illustrations in the Muséum d'Histoire naturelle du Havre
FIG. 238. — Primates, Lemuridae. Charles-Alexandre Lesueur. Pencil – 15 × 18 cm. Inv. no. 80192v. Credits: MHNH.
FIG. 237 in Mammals collected and illustrated by the Baudin Expedition to Australia and Timor (1800-1804): A review of the current taxonomy of specimens in the Muséum national d'Histoire naturelle de Paris and the illustrations in the Muséum d'Histoire naturelle du Havre
FIG. 237. — Primates, Lemuridae. Charles-Alexandre Lesueur. Pencil – 8 × 18 cm. Inv. no. 80191. Credits: MHNH.
FIG. 236 in Mammals collected and illustrated by the Baudin Expedition to Australia and Timor (1800-1804): A review of the current taxonomy of specimens in the Muséum national d'Histoire naturelle de Paris and the illustrations in the Muséum d'Histoire naturelle du Havre
FIG. 236. — Primates, Lemuridae. Charles-Alexandre Lesueur. Pencil – 20 × 13 cm. Inv. no. 80190. Credits: MHNH.
FIG. 233 in Mammals collected and illustrated by the Baudin Expedition to Australia and Timor (1800-1804): A review of the current taxonomy of specimens in the Muséum national d'Histoire naturelle de Paris and the illustrations in the Muséum d'Histoire naturelle du Havre
FIG. 233. — Primates, Lemuridae. Charles-Alexandre Lesueur. Pencil – 16 × 17 cm. Inv. no. 80188r. Credits: MHNH.
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.