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.
822
datasets available to search
ShareScore release 0.9.0
Dataset results
822 results for “systematic position”
FIGURES 6–9 in Systematic study of the genera Phryno Robineau-Desvoidy and Botria Rondani in the Palearctic Region, with discussions of their phylogenetic positions (Diptera, Tachinidae)
FIGURES 6–9. Male and female postabdomen of P. katoi Mesnil (Hokkaido, Japan). 6. Epandrium, cerci and surstylus in lateral view. 7. Same in dorsal view (setae omitted on left side). 8. Hypandrium, pregonite, postgonite and phallus in lateral view. 9. Female postabdomen in lateral view. Scale bars = 0.5 mm. (Abbreviations. st 5: fifth abdominal sternum; st 6: sixth abdominal sternum; st 7: seventh abdominal sternum; t 6:sixth abdominal tergum; t 7: seventh abdominal tergum).
FIGURES 3–5 in Systematic study of the genera Phryno Robineau-Desvoidy and Botria Rondani in the Palearctic Region, with discussions of their phylogenetic positions (Diptera, Tachinidae)
FIGURES 3–5. Male postabdomen of P. brevicornis sp. nov. (paratype). 3. Epandrium, cerci and surstylus in lateral view. 4. Same in dorsal view (setae omitted on left side). 5. Hypandrium, pregonite, postgonite and phallus in lateral view. Scale bars = 0.5 mm. (Abbreviations. cerc: cerci; distph: distiphallus; epand: epandrium; epiph: epiphallus; hypd: hypandrium; pgt: postgonite; prgt: pregonite; sur: surstylus).
FIGURES 1–2 in Systematic study of the genera Phryno Robineau-Desvoidy and Botria Rondani in the Palearctic Region, with discussions of their phylogenetic positions (Diptera, Tachinidae)
FIGURES 1–2. Male heads in profile. 1. Phryno katoi Mesnil (Hokkaido, Japan). 2. Botria frontosa (Meigen) (Saitama, Japan). Scale bars = 0.5 mm. (Abbreviations. comp eye: compound eye; fir flgm: first flagellomere; ped: pedicel; fa rid: facial ridge).
FIGURES 10–12 in Systematic study of the genera Phryno Robineau-Desvoidy and Botria Rondani in the Palearctic Region, with discussions of their phylogenetic positions (Diptera, Tachinidae)
FIGURES 10–12. Male postabdomen of P. koreana sp. nov. (paratype). 10. Epandrium, cerci and surstylus in lateral view. 11. Same in dorsal view (setae omitted on left side). 12. Hypandrium, pregonite, postgonite and phallus in lateral view. Scale bars = 0.5 mm.
FIGURES 19–21 in Systematic study of the genera Phryno Robineau-Desvoidy and Botria Rondani in the Palearctic Region, with discussions of their phylogenetic positions (Diptera, Tachinidae)
FIGURES 19–21. Male postabdomen of P. vetula (Meigen) (Germany). 19. Epandrium, cerci and surstylus in lateral view. 20. Same in dorsal view (setae omitted on left side). 21. Hypandrium, pregonite, postgonite and phallus in lateral view. Scale bars = 0.5 mm.
FIGURES 35–40. 35–37 in Systematic study of the genera Phryno Robineau-Desvoidy and Botria Rondani in the Palearctic Region, with discussions of their phylogenetic positions (Diptera, Tachinidae)
FIGURES 35–40. 35–37. Male postabdomen of Allophorocera rutila (Meigen) (Hokkaido, Japan). 35. Epandrium, cerci and surstylus in lateral view. 36. Same in dorsal view (setae omitted on left side). 37. Hypandrium, pregonite, postgonite and phallus in lateral view. 38–40. Male postabdomen of Calozenillia tamara (Portshinsky) (Fukuoka, Japan). 38. Epandrium, cerci and surstylus in lateral view. 39. Same in dorsal view (setae omitted on left side). 40. Hypandrium, pregonite, postgonite and phallus in lateral view. Scale bars = 0.5 mm.F
FIGURES 12–15 in A new species of the putatively myrmecophilous genus Plaumanniola Costa Lima, with notes on the systematic position of Plaumanniolini (Coleoptera: Staphylinidae: Scydmaeninae)
FIGURES 12–15. Aedeagus of Plaumanniola sanctaecatharinae Costa Lima (12–13) and Plaumanniola regina sp. n. (14–15) in ventral (12, 14) and lateral (13, 15) views.
FIGURES 4–5 in A new species of the putatively myrmecophilous genus Plaumanniola Costa Lima, with notes on the systematic position of Plaumanniolini (Coleoptera: Staphylinidae: Scydmaeninae)
FIGURES 4–5. Heads of paratype males in dorsal view. Plaumanniola sanctaecatharinae Costa Lima (4) and Plaumanniola regina sp. n. (5).
FIGURES 1–3 in A new species of the putatively myrmecophilous genus Plaumanniola Costa Lima, with notes on the systematic position of Plaumanniolini (Coleoptera: Staphylinidae: Scydmaeninae)
FIGURES 1–3. Plaumanniola sanctaecatharinae Costa Lima, dorsal habitus of paratype male (1) and its original set of labels (2); Plaumanniola regina sp. n., dorsal habitus of paratype male (3).
FIGURES 8–11 in A new species of the putatively myrmecophilous genus Plaumanniola Costa Lima, with notes on the systematic position of Plaumanniolini (Coleoptera: Staphylinidae: Scydmaeninae)
FIGURES 8–11. Male paratype of Plaumanniola regina sp. n. Head in ventral view (8); prothorax in ventral view (9); pterothorax and abdomen in ventral view (10); and general view of venter (11). Abbreviations: aest2, mesanepisternum; aest3, metanepisternum; ai, asetose impression; ar, anterior ridge; bst, basistipes; cd, cardo; el, elytron; epm3, metepimeron; fo, foramen occipitale; gal, galea; gen, gena; gp, gular plate; hr, hypostomal ridge; hy, hypomeron; hyr, hypomeral ridge; lac, lacinia; lhph, lateral lobe of hypopharynx; lp, labial palp; mcp, mesocoxal projection; md, mandible; mn, mentum; mscc, mesocoxal cavity; mscs, mesocoxal socket; msff, mesofurcal fovea; mst, mesostipes; msvp, mesoventral intercoxal process; mtvp, metaventral intercoxal process; mxp, maxillary palp; nr, neck region; nss, pronotosternal suture; pcc, procoxal cavity; pcs, procoxal socket; ppf, palpifer; pre, prepectus; pst, prosternum; ptp, posterior tentorial pit; smn, submentum; st3-8, abdominal sternites; tg, tibial groove; v3, metaventrite.
FIGURES 6–7 in A new species of the putatively myrmecophilous genus Plaumanniola Costa Lima, with notes on the systematic position of Plaumanniolini (Coleoptera: Staphylinidae: Scydmaeninae)
FIGURES 6–7. Male paratype of Plaumanniola regina sp. n. Head in anterior view (6); head and prothorax in lateral view (7).
FIGURE 7 in Systematics of the endangered toad genus Andinophryne (Anura: Bufonidae): phylogenetic position and synonymy under the genus Rhaebo
FIGURE 7. Known localities for Rhaebo colomai and Rhaebo olallai. The map is based on Hoogmoed (1985, 1989) and localities reported herein.
FIGURE 2 in Systematics of the endangered toad genus Andinophryne (Anura: Bufonidae): phylogenetic position and synonymy under the genus Rhaebo
FIGURE 2. Phylogenetic relationships of Bufonidae based on RAG-1 DNA sequences. Maximum likelihood tree obtained under the GTR + Γ + Ι model of character evolution under a single partition of a matrix of 744 bp of nuclear DNA gene RAG- 1 using GARLI 2.0 (lnL = -8827.6). Numbers at branches are nonparametric bootstrap values (from 200 pseudoreplicates). Bold characters highlight samples of Andinophryne. Numbers to the right of the species name are GenBank accession numbers and Museum catalog numbers.
FIGURE 4 in Systematics of the endangered toad genus Andinophryne (Anura: Bufonidae): phylogenetic position and synonymy under the genus Rhaebo
FIGURE 4. Dorsolateral and ventral views of Rhaebo olallai and Rhaebo atelopoides. A–E: Rhaebo olallai, from Ecuador, Provincia de Imbabura, Manduriacu. F: Rhaebo atelopoides, from Colombia, type locality. A–B: adult female, SVL = 60.0 mm. C–D: adult male (QCAZ 56576), SVL = 43.9 mm. E: metamorph showing pattern of contrasting clear lines in the dorsum. F: adult male (IAvH 278), SVL = 42.3 mm. Photographs by SRR (R. olallai) and J. D. Lynch (R. atelopoides).
FIGURE 6 in Systematics of the endangered toad genus Andinophryne (Anura: Bufonidae): phylogenetic position and synonymy under the genus Rhaebo
FIGURE 6. Shape of the sphenethmoides in ventral view. A: Narrow, Rhinella marina, ICN 54685. B: Wide, Rhaebo blombergi. ICN 54714. C: Wide, Rhaebo colomai. Photos J. J. Mueses-Cisneros.
FIGURE 5 in Systematics of the endangered toad genus Andinophryne (Anura: Bufonidae): phylogenetic position and synonymy under the genus Rhaebo
FIGURE 5. Skin secretions in Rhaebo. Rhaebo colomai (left) and R. olallai (right). Note yellow-orange color. Photos by J. H. Mueses-Cisneros (left) and SRR (right).
FIGURE 1 in Systematics of the endangered toad genus Andinophryne (Anura: Bufonidae): phylogenetic position and synonymy under the genus Rhaebo
FIGURE 1. Phylogenetic relationships of Bufonidae based on mitochondrial DNA sequences. Maximum likelihood tree obtained under the GTR + Γ + Ι model of character evolution and two partitions of a matrix of 2393 bp of mitochondrial DNA genes 12S, tRNA-Val, and 16S using GARLI 2.0 (lnL = -91975.7). Numbers at branches are nonparametric bootstrap values (from 200 pseudoreplicates). Bold characters highlight samples of Andinophryne. Numbers to the right of the species name are GenBank accession numbers and Museum catalog numbers.
FIGURE 3 in Systematics of the endangered toad genus Andinophryne (Anura: Bufonidae): phylogenetic position and synonymy under the genus Rhaebo
FIGURE 3. Dorsolateral and ventral views of Rhaebo colomai. Colombia, Departamento de Nariño, Reserva Natural Río Ñambí. A–B: adult female (PSO-CZ 2115), SVL = 34.29 mm. C–D: adult male (PSO-CZ 2117), SVL = 36.65 mm. E–F: juvenile (not collected), SVL = 23.48 mm, showing both the narrow light dorso- and oblique lateral lines, and the contrasting light lines in the venter. Photographs by PDAGC.
FIGURE 2 in On the systematic position of Electrocrania Kusnezov, 1941 with the description of a new species from Baltic amber (Lepidoptera: Micropterigidae)
FIGURE 2. Morphological details of E. michalskii: A) venation, B) head, laterally, C) antennal segments with ascoid sensillae from mid-antenna.
FIGURE 1 in On the systematic position of Electrocrania Kusnezov, 1941 with the description of a new species from Baltic amber (Lepidoptera: Micropterigidae)
FIGURE 1. Holotype of E. michalskii: Baltic region, Baltic amber, Eocene, Lutetian, in coll. Michael Kurz (photo by courtesy of Michalski Artur).
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.