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.
1,205
datasets available to search
ShareScore release 0.7.1
Dataset results
1,205 results for “Palearctic”
Fig. 12 in New species of Aprionus (Diptera, Cecidomyiidae, Micromyinae) from Sweden and other parts of the Palearctic region
Fig. 12. Aprionus styloideus Mamaev & Berest, 1990, ♂, specimen from Öland (Sweden). A. Genitalia, ventral. B. Fourth flagellomere, lateral. Scale lines: 0.05 mm. Arrows indicate diagnostic characters.
Fig. 6 in New species of Aprionus (Diptera, Cecidomyiidae, Micromyinae) from Sweden and other parts of the Palearctic region
Fig. 6. Aprionus thori sp. nov., holotype, ♂. A. Genitalia, ventral. B. Fourth flagellomere, lateral. Scale lines: 0.05 mm. Arrows indicate diagnostic characters.
Fig. 9 in New species of Aprionus (Diptera, Cecidomyiidae, Micromyinae) from Sweden and other parts of the Palearctic region
Fig. 9. Aprionus odini sp. nov., holotype, ♂. A. Genitalia, ventral. B. Fourth flagellomere, lateral. Scale lines: 0.05 mm. Arrows indicate diagnostic characters.
Fig. 15 in New species of Aprionus (Diptera, Cecidomyiidae, Micromyinae) from Sweden and other parts of the Palearctic region
Fig. 15. Aprionus surtri sp. nov., holotype, ♂. A. Genitalia, ventral. B. Third flagellomere, lateral. Scale lines: 0.05 mm. Arrows indicate diagnostic characters.
Fig. 10 in New species of Aprionus (Diptera, Cecidomyiidae, Micromyinae) from Sweden and other parts of the Palearctic region
Fig. 10. Aprionus paludosus Jaschhof & Mamaev, 1997, paratype, ♂. A. Genitalia, ventral. B. Fourth flagellomere, lateral. Scale lines: 0.05 mm. Arrows indicate diagnostic characters.
Fig. 9 in Cryptic Speciation And Characteristics Of The Transition Bias Following An Example Of The Cytb Gene In Palearctic Mammals
Fig. 9. Variation of summarized tv/ts-index in micro- (1) and macromammals (2) depending on nucleotide substitution level. Thick lines illustrate exponential approximation.
Fig. 8 in Cryptic Speciation And Characteristics Of The Transition Bias Following An Example Of The Cytb Gene In Palearctic Mammals
Fig. 8. Variation of transition (upper lines) and transversion (lower lines) frequencies accordingly to substitution frequencies level. Think lines are empirical data for each subfamily/family, thick ones — polynomial approximations of averaged data.
Fig. 2 in Cryptic Speciation And Characteristics Of The Transition Bias Following An Example Of The Cytb Gene In Palearctic Mammals
Fig. 2. Average frequencies of nucleotide substitutions frequencies (sub) and its standard errors of the three taxonomical levels in micromammals (black) and macromammals (gray).
T a b l e 1 in Cryptic Speciation And Characteristics Of The Transition Bias Following An Example Of The Cytb Gene In Palearctic Mammals
T a b l e 1. Average (M), sample deviations (SD) of nucleotide substitution, ts/tv and F indexes of different taxonomical levels within 15 Palearctic mammal families/subfamilies
Fig. 3. Exeristes spp., male. 1 — E in A Review Of The Genus Exeristes (Hymenoptera, Ichneumonidae, Pimplinae) From Carpathians, With An Illustrated Key To Western Palearctic Species
Fig. 3. Exeristes spp., male. 1 — E. arundinis, habitus (lateral view); 2 — E. longiseta, habitus (lateral view); 3 — E. ruficollis, head and mesosoma (lateral view); 4 — E. roborator, clypeus (frontal view); 5 — E. arundinis, hind tarsus (lateral view); 6 — E. roborator, hind tarsus (lateral view).
Fig. 2. Exeristes spp., female. 1 — E in A Review Of The Genus Exeristes (Hymenoptera, Ichneumonidae, Pimplinae) From Carpathians, With An Illustrated Key To Western Palearctic Species
Fig. 2. Exeristes spp., female. 1 — E. roborator, ovipositor tip (lateral view); 2 — E. longiseta, ovipositor tip (lateral view); 3 — E. arundinis, ovipositor tip (lateral view); 4 — E. denticulator, holotype, ovipositor tip (lateral view); 5 — E. ruficollis, lectotype, ovipositor tip (lateral view); 6 — E. arundinis, fore tarsal claw (lateral view); 7 — E. ruficollis, lectotype, hind femur and tibia (lateral view); 8 — E. denticulator, holotype, hind tibia and tarsus (lateral view); 9 — E. denticulator, holotype, propodeum and tergites I–II of metasoma (dorsal view); 10 — E. roborator, propodeum and tergites I–II of metasoma (dorsal view).
Fig. 1. The Carpathian Exeristes spp. distribution map. Yellow circle — E in A Review Of The Genus Exeristes (Hymenoptera, Ichneumonidae, Pimplinae) From Carpathians, With An Illustrated Key To Western Palearctic Species
Fig. 1. The Carpathian Exeristes spp. distribution map. Yellow circle — E. roborator; red circle — E. longiseta; green circle — E. arundinis.
Fig. 2 in Functional And Phylogenetic Aspect In Modularity Of Palearctic Mustelids (Carnivora, Mustelidae) Mandible
Fig. 2. Distribution of mustelid specimens in the scatterplot of the allometric shape component (Regression Score 1) vs log10-transformed mandible length. Mandible shape changes associated with allometry are shown for zero (average shape, grey outline), minimal and maximal values of the regression scores (with magniFIcation factor 1). Masseteric fossa (landmark 12) is linked with landmarks 6, 8, 13 for the ease of visualization. Species are abbreviated: E. lutris = E; G. gulo = G; M. meles = M; L. lutra = L; Martes: M. martes = 1; M. foina = 2; M. zibellina = 3; M. flavigula = 4; Mustela: M. eversmani = e; M. putorius = p; M. lutreola = l; M. sibirica = s; M. erminea = r; M. nivalis = n.
Fig. 3 in Functional And Phylogenetic Aspect In Modularity Of Palearctic Mustelids (Carnivora, Mustelidae) Mandible
Fig. 3. Distribution of mustelid specimens in the scatterplot of PLS1 (A): variation within mandibular corpus (Block 1) presented at x-axis, and variation within ramus (Block 2) is at y-axis. Mandible shape changes associated with standard (B and C) and evolutionary (D and E) PLS1 are shown with black outline for extreme values of PLS1 scores. The reference shape is shown as grey outline. MagniFIcation scale factor is 1.5. Species are abbreviated as in FIg. 2.
Fig. 1 in Functional And Phylogenetic Aspect In Modularity Of Palearctic Mustelids (Carnivora, Mustelidae) Mandible
Fig. 1. The position of landmarks on a mandible outline of Mustela lutreola. A — scheme of landmarks from Romaniuk (2018); the picture of mandible is adapted from Novikov (1956). And the subdivisions into two (B) and three modules (C) with the lowest RV coefficients.
Fig. 1–4 in Redescription And New Data On Distribution Of Glyphomerus Flavabdomen With Key To The Palearctic Species Of The Genus Glyphomerus (Hymenoptera, Torymidae)
Fig. 1–4: Glyphomerus flavabdomen Zerova: 1 — female, lateral view; 2 — abdomen and ovipositor; 3 — fore wing venation; 4 — antenna.
Figures 6–7 in First report of subfamily Africasiinae (Hydrachnidia: Athienemanniidae) from Western Palearctic based on the description of a new species
Figures 6–7. Photographs of Africasia iranica sp. nov. (female) – 6. Dorsal plate; 7. Ventral plate.
Figures 1–5 in First report of subfamily Africasiinae (Hydrachnidia: Athienemanniidae) from Western Palearctic based on the description of a new species
Figures 1–5. Africasia iranica sp. nov. – 1. Dorsum of idiosoma (female); 2. Venter of idiosoma (female); 3. Palp
Figure 6 in Tomoxia bucephala A. Costa (Coleoptera: Mordellidae), a Palearctic tumbling flower beetle established in North America
Figure 6. Tomoxia inclusa, aspect of museum specimen, Lamar County, Texas, U.S.A. A. Dorsal view. B. Dorsolateral view. C. Lateral view. Scale bars for all images = 1.0 mm. Voucher specimen collection data as for Fig. 5C.
Figure 7 in Tomoxia bucephala A. Costa (Coleoptera: Mordellidae), a Palearctic tumbling flower beetle established in North America
Figure 7. Tomoxia lineella, aspect of museum specimen, Rockbridge County, Virginia, U.S.A. A. Dorsal view. B. Dorsolateral view. C. Lateral view. Scale bars for all images = 1.0 mm. Voucher specimen collection data as for Fig. 5D.
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.