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Fig. 1 in Review Of The Genus Perissana Metcalf, 1952 (Hemiptera, Auchenorrhyncha, Caliscelidae), With The Description Of A New Species From Southern Iran
Fig. 1. Type locality (Iran, Fars Province, Khanekhoreh, 2440 m, 12.VI.2019) of Perissana ardua sp. n.
Fig. 31 in First record of the millipede genus Schizoturanius Verhoeff, 1931 (Diplopoda: Polydesmida: Polydesmidae) from China, with description of a new species
Fig. 31. Distribution of Schizoturanius species (circles): S. clavatipes (dark blue), S. dmitriewi (green), S. dshungaricus (light blue), S. kitabensis (violet), S. krugovae (red), S. levis (brown), S. montivagus (pink), S. sinensis sp. n. (black), S. strongylosomoides
Fig. 1. Merodon aureus Fabricius, 1805 in An assessment of new character in hoverfly species delimitation using linear and geometric morphometrics - genus Merodon Meigen, 1803 (Diptera: Syrphidae) as a case study
Fig. 1. Merodon aureus Fabricius, 1805, ♂, right wing with the character used in linear morphometric: a = intersection of R4+5 with r-m vein; b = intersection of R4+5 vein with a line drawn in the middle between a and c; c = the intersection of R4+5 with M1 vein; D = the angle formed by the lines that connect a, b and c.
Fig. 4 in An assessment of new character in hoverfly species delimitation using linear and geometric morphometrics - genus Merodon Meigen, 1803 (Diptera: Syrphidae) as a case study
Fig. 4. Results of the geometric morphometric wing shape analysis of species of the Merodon aureus complex. A. Scatter plot of individual scores showing R4+5 vein shape variability. B. Scatter plot of individual scores showing wing shape variability from Vujić et al. (2020c). C. Scatter plot of individual scores showing semilandmark R4+5 vein shape and landmark wing shape variability D. Superimposed outline drawings showing R4+5 vein shape differences among investigated species.
Fig. 5 in An assessment of new character in hoverfly species delimitation using linear and geometric morphometrics - genus Merodon Meigen, 1803 (Diptera: Syrphidae) as a case study
Fig. 5. Results of the geometric morphometric wing shape analysis of males of the Merodon natans group. A. Scatter plot of individual scores showing the R4+5 vein shape variability. B. Scatter plot of individual scores showing the wing shape variability from Vujić et al. (2021c). C. Scatter plot of individual scores showing the semilandmark R4+5 vein shape and landmark wing shape variability D. Superimposed outline drawings showing R4+5 vein shape differences among males of the investigated species.
Fig. 3. Box plot showing a in An assessment of new character in hoverfly species delimitation using linear and geometric morphometrics - genus Merodon Meigen, 1803 (Diptera: Syrphidae) as a case study
Fig. 3. Box plot showing a comparison of the angle at the intersection of the R4+5 vein and the middle
Fig. 2. Merodon aureus Fabricius, 1805 in An assessment of new character in hoverfly species delimitation using linear and geometric morphometrics - genus Merodon Meigen, 1803 (Diptera: Syrphidae) as a case study
Fig. 2. Merodon aureus Fabricius, 1805, ♂, right wing with the location of 20 semilandmarks selected for geometric morphometric analysis.
FIG. 5 in Resampling Bouché's historical localities reveals three new species and helps identifying a new genus of earthworms (Oligochaeta, Hormogastridae and Lumbricidae) in Southeastern France
FIG. 5. — Distribution of newly described Lumbricidae species, Flabellodrilus luberonensis Gérard, Decaëns & Marchán, n. gen., n. sp. and Allolobophora delitescens Gérard, Decaëns & Marchán, n. sp. (stars), and their closest relatives (circles) in Southern France. All species within the genus Flabellodrilus Gérard, Decaëns & Marchán, n. gen. are represented. Credits: Google 2022.
APPENDIX 1 in Resampling Bouché's historical localities reveals three new species and helps identifying a new genus of earthworms (Oligochaeta, Hormogastridae and Lumbricidae) in Southeastern France
APPENDIX 1. — Full multilocus phylogenetic tree focused on Allolobophora-related Lumbricidae genera. The tree was obtained from Bayesian inference based on the concatenated sequences of the COI-16S-ND1-12S- 28S molecular markers. Posterior probability values are shown beside nodes.
FIG. 8 in Resampling Bouché's historical localities reveals three new species and helps identifying a new genus of earthworms (Oligochaeta, Hormogastridae and Lumbricidae) in Southeastern France
FIG. 8. — Distribution of Vignysa callasensis Gérard, Decaëns & Marchán, n. sp. (star) and its closest relatives (circles) in Southern France. All species of the genus Vignysa Bouché, 1970 are represented. Credits: Google 2022.
FIG. 1 in Honoring Jeanne Baret: Baretia lanata Timaná, comb. nov. (Caryophyllaceae), a new endemic genus and species combination for the Flora of Chile
FIG. 1. — Baretia lanata (Phil.) Timaná, comb. nov. Lectotype: R. Philippi s.n. (SGO 048875). Source: SGO (JSTOR Plants).
FIG. 3 in Honoring Jeanne Baret: Baretia lanata Timaná, comb. nov. (Caryophyllaceae), a new endemic genus and species combination for the Flora of Chile
FIG. 3. — Baretia lanata (Phil.) Timaná, comb. nov. Close up of terminal branches, Teillier & Torres-Mura 8034 (CONC 182760). Courtesy of the herbarium of Universidad de Concepción. Scale bar: 1 cm.
FIG. 2 in Honoring Jeanne Baret: Baretia lanata Timaná, comb. nov. (Caryophyllaceae), a new endemic genus and species combination for the Flora of Chile
FIG. 2. — Baretia lanata (Phil.) Timaná, comb. nov., O. ZÖllner 11772 (NA 0001301). Courtesy of the U.S. National Arboretum Herbarium (NA), USDA-ARS. Inset: Flower close-up, O. ZÖllner 11772 (MO346208). Scale bar: 1 mm.
Figs 31–36 in First record of the genus Alainites Waltz & McCafferty, 1994 (Ephemeroptera, Baetidae) from India with the description of a new species from the North-western Himalayas
Figs 31–36. Alainites neeru sp. nov. 31–32. Paratype (AMC). 33–36. Holotype (AMC). 31. Tergalius I. 32. Tergalius IV. 33. Posterior margin of tergum IV denticulation. 34–35. Paraproct. 36. Closer view of paraproct.
Figs 27–30 in First record of the genus Alainites Waltz & McCafferty, 1994 (Ephemeroptera, Baetidae) from India with the description of a new species from the North-western Himalayas
Figs 27–30. Alainites neeru sp. nov., paratype (AMC), thorax and abdomen of larva. 27. Foreclaw. 28. Hindwing pad (pointed by arrow). 29. Tergal segments III–X. 30. Tergal segments VIII–X.
Figs 14–18 in First record of the genus Alainites Waltz & McCafferty, 1994 (Ephemeroptera, Baetidae) from India with the description of a new species from the North-western Himalayas
Figs 14–18. Alainites neeru sp. nov., paratype (AMC), mouthparts of larva. 14. Labium. 15. Glossae and paraglossae. 16. Closer view of labial palp segment III. 17. Maxilla. 18. Closer view of crown of maxilla.
Figs 19–21 in First record of the genus Alainites Waltz & McCafferty, 1994 (Ephemeroptera, Baetidae) from India with the description of a new species from the North-western Himalayas
Figs 19–21. Alainites neeru sp. nov., paratype (AMC), legs of larva. 19. Forefemur. 20. Middle femur. 21. Hind femur.
Figs 22–26 in First record of the genus Alainites Waltz & McCafferty, 1994 (Ephemeroptera, Baetidae) from India with the description of a new species from the North-western Himalayas
Figs 22–26. Alainites neeru sp. nov., paratype (AMC), legs of larva. 22. Foretibia and foretarsus. 23. Outer marginal setation of foretibia. 24. Inner marginal setation of foretibia. 25. Middle tibia and middle tarsus. 26. Hind tibia and hind tarsus.
Figs 7–13 in First record of the genus Alainites Waltz & McCafferty, 1994 (Ephemeroptera, Baetidae) from India with the description of a new species from the North-western Himalayas
Figs 7–13. Alainites neeru sp. nov. paratypes (AMC), mouthparts of larva. 7. Left mandible. 8. Right mandible. 9. Prostheca and incisor of left mandible. 10. Closer view of left mandible. 11–12. Prostheca and incisor of right mandible. 13. Prostheca of right mandible.
Figs 1–5 in First record of the genus Alainites Waltz & McCafferty, 1994 (Ephemeroptera, Baetidae) from India with the description of a new species from the North-western Himalayas
Figs 1–5. Alainites neeru sp. nov. 1. Holotype, ♀ (AMC), mature larva. 2–6. Paratype (AMC). 2. Immature larva. 3. Antenna. 4. Labrum. 5. Labrum, sub-marginal setae (arrows indicate 1+2 long, simple setae). 6. Setae of the ventral surface of the labrum.
ScienceDex guides
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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.