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Fig. 7 in Review of the fritillary species systematically close to Melitaea lutko Evans, 1932 (Lepidoptera: Nymphalidae) with analysis of their geographic distribution and interrelations with host plants
Fig. 7. Eggs of Melitaea mimetica Higgins, 1940, Afghanistan, Ghor Prov., 16 km E of Changcharan, Bandi-Ali v. vicinity, alt. 2400 m. A–C. Lateral view. D–F. View from above. G–I. Micropile area.
Fig. 10 in Review of the fritillary species systematically close to Melitaea lutko Evans, 1932 (Lepidoptera: Nymphalidae) with analysis of their geographic distribution and interrelations with host plants
Fig. 10. Male genitalia (a = valva; b = aedeagus). A–F. Melitaea timandra timandra Coutsis & van Oorschot, 2014. G–O. M. timandra binaludica subsp. nov. A–C. S Turkmenistan, Sary-Yazy, alt. 300 m. D. Paratype, Turkmenistan, Badhyz Reserve, Kepeli. E–F. S Turkmenistan, Sary-Yazy, alt. 300 m. G–L. Iran, Rezavi Khorassan Prov., Kuh-e-Binalud Mts, Dorrud v. vicinity, alt. 2430 m. M. Central Afghanistan, Bamian Prov., Band-e-Amir, Dzhudoi-Kvak Gorge, alt. 3200 m. N. Bande-Amir, Hazarajat, Afghanistan. O. Afghanistan, Bamian Prov., Band-e-Amir, alt. 3200 m.
Fig. 12 in Review of the fritillary species systematically close to Melitaea lutko Evans, 1932 (Lepidoptera: Nymphalidae) with analysis of their geographic distribution and interrelations with host plants
Fig. 12. Eggs of Melitaea timandra timandra Coutsis & van Oorschot, 2014, S. Turkmenistan, SaryYazy. A–C. Lateral view. D–F. View from above. G–I. Micropile area.
Fig. 2 in Review of the fritillary species systematically close to Melitaea lutko Evans, 1932 (Lepidoptera: Nymphalidae) with analysis of their geographic distribution and interrelations with host plants
Fig. 2. Adults of Melitaea lutko Evans, 1932 and M. timandra binaluduca subsp. nov. A–H. UPS. I–P. UNS. A, I. M. lutko, ♂, Chitral Gol National Park, Chitral, Pakistan, alt. 2700 m. B, J. M. timandra binaluduca subsp. nov., ♂, Iran, S Khorasan Prov., 35 km N Birjant t. C, K. M. timandra binaluduca subsp. nov., ♂, Central Afghanistan, Bamian Prov., Band-e-Amir, Dzhudoi-Kvak Gorge, alt. 3200 m. D, L. M. timandra binaluduca subsp. nov., ♂, Afghanistan, Bamian Prov., Band-e-Amir, alt. 3200 m. E, M. M. lutko, ♀, Chitral Gol National Park, Chitral, Pakistan, alt. 2700 m. F, N. M. timandra binaluduca subsp. nov., ♂, Iran, Mazandaran Prov., S macroslopes of Albors Mts, 80 km SE of Sari, 5 km NE Foulad Mahhaleh v., E slopes of Sultan Kuh Mt., alt. 2000 m. G, O. M. timandra binaluduca subsp. nov., ♀, Afghanistan, Bamian Prov., Band-e-Amir, alt. 3200 m. H, P. M. timandra binaluduca subsp. nov., ♀, Central Afghanistan, Bamian Prov., Band-e-Amir, Dzhudoi-Kvak Gorge, alt. 3200 m.
Fig. 1 in Review of the fritillary species systematically close to Melitaea lutko Evans, 1932 (Lepidoptera: Nymphalidae) with analysis of their geographic distribution and interrelations with host plants
Fig. 1. Type specimens of M. lutko Evans, 1932, M. mimetica Higgins, 1940, and M. timandra Coutsis & van Oorschot, 2014. A, C, E. UPS. B, D, F. UNS. A–B. M. lutko, holotype, ♂ (BMNH). C– D. M. mimetica, paratype, ♀ (BMNH). E–F. M. timandra, holotype, ♂ (ZMA). A–D photos by A. Devyatkin; E–F, by Eulalia Gasso Miracle.
Fig. 15 in Review of the fritillary species systematically close to Melitaea lutko Evans, 1932 (Lepidoptera: Nymphalidae) with analysis of their geographic distribution and interrelations with host plants
Fig. 15. Adults of Melitaea timandra binaludica subsp. nov. A–H. UPS. I–P. UNS. A, I. Holotype, ♂ (SDM). B–H, J–P. Paratypes (EDMSU). A–D, I–L. ♂, Iran, Rezavi Khorassan Prov., Kuh-e Binalud Mts, Dorrud v. vicinity, alt. 2430 m. E–H, M–P. ♀, same data as for preceding.
Fig. 22 in Review of the fritillary species systematically close to Melitaea lutko Evans, 1932 (Lepidoptera: Nymphalidae) with analysis of their geographic distribution and interrelations with host plants
Fig. 22. Male genitalia of Melitaea shahvarica sp. nov. (a = valva; b = aedeagus). Iran, Semnan Prov., Shahrud area, S macroslope of Shahvar Mts, alt. 2200–2400 m.
Fig. 23 in Review of the fritillary species systematically close to Melitaea lutko Evans, 1932 (Lepidoptera: Nymphalidae) with analysis of their geographic distribution and interrelations with host plants
Fig. 23. Eggs of Melitaea shahvarica sp. nov., Iran, Semnan Prov., Shahrud area, S macroslope of Shahvar Mts, alt. 2200–2400 m. A–C. Lateral view. D–F. View from above. G–I. Micropile area.
Fig. 9 in Review of the fritillary species systematically close to Melitaea lutko Evans, 1932 (Lepidoptera: Nymphalidae) with analysis of their geographic distribution and interrelations with host plants
Fig. 9. Adults of Melitaea timandra timandra Coutsis & van Oorschot, 2014. A–H. UPS. I–P. UNS. A–D. ♂, Turkmenistan, Sary-Yazy, alt. 300 m. E–H. ♀, Turkmenistan, Sary-Yazy, alt. 300 m. I–L. ♂, Turkmenistan, Sary-Yazy, alt. 300 m. M–P. ♀, Turkmenistan, Sary-Yazy, alt. 300 m.
Fig. 27 in Review of the fritillary species systematically close to Melitaea lutko Evans, 1932 (Lepidoptera: Nymphalidae) with analysis of their geographic distribution and interrelations with host plants
Fig. 27. Biotope, host plant, and adult of Melitaea shahvarica sp. nov. in nature. A. Shahvar Mt., E Elburs Ridge. B. Biotope with Phlomoides molucelloides (Bunge) Salmaki. C. Host plant Ph. molucelloides. D. Female on Ph. molucelloides.
Fig. 21 in Review of the fritillary species systematically close to Melitaea lutko Evans, 1932 (Lepidoptera: Nymphalidae) with analysis of their geographic distribution and interrelations with host plants
Fig. 21. Adults of Melitaea shahvarica sp. nov. A–H. UPS. I–P. UNS. A, I. Holotype, ♂ (SDM). B–H, J–P. Paratypes (EDMSU). A–C. ♂. Iran, Semnan Prov., Shahrud area, S macroslope of Shahvar Mt., alt. 2200–2400 m. D. ♂. Iran, Semnan Prov., Shahrud area, S macroslope of Shahvar Mt., Tohar v. vicinity, alt. 2200 m. E–H. ♀. Iran, Semnan Prov., Shahrud area, S macroslope of Shahvar Mt., alt. 2200– 2400 m. I–K. ♂. Iran, Semnan Prov., Shahrud area, S macroslope of Shahvar Mt., 2200–2400 m. L. ♂. Iran, Semnan Prov., Shahrud area, S macroslope of Shahvar Mts, Tohar v. vicinity, alt. 2200 m. M–P. ♀. Iran, Semnan Prov., Shahrud area, S macroslope of Shahvar Mt., alt. 2200–2400 m.
Fig. 25. I–IV in Review of the fritillary species systematically close to Melitaea lutko Evans, 1932 (Lepidoptera: Nymphalidae) with analysis of their geographic distribution and interrelations with host plants
Fig. 25. I–IV instar caterpillars of Melitaea shahvarica sp. nov. (a = view from above; b = lateral view). A. First instar caterpillar after hatching. B. First instar caterpillar before molting. C. Second instar caterpillar. D. Third instar caterpillar. E. Fourth instar caterpillar.
Fig. 26. V–VI in Review of the fritillary species systematically close to Melitaea lutko Evans, 1932 (Lepidoptera: Nymphalidae) with analysis of their geographic distribution and interrelations with host plants
Fig. 26. V–VI instar caterpillars of Melitaea shahvarica sp. nov. (a = view from above; b = lateral view). A. Fifth instar caterpillar. B. Sixth instar caterpillar. C. Sixth instar caterpillar, head capsule, front view. D. Sixth instar caterpillar, head capsule, lateral view.
Fig. 20 in Review of the fritillary species systematically close to Melitaea lutko Evans, 1932 (Lepidoptera: Nymphalidae) with analysis of their geographic distribution and interrelations with host plants
Fig. 20. Eggs of Melitaea timandra binaludica subsp. nov., Iran, Kuh-e-Binalud Mts. A–C. Lateral view. D–F. View from above. G–I. Micropile area.
Fig. 19. Male genitalia and harpe. A–C in Review of the fritillary species systematically close to Melitaea lutko Evans, 1932 (Lepidoptera: Nymphalidae) with analysis of their geographic distribution and interrelations with host plants
Fig. 19. Male genitalia and harpe. A–C. Melitaea timandra timandra Coutsis & van Oorschot, 2014. D–I. M. timandra binaludica subsp. nov. A–C. Turkmenistan, Sary-Yazy, alt. 300 m. D–F. Iran, Rezavi Khorassan Prov., Kuh-e-Binalud Mts, Dorrud v. vicinity, alt. 2430 m. G. Afghanistan, Bamian Prov., Band-e-Amir, alt. 3200 m. H. Afghanistan, Bamian Prov., Band-e-Amir, Dzhudoi-Kvak Gorge, alt. 3200 m. I. Afghanistan, Band-e-Amir, Hazarajat.
Fig. 4 in Extending The Geographic Distribution Of Bryodrilus Ehlersi (Annelida, Enchytraeidae): Morphological And Molecular Comparison Of Korean And European Specimens
Fig. 4. Bryodrilus species, maximum likelihood (ML) trees of the CO1 region (A), ITS (B) and H3 genes (C). Bootstrap values greater than 50 are shown at the nodes. Accession codes of sequences with collection information are given in Table 1. A = ML tree of the CO1 gene based on 606 nucleotide positions (Tamura-Nei model). B = ML tree of the ITS region based on 765 nucleotide positions (Tamura 3-parameter model). C = ML tree of the H3 gene based on 218 nucleotide positions (Tamura 3-parameter model). Scale bars, 0.05 substitutions per nucleotide position (except for H3, where the scale is 0.01). For B. ehlersi specimens, the abbreviation
Fig. 5 in Extending The Geographic Distribution Of Bryodrilus Ehlersi (Annelida, Enchytraeidae): Morphological And Molecular Comparison Of Korean And European Specimens
Fig. 5. Bryodrilus species, concatenated phylogenetic tree based on 1599 nucleotide positions (which comprised the CO1, H3 and ITS genetic markers). Bayesian posterior probabilities are shown at the nodes. Scale bar, 0.05 substitutions per nucleotide position. For B. ehlersi specimens, the abbreviation of sample origin is shown in brackets (KOR = Korea, HUN = Hungary)
Fig. 2 in Extending The Geographic Distribution Of Bryodrilus Ehlersi (Annelida, Enchytraeidae): Morphological And Molecular Comparison Of Korean And European Specimens
Fig. 2. Micrograph of Korean Bryodrilus cf. ehlersi. A = Bursal slits, ventral view (marked with arrows). B = Male copulatory apparate (penial bulbs, marked with arrows). C–G = Sperm funnels. H–K = Spermathecae, dorsal view (marked with arrows, p1–p3 = pharyngeal glands). L–M = Ectal glands of spermathecae, lateral view (marked with arrows). (A, C–E, H–J, L in vivo; B, F–G, K, M fixed, stained. Scale bars: 50 μm)
Fig. 1 in Extending The Geographic Distribution Of Bryodrilus Ehlersi (Annelida, Enchytraeidae): Morphological And Molecular Comparison Of Korean And European Specimens
Fig. 1. Micrograph of Korean Bryodrilus cf. ehlersi. A–B = Brain. C = Head pore (marked with arrow). D = Epidermal gland cells. E–F = Clitellar gland cells, dorsal view. G = Clitellar gland cells, ventral view (penial bulbs marked with arrows). H = Coelomocytes (marked
Fig. 1 in Climatic niche defines geographical distribution of Mesobuthus eupeus mongolicus (Scorpiones: Buthidae) in Gobi desert
Fig. 1. Geographic and climatic features for the occurrence sites of Mesobuthus eupeus mongolicus and its suitable distributional areas predicted by ecological niche modeling. A. Field surveying sites (camping sites and stopovers) in Mongolia (dots) and occurrence points (crosses) of M. eupeus mongolicus is projected on the physical map of studied region. B. Scorpion occurring sites is projected on the map of Köppen-Geiger climatic classification. BWk: arid, desert, cold; BSk: arid, steppe, cold; Df(a-c): cold, without dry season; Dw(a-c) cold, dry winter; EF: polar, frost; ET: polar, tundra. C. Suitable distributional areas (red) predicted with MaxEnt basing on 98 presence-only data for M. eupeus mongolicus.
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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.