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321 results for “Crimea”
Figs 20–25 in A new species of the silverfish genus Allacrotelsa Silvestri, 1935 (Zygentoma: Lepismatidae) from Crimea
Figs 20–25. Allacrotelsa taurica sp. n., holotype ♂ (22) and paratype ♀ (20, 21, 23–25).
Figs 26–28 in A new species of the silverfish genus Allacrotelsa Silvestri, 1935 (Zygentoma: Lepismatidae) from Crimea
Figs 26–28. Allacrotelsa taurica sp. n., holotype ♂. 26 – urocoxite IX, with genital
Figs 15–19 in A new species of the silverfish genus Allacrotelsa Silvestri, 1935 (Zygentoma: Lepismatidae) from Crimea
Figs 15–19. Allacrotelsa taurica sp. n., holotype ♂ (15–17) and paratype ♀ (18, 19). 15 –
Figs 7–14 in A new species of the silverfish genus Allacrotelsa Silvestri, 1935 (Zygentoma: Lepismatidae) from Crimea
Figs 7–14. Allacrotelsa taurica sp. n., holotype ♂. 7 – pronotum; 8 – mesonotum; lateral
FIGURE 3. Theristus flevensis Schuurmans Stekhoven, 1935 in Two species of the genus Theristus Bastian, 1865 (Nematoda: Xyalidae) from the hypersaline water bodies of the Crimea (Azov-Black Sea basin)
FIGURE 3. Theristus flevensis Schuurmans Stekhoven, 1935: A. general view of female, B. general view of male, C. tail end of male, D. spicula and gubernaculum, E. tail end of female, F. female head, G. male head, H. vulval region. Scale bar: A, B = 200 μm; C, E = 50 μm; D, F, G, H = 20 μm.
FIGURE 1 in Two species of the genus Theristus Bastian, 1865 (Nematoda: Xyalidae) from the hypersaline water bodies of the Crimea (Azov-Black Sea basin)
FIGURE 1. Theristus siwaschensis sp. n. Holotype male and paratype female. A. tail end of male, B. male head, C. female head, D. general view of male, E. general view of female, F. vulval region, G. vulval region and egg in paratype female, H. spicule and gubernaculum. Scale bar: D, E = 100 μm; A = 50 μm; G = 40 μm; B, C, F, H = 20 μm.
Data from: A systematic review of cetothere baleen whales (Cetacea, Cetotheriidae) from the Late Miocene of Crimea and Caucasus, with a new genus
Nine taxa of Miocene baleen whales were described from the Black Sea region under the name Cetotherium before 1951, and a further four closely related species representing three genera have been added in recent years. This rich diversity requires taxonomic revision and ordering. Here, a new genus, Mithridatocetus, is described from the Tortonian of Crimea and Caucasus, with two species, M. eichwaldi and M. adygeicus (originally Kurdalagonus adygeicus); 'Cetotherium' mayeri (a nomen dubium) is also a member of this genus. In comparison with other Cetotheriinae, Mithridatocetus is distinguished by the autapomorphic shape of the tympanic bulla with the swollen main ridge, the lowered anterior portion of the involucrum and the oblique anterolateral margin; such synapomorphies, as a transversely narrow squamosal with the ventromedially oriented postglenoid process (shared with Eucetotherium), a squamosal cleft (shared with Kurdalagonus) and an oval surface of the compound posterior process of the tympanoperiotic on the posterolateral skull wall (shared with Brandtocetus); and a unique combination of a high neurocranium and a long and robust paroccipital process. The genus Kurdalagonus is redefined here as containing only one described species, K. mchedlidzei. Therefore, the group Cetotheriinae is now restricted to the latest Serravallian and Tortonian of the Eastern Paratethys and includes at least five genera: Cetotherium, Brandtocetus, Kurdalagonus, Mithridatocetus and Zygiocetus. In addition, ?Cetotherium priscum and C. incertum are considered to be nomina dubia; 'Cetotherium' klinderi and 'Cetotherium' pusillum require more complete specimens for reassessment; 'Cetotherium' maicopicum and Eucetotherium helmersenii require further research to identify their taxonomical affinities.
Data from: Forest snail faunas from Crimea (Ukraine), an isolated and incomplete Pleistocene refugium
The land snail faunas of 26 forest sites and two open rocky sites in the Crimean Mountains were sampled in 2011. Of the 40 species found within the forests (about half the known fauna of Crimea as a whole), 28 were species with wide western Palaearctic distributions, and only eight were endemic to Crimea. While there were significant differences in the faunas of different sampling areas, these seemed to be a consequence of ecological differences among them rather than a product of geographical isolation and differentiation. Endemic species were large, and not entirely restricted to forest; known endemics not found in these forests are mainly typical of more open habitats. There is no local radiation of small species living in damp forest litter, as with Leiostyla species in the Transcaucasian forest refugium, and families such as the Clausiliidae with many endemic forest species in both Transcaucasia and the Carpathians are sparsely represented. The one endemic clausiliid genus, Mentissa, occurs in open as well as in wooded habitats. The present faunas are rather poor considering the soil conditions and climate, and the forests hold widespread species often associated with open habitats elsewhere. While there is evidence that these mountains provided a refuge for many animals and plants during glacial episodes further north, the forest snail fauna suggests that full forest cover did not survive throughout the Pleistocene. Rather, the present fauna contains endemics that survived in other habitats and widespread species with good powers of passive dispersal.
FIGURES 1–10 in A revision of the Eudarcia glaseri - species group (Lepidoptera, Meessiidae) with description of two new species from Greece and Crimea
FIGURES 1–10. Adults of Eudarcia spp. 1–3. E. glaseri. 1. Holotype, ♂, Spain, gen. slide 2326♂, Petersen. 2. Paratype, ♂, Spain. 3. Paratype, ♀, Spain, gen. slide 2179♀, Petersen. 4. E. saxatilis, Holotype, ♂, Crimea, gen. slide 74/15♂, Bidzilya. 5. E. abchasicum, Paratype, ♀, Georgia, gen. slide 127/16♀, Bidzilya. 6–7. E. ignorata. 6. Holotype, ♂, Greece, gen. slide 8742♂, Gaedike. 7. Paratype, ♀, Greece, gen. slide 6269♀, Sutter. 8–10. E. armatum. 8. ♂, Greece, gen. slide 8780♂, Gaedike. 9. ♀, Greece. 10. ♀, Greece, gen. slide 2338♀, Gaedike.
FIGURES 35–37. Tarsonemus bistridentati, larva paratype. 35 in Two new species of Tars on em u s (Acari: Tarsonemidae) associated with bark beetles (Coleoptera: Scolytidae) from Crimea, Ukraine
FIGURES 35–37. Tarsonemus bistridentati, larva paratype. 35, idiosoma; 36, gnathosoma dorsum; 37, gnathosoma venter.
FIGURES 31–34. Tarsonemus bistridentati, male paratype. 31,leg I in Two new species of Tars on em u s (Acari: Tarsonemidae) associated with bark beetles (Coleoptera: Scolytidae) from Crimea, Ukraine
FIGURES 31–34. Tarsonemus bistridentati, male paratype. 31,leg I; 32, leg II; 33, leg III; 34, leg IV.
FIGURES 1–3. Tarsonemus fraxini, female holotype. 1 in Two new species of Tars on em u s (Acari: Tarsonemidae) associated with bark beetles (Coleoptera: Scolytidae) from Crimea, Ukraine
FIGURES 1–3. Tarsonemus fraxini, female holotype. 1, idiosoma; 2, gnathosoma dorsum, 3, gnathosoma venter.
FIGURES 24–27. Tarsonemus bistridentati, female holotype. 24,leg I in Two new species of Tars on em u s (Acari: Tarsonemidae) associated with bark beetles (Coleoptera: Scolytidae) from Crimea, Ukraine
FIGURES 24–27. Tarsonemus bistridentati, female holotype. 24,leg I; 25, leg II; 26, leg III; 27, leg IV.
FIGURES 8–10. Tarsonemus fraxini, male paratype. 8 in Two new species of Tars on em u s (Acari: Tarsonemidae) associated with bark beetles (Coleoptera: Scolytidae) from Crimea, Ukraine
FIGURES 8–10. Tarsonemus fraxini, male paratype. 8, idiosoma; 9, gnathosoma dorsum; 10, gnathosoma venter.
FIGURES 21–23. Tarsonemus bistridentati, female holotype. 21 in Two new species of Tars on em u s (Acari: Tarsonemidae) associated with bark beetles (Coleoptera: Scolytidae) from Crimea, Ukraine
FIGURES 21–23. Tarsonemus bistridentati, female holotype. 21, idiosoma; 22, gnathosoma dorsum; 23, gnathosoma venter.
FIGURES 15–17. Tarsonemus fraxini, larva paratype. 15 in Two new species of Tars on em u s (Acari: Tarsonemidae) associated with bark beetles (Coleoptera: Scolytidae) from Crimea, Ukraine
FIGURES 15–17. Tarsonemus fraxini, larva paratype. 15, idiosoma; 16, gnathosoma dorsum; 17, gnathosoma venter.
FIGURES 38–44 in Redescription of Endonura taurica (Stach, 1951) and E. quadriseta Cassagnau & Péja, 1979, and description of two new species of the genus Endonura Cassagnau, 1979 (Collembola: Neanuridae: Neanurinae) from the Crimea (Ukraine)
FIGURES 38–44. Endonura dentifera sp. nov.: 38, dorsal chaetotaxy of head; 39, mandible; 40, chaetotaxy of labium and group Vi; 41, dorsolateral and ventral chaetotaxy of head; 42, chaetotaxy o tubercles Di and De of abd. I–II; 43, chaeta Di1 of abd. V; 44, dorsal chaetotaxy of abd. V–VI.
FIGURES 33–37 in Redescription of Endonura taurica (Stach, 1951) and E. quadriseta Cassagnau & Péja, 1979, and description of two new species of the genus Endonura Cassagnau, 1979 (Collembola: Neanuridae: Neanurinae) from the Crimea (Ukraine)
FIGURES 33–37. Endonura quadriseta: 33, tibiotarsus and claw III (dorsolateral view); 34, tibiotarsus and claw III (ventrolateral view); 35, chaetae of male ventral organ; 36, ventral chaetotaxy of abd. II–VI (adult male); 37, chaeta Di1 of abd. V.
FIGURES 45–49 in Redescription of Endonura taurica (Stach, 1951) and E. quadriseta Cassagnau & Péja, 1979, and description of two new species of the genus Endonura Cassagnau, 1979 (Collembola: Neanuridae: Neanurinae) from the Crimea (Ukraine)
FIGURES 45–49. Endonura dentifera sp. nov.: 45, chaetotaxy of groups Vl and Ve of abd. IV; 46, tibiotarsus and claw I (ventrolateral view); 47, tibiotarsus and claw I (dorsolateral view); 48, tibiotarsus and claw III (dorsolateral view); 49, tibiotarsus and claw III (ventrolateral view).
FIGURES 20–26 in Redescription of Endonura taurica (Stach, 1951) and E. quadriseta Cassagnau & Péja, 1979, and description of two new species of the genus Endonura Cassagnau, 1979 (Collembola: Neanuridae: Neanurinae) from the Crimea (Ukraine)
FIGURES 20–26. Endonura gracilirostris sp. nov.: 20, dorsal chaetotaxy of head; 21, tibiotarsus and claw III (ventrolateral view); 22, tibiotarsus and claw III (dorsolateral view); 23, dorsal chaetotaxy of abd. V–VI; 24, tibiotarsus and claw I (dorsolateral view); 25, tibiotarsus and claw I (ventrolateral view); 26, chaeta Di1 of abd. V.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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
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