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9 results for “Bukovina”
On following pages: 4. Manchurian Zokor (Myospalax psilurus); 5. Khingan Zokor (Myospalax epsilanus); 6. Fontanier's Zokor (Eospalax baileyi); 10. Rothschild's Zokor (Eospalax rothschildi); 11. Smith's Zokor (Eospalax smithi); 12. Chinese Bamboo sumatrensis); 15. Lesser Bamboo Rat (Cannomys badius); 16. African Root Rat (Tachyoryctes splendens); 17. Giant Root antiquus); 20. Bukovina Blind Mole-rat (Spalax graecus); 21. Podolsk Blind Mole-rat (Spalax zemni); 22. Sandy Blind Mole-rat giganteus); 25. Kazakhstan Blind Mole-rat (Spalax uralensis); 26. Lesser Blind Mole-rat (Nannospalax leucodon); 27. Anatolian (Eospalax fontanieril); 7. Gansu Zokor (Eospalax cansus); 8. Qinling Zokor (Eospalax rufescens); 9. Plateau Zokor Rat (Rhizomys sinensis); 13. Hoary Bamboo Rat (Rhizomys pruinosus); 14. Indomalayan Bamboo Rat (Rhizomys Rat (Tachyoryctes macrocephalus); 18. Oltenia Blind Mole-rat (Spalax istricus); 19. Mehely's Blind Mole-rat (Spalax (Spalax arenarius); 23. Greater Blind Mole-rat (Spalax microphthalmus); 24. Giant Blind Mole-rat (Spalax Blind Mole-rat (Nannospalax xanthodon); 28. Middle East Blind Mole-rat (Nannospalax ehrenbergi). in Spalacidae
On following pages: 4. Manchurian Zokor (Myospalax psilurus); 5. Khingan Zokor (Myospalax epsilanus); 6. Fontanier's Zokor (Eospalax baileyi); 10. Rothschild's Zokor (Eospalax rothschildi); 11. Smith's Zokor (Eospalax smithi); 12. Chinese Bamboo sumatrensis); 15. Lesser Bamboo Rat (Cannomys badius); 16. African Root Rat (Tachyoryctes splendens); 17. Giant Root antiquus); 20. Bukovina Blind Mole-rat (Spalax graecus); 21. Podolsk Blind Mole-rat (Spalax zemni); 22. Sandy Blind Mole-rat giganteus); 25. Kazakhstan Blind Mole-rat (Spalax uralensis); 26. Lesser Blind Mole-rat (Nannospalax leucodon); 27. Anatolian (Eospalax fontanieril); 7. Gansu Zokor (Eospalax cansus); 8. Qinling Zokor (Eospalax rufescens); 9. Plateau Zokor Rat (Rhizomys sinensis); 13. Hoary Bamboo Rat (Rhizomys pruinosus); 14. Indomalayan Bamboo Rat (Rhizomys Rat (Tachyoryctes macrocephalus); 18. Oltenia Blind Mole-rat (Spalax istricus); 19. Mehely's Blind Mole-rat (Spalax (Spalax arenarius); 23. Greater Blind Mole-rat (Spalax microphthalmus); 24. Giant Blind Mole-rat (Spalax Blind Mole-rat (Nannospalax xanthodon); 28. Middle East Blind Mole-rat (Nannospalax ehrenbergi).
Maramures and Bukovina
<p>The dataset includes vegetation compositional data and header data from 48 nested plot series recorded in 2018-2021 in Romanian and Ukrainian Maramures.</p> <p>Methodology according to:</p> <p><span>Janišová, M., Iuga, A., Ivașcu, C. M., & Magnes, M. (2021). Grassland with tradition: sampling across several scientific disciplines. <em>Vegetation Classification and Survey</em>, 2, 19–35. https://doi.org/10.3897/VCS/2021/60739</span></p> <p><span>Article published based on the data: </span></p> <p><span>Janišová et al.: Agricultural legacy shapes plant diversity patterns in mountain grasslands of Maramureș and Bukovina: a cross-border perspective (Ukraine, Romania), People and Nature, accepted on July, 8, 2024.</span></p>
Figure 1 in Old views and new insights: taxonomic revision of the Bukovina blind mole rat, Spalax graecus (Rodentia: Spalacinae)
Figure 1. Distribution of Spalax species (capitals) and the geographic origin of the investigated tissue samples (numerals). Distribution areas are based on the International Union for Conservation of Nature (IUCN) Red List maps, Chis¸amera et al. (2013), and our own data. A, Spalax uralensis; B, Spalax giganteus; C, Spalax microphthalmus; D, Spalax arenarius; E, Spalax zemni; F, Spalax graecus s.s.; G, Spalax antiquus; H, Spalax istricus. 1, Novomoszkovsz; 2, Krivij Rig; 3, Kherson Province; 4, Tzurupinsk District; 5, David Valley, Iasi; 6, Dealul lui Dumnezeu; 7, Budes¸ti; 8, Aiton; 9, Sândules¸ti.
Figure 4. Maximum-likelihood tree reconstructed from a 4507 in Old views and new insights: taxonomic revision of the Bukovina blind mole rat, Spalax graecus (Rodentia: Spalacinae)
Figure 4. Maximum-likelihood tree reconstructed from a 4507-bp alignment of six mitochondrial sequencesof Spalax species [cytochrome b, NADH1, 12S rRNA, 16S rRNA, tRNA-Leu (UUR), tRNA-Val]. Acomys cahirinus and Nannospalax judaei were used as out-groups. The percentage of trees in which the associated taxa clustered together (after 10 000 replications) is shown next to the branches. The bar represents the number of substitutions per site.
Figure 5 in Old views and new insights: taxonomic revision of the Bukovina blind mole rat, Spalax graecus (Rodentia: Spalacinae)
Figure 5. Dorsal view of skull of Spalax graecus s.s. (topotype from Chernovcy, Ukraine, ZMUAS 32). Abbreviations: f, frontal bone; p, parietal bone; pm, premaxilla; n, nasal bone.
Figure 3 in Old views and new insights: taxonomic revision of the Bukovina blind mole rat, Spalax graecus (Rodentia: Spalacinae)
Figure 3. Maximum-likelihood tree reconstructed from an 844-bp alignment of cytochrome b sequences of Spalax species. Acomys cahirinus and Nannospalax judaei were used as out-groups. The percentage of trees in which the associated taxa clustered together (after 10 000 replications) is shown next to the branches. The bar represents the number of substitutions per site.
Figure 2 in Old views and new insights: taxonomic revision of the Bukovina blind mole rat, Spalax graecus (Rodentia: Spalacinae)
Figure 2. Live specimen of Spalax graecus from David Valley, Iasi, Romania (photo: G. Csorba).
Figure 7 in Old views and new insights: taxonomic revision of the Bukovina blind mole rat, Spalax graecus (Rodentia: Spalacinae)
Figure 7. Dorsal view of skulls showing the rostral structure of (A) Spalax antiquus (from Leorint, Romania, HNHM 23530), (B) Spalax graecus s.s. (topotype from Chernovcy, Ukraine, ZMUAS 11214), (C) Spalax istricus (paralectotype from Horezu Poenari, Romania, HNHM 2522.4), and (D) Spalax zemni (from Krivij Rig, Ukraine, HNHM 2009.37.9.). Not to scale.
Figure 6 in Old views and new insights: taxonomic revision of the Bukovina blind mole rat, Spalax graecus (Rodentia: Spalacinae)
Figure 6. Caudal view of left mandible of Spalax antiquus (Leorint, Romania, HNHM 23530). The plane is determined by the axis of the coronoid process. Abbreviations: cp, coronoid process; se, sella externa; si = sella interna.
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Allen Brain Atlas
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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
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