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50 results for “Dinarides”
FIGURE 7 in New insights into the subterranean genus Speoplanes Müller, 1911 (Coleoptera, Leiodidae, Cholevinae) from the Dinarides
FIGURE 7. Female genitalia of Speoplanes sp. On the left: S. giganteus, Mosor, Ledenica pod Jabukovcem, spermatheca, mediotergite and stylus; on the right: S. biocovensis, Biokovo, Jama ispod Sv. Jure, spermatheca, mediotergite and stylus.
FIGURE 6 in New insights into the subterranean genus Speoplanes Müller, 1911 (Coleoptera, Leiodidae, Cholevinae) from the Dinarides
FIGURE 6. Speoplanes sp., parameres of the male genitalia. A: Apical region of left paramere. Left: S. giganteus, Mosor, Ledenica pod Jabukovcem, right: S. biocovensis, Biokovo, Jama ispod Sv. Jure. B: Apical region of right paramere. Left: S. giganteus, Mosor, Jama Velika Gajna, right: S. biocovensis, Mali Šibenik, Jama na vrhu Malog Šibenika.
FIGURE 5 in New insights into the subterranean genus Speoplanes Müller, 1911 (Coleoptera, Leiodidae, Cholevinae) from the Dinarides
FIGURE 5. Morphological variation of the mesoventral carina of Speoplanes species. A: Mesoventral carina of S. giganteus male (left: specimen of Mosor, Ledenica pod Jabukovcem, right: Mosor, Jama Velika Gajna). B: Mesoventral carina of S. biocovensis male (left: specimen of Mali Šibenik, Jama na vrhu Malog Šibenika; right: Biokovo, Jama ispod Sv. Jure).
FIGURE 3 in New insights into the subterranean genus Speoplanes Müller, 1911 (Coleoptera, Leiodidae, Cholevinae) from the Dinarides
FIGURE 3. Species differentiation for females of Speoplanes. Speoplanes giganteus (A) has longer protibia and metatibia compared to the length of head-pronotum and elytra respectively, whereas Speoplanes biocovensis (B) has protibia and metatibia of equal length to head-pronotum and elytra respectively.
FIGURE 1 in New insights into the subterranean genus Speoplanes Müller, 1911 (Coleoptera, Leiodidae, Cholevinae) from the Dinarides
FIGURE 1. Bayesian phylogenetic reconstruction of Speoplanes based on 28S and COX1 genes. Speoplanes giganteus is coloured in blue, Speoplanes biocovensis in green. Labels on branches represent posterior probabilities and bootstrap values.
FIGURE 2 in New insights into the subterranean genus Speoplanes Müller, 1911 (Coleoptera, Leiodidae, Cholevinae) from the Dinarides
FIGURE 2. Habitus of the Speoplanes species. Male (right) and female (left) habitus of Speoplanes giganteus (A) and Speoplanes biocovensis (B)
FIGURE 30 in Endogean and cavernicolous Coleoptera of the Balkans. XVIII. Strong radiation in caves of the Central Dinarides: seven new species of Thaumastocephalus Poggi et al., 2001 (Staphylinidae: Pselaphinae)
FIGURE 30. Distribution map of the species of the genus Thaumastocephalus mentioned in this work.
FIGURE 9 in New insights into the subterranean genus Speoplanes Müller, 1911 (Coleoptera, Leiodidae, Cholevinae) from the Dinarides
FIGURE 9. Distribution map of Speoplanes Müller, 1911.
FIGURES 22–24. 22 in Endogean and cavernicolous Coleoptera of the Balkans. XVIII. Strong radiation in caves of the Central Dinarides: seven new species of Thaumastocephalus Poggi et al., 2001 (Staphylinidae: Pselaphinae)
FIGURES 22–24. 22—entrance to Jujnovića špilja (cave), type locality (photo Petra Bregović); 23—Thaumatocephalus slavkoi sp. n., habitus in situ (photo Petra Bregović); 24—topographical map of the type locality (the finding place of the T. slavkoi sp. n. is marked with red dots).
FIGURE 4 in New insights into the subterranean genus Speoplanes Müller, 1911 (Coleoptera, Leiodidae, Cholevinae) from the Dinarides
FIGURE 4. Species differentiation for male Speoplanes through the sclerites of the internal sac (right) of the aedeagi (left). Aedeagus of Speoplanes giganteus (A) has compact and curved sclerites, whereas Speoplanes biocovensis (B) has thin and straight internal sac sclerites.
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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)
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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.