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Fig. 53. Pseudonannolene buhrnheimi Schubart, 1960 in A reassessment of the Neotropical genus Pseudonannolene Silvestri, 1895: cladistic analysis, biogeography, and taxonomic review (Spirostreptida: Pseudonannolenidae)
Fig. 53. Pseudonannolene buhrnheimi Schubart, 1960, ♀ (IBSP 2397), in lateral view. A. Anterior region. B. Posterior region. Scale bars = 1 mm.
Fig. 35 in A reassessment of the Neotropical genus Pseudonannolene Silvestri, 1895: cladistic analysis, biogeography, and taxonomic review (Spirostreptida: Pseudonannolenidae)
Fig. 35. SEM images of telopodite of right gonopod, in anal view. A. Pseudonannolene microzoporus Mauriès, 1987 (IBSP 5733). B. Detail of apical region, P. microzoporus (IBSP 5733). C. P. maritima Schubart, 1949 (IBSP 979). D. Detail of apical region, P. maritima (IBSP 979). E. P. spelaea Iniesta & Ferreira, 2013 (IBSP 6071). F. Detail of apical region, P. spelaea (IBSP 6071). Scale bars: A = 0.3 mm; B, E = 0.05 mm; C–D = 0.1 mm; F = 0.2 mm.
Fig. 48. Pseudonannolene anapophysis Fontanetti, 1996 in A reassessment of the Neotropical genus Pseudonannolene Silvestri, 1895: cladistic analysis, biogeography, and taxonomic review (Spirostreptida: Pseudonannolenidae)
Fig. 48. Pseudonannolene anapophysis Fontanetti, 1996, ♂ (IBSP 5209), in lateral view. A. Anterior region. B. Posterior region. Scale bars = 1 mm.
Fig. 47 in A reassessment of the Neotropical genus Pseudonannolene Silvestri, 1895: cladistic analysis, biogeography, and taxonomic review (Spirostreptida: Pseudonannolenidae)
Fig. 47. Pseudonannolene ambuatinga Iniesta & Ferreira, 2013, ♂ (IBSP 3442). A. First leg-pair. B. Detail of prefemur. C. Second leg-pair. D. Detail of telopodites, in anal view. E. Gonopods, in anal view. F. Gonopods, in oral view. Abbreviations: see Material and methods. Scale bars: A, C, E–F = 0.5 mm; B, D = 0.2 mm.
Fig. 16 in A reassessment of the Neotropical genus Pseudonannolene Silvestri, 1895: cladistic analysis, biogeography, and taxonomic review (Spirostreptida: Pseudonannolenidae)
Fig. 16. Biogeographic history of the clades recovered in the analysis. A. Clade 15 (the stippled rectangles refer to the delimitation of the mountain ranges Fortaleza, Gradaús, and Carajás). B. Clade 38. C. Clade 39. D. Clade 29 (record of Pseudonannolene patagonica Brölemann, 1902 in Argentina is omitted). E. Clade 25. F. Clade 49.
Fig. 52. Pseudonannolene bovei Silvestri, 1895 in A reassessment of the Neotropical genus Pseudonannolene Silvestri, 1895: cladistic analysis, biogeography, and taxonomic review (Spirostreptida: Pseudonannolenidae)
Fig. 52. Pseudonannolene bovei Silvestri, 1895, syntype, ♂ (MCSN). A. First leg-pair. B. Detail of prefemur. C–D. Original label of type material. E. Schematic drawing of left gonopod in anal view (modified from Silvestri 1895a: fig. 9). Abbreviations: see Material and methods. Scale bars = 0.2 mm.
Fig. 26 in A reassessment of the Neotropical genus Pseudonannolene Silvestri, 1895: cladistic analysis, biogeography, and taxonomic review (Spirostreptida: Pseudonannolenidae)
Fig. 26. SEM images of midbody rings. A. Pseudonannolene robsoni Iniesta & Ferreira, 2014 (IBSP 3506). B. P. granulata sp. nov. (MNRJ). C. Detail of the transverse striae of P. robsoni (IBSP 3506). D. Midbody ring in dorsal view of P. granulata sp. nov. (MNRJ). E. Ozospore of P. granulata sp. nov. (MNRJ). Scale bars: A–B, D = 1 mm; C = 0.1 mm; E = 0.02 mm.
Fig. 37 in A reassessment of the Neotropical genus Pseudonannolene Silvestri, 1895: cladistic analysis, biogeography, and taxonomic review (Spirostreptida: Pseudonannolenidae)
Fig. 37. SEM images of anterior body rings of males of Pseudonannolene erikae Iniesta & Ferreira, 2014 (IBSP 7607). A–B. Ventral view. C. Transversal view. D. Detail of seventh body ring with gonopod aperture. Scale bars: A, C–D = 1 mm; B = 0.2 mm.
Fig. 56 in A reassessment of the Neotropical genus Pseudonannolene Silvestri, 1895: cladistic analysis, biogeography, and taxonomic review (Spirostreptida: Pseudonannolenidae)
Fig. 56. Pseudonannolene caatinga Iniesta & Ferreira, 2014, ♂ (IBSP 2178), in lateral view. A. Anterior region. B. Posterior region. Scale bars = 1 mm.
Fig. 15 in A reassessment of the Neotropical genus Pseudonannolene Silvestri, 1895: cladistic analysis, biogeography, and taxonomic review (Spirostreptida: Pseudonannolenidae)
Fig. 15. Biogeographic history of the genus Pseudonannolene Silvestri, 1895. The symbols refer to the distribution data of P. scalaris Brölemann, 1902 (black squares), P. rocana Silvestri, 1902 (grey triangles), P. alegrensis Silvestri, 1897 (white triangle), and remaining species (yellow circles).
Fig. 14 in A reassessment of the Neotropical genus Pseudonannolene Silvestri, 1895: cladistic analysis, biogeography, and taxonomic review (Spirostreptida: Pseudonannolenidae)
Fig. 14. The equally parsimonious optimal reconstructions of the biogeographic history inferred for Pseudonannolene Silvestri, 1895 using GEM. The reconstructions A and B were based on the majority rule consensus tree. The symbols refer to the cladogenetic events recovered: white triangle = founder event; white squares = sympatry, black square = vicariance; white circle = point sympatry.
Fig. 13 in A reassessment of the Neotropical genus Pseudonannolene Silvestri, 1895: cladistic analysis, biogeography, and taxonomic review (Spirostreptida: Pseudonannolenidae)
Fig. 13. Distribution maps of Pseudonannolene Silvestri, 1895. A. Records of species by grid 2° × 2°. B. Richness by grid 2° × 2°. C. Distribution of the genus in South America. The colored areas represent the biogeographical division of the Neotropical region (Morrone 2014; Löwenberg-Neto 2014). Grids containing only one record of a single species are omitted in the maps A and B.
Fig. 12 in A reassessment of the Neotropical genus Pseudonannolene Silvestri, 1895: cladistic analysis, biogeography, and taxonomic review (Spirostreptida: Pseudonannolenidae)
Fig. 12. Evolution of ommatidial cluster. Mapping on the strict consensus of 27 equally parsimonious trees under implied weighting (k = 4–7). Images of ommatidial cluster: black = Pseudonannolene buhrnheimi Schubart, 1960 (IBSP 2397); blue = P. leucomelas Schubart, 1947 (MNRJ 11829).
Fig. 11 in A reassessment of the Neotropical genus Pseudonannolene Silvestri, 1895: cladistic analysis, biogeography, and taxonomic review (Spirostreptida: Pseudonannolenidae)
Fig. 11. Evolution of the processes on solenomere. Mapping on the strict consensus of 27 equally parsimonious trees under implied weighting (k = 4–7). Images of solenomere: red = Pseudonannolene mesai Fontanetti, 2000 (IBSP 816); blue = P. nicolau sp. nov.; green = P. caatinga Iniesta & Ferreira, 2014 (IBSP 2166).
Fig. 3 in A reassessment of the Neotropical genus Pseudonannolene Silvestri, 1895: cladistic analysis, biogeography, and taxonomic review (Spirostreptida: Pseudonannolenidae)
Fig. 3. Transformation of the continuous characters of antennae, midleg pairs, and shape of mentum (chars. 1–3) by unity-based normalization (0–1).
Fig. 10 in A reassessment of the Neotropical genus Pseudonannolene Silvestri, 1895: cladistic analysis, biogeography, and taxonomic review (Spirostreptida: Pseudonannolenidae)
Fig. 10. Morphology of gnathochilarium based on the tree topology summarized under implied weighting (k = 4–7). Images of gnathochilarium: black = Holopodostreptus braueri Carl, 1918 (MNRJ); blue = Cambalomma laevis Loomis, 1941 (MCZ); red = Epinannolene sp. (ICN); green = Pseudonannolene maritima Schubart, 1949 (IBSP 1176).
Fig. 2 in A reassessment of the Neotropical genus Pseudonannolene Silvestri, 1895: cladistic analysis, biogeography, and taxonomic review (Spirostreptida: Pseudonannolenidae)
Fig. 2. Schematic drawing of the gonopods of Pseudonannolene Silvestre, 1895. A. Right gonopod in oral view. B. Left gonopod in anal view.
Fig. 8 in A reassessment of the Neotropical genus Pseudonannolene Silvestri, 1895: cladistic analysis, biogeography, and taxonomic review (Spirostreptida: Pseudonannolenidae)
Fig. 8. Strict consensus with optimization of the synapomorphies recovered in all resulting topologies under implied weighting (k = 4–7). Only discrete characters are represented.
Fig. 4 in A reassessment of the Neotropical genus Pseudonannolene Silvestri, 1895: cladistic analysis, biogeography, and taxonomic review (Spirostreptida: Pseudonannolenidae)
Fig. 4. Strict consensus of 27 equally parsimonious trees under implied weighting (k = 4–7). Clades with the sensitivity to different k values are represented by the frequency on the Navajo–rugs. Clades with asterisk have values of Bremer relative [Br] above 50 and Goodman-Bremer [GBr] of 0.1.
Figure 4L-O in Review of the genus (Araneae: Salticidae) - a taxonomic fiasco *
Figure 4L-O. Example of searching for placement into a correct genus. L - Chinattus szechwanensis - type species, M - the same - epigyne, N - Chinattus[?] dactyloides by Suguro, O - the same - epigyne. SOURCES: L-M - Prószyński, 1992: 94, f. 22-27, N-O - Suguro, 2014: 10, f. 11-18.
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.