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446 results for “taxonomic position”
FIGURE 1 in Osteological description of Pseudopaludicola canga with implications for the taxonomic position of this taxon
FIGURE 1. Pseudopaludicola canga osteology. Skull: A) dorsal view; B) ventral view. C) Maxilar process of the quadratojugal; D) Descendant process of the squamosal. E) palmar view of hand; F) vertebral column; G) plantar view of foot. Scale bar 500 µm (C–D) and 1 mm (A–B; E–G).
FIGURE 2. The IV in Osteological description of Pseudopaludicola canga with implications for the taxonomic position of this taxon
FIGURE 2. The IV digit toe tip in Pseudopaludicola species. A) P. canga (MPEG 34369) 14700); B) P. falcipes (LGE 3125); C) P. pusilla (ICN 14700); D) P. llanera (ICN 14025); E) P. boliviana (LGE 3027); F) P. ceratophyes (INPA 3540). Scale bar 1 mm.
FIGURE 1 in A new genus of Chalcidoidea (Hymenoptera) from Chile with challenging taxonomic position
FIGURE 1. Lautaroderus malalcahuello Gumovsky gen. et sp. n., holotype (♀). A–C, habitus views. D, E, posterior mesosoma (mesoscutellum, metascutellum and propodeum). Abbreviations: mtsc, metascutellum; psp, propodeal spiracle.
FIGURE 4 in A new genus of Chalcidoidea (Hymenoptera) from Chile with challenging taxonomic position
FIGURE 4. Aoridus campbelli Yoshimoto, holotype (♀). A, head and mesosoma. B, head. C, part of mesosoma showing basal part of fore wing (the region basal to the red dashed line is the speculum and the regions of excessive pilosity are indicated by red arrows). Abbreviation: fs, frontal sulcus.
FIGURE 3 in A new genus of Chalcidoidea (Hymenoptera) from Chile with challenging taxonomic position
FIGURE 3. Lautaroderus malalcahuello Gumovsky gen. et sp. n., holotype (♀). A, G, head and anterior part of mesosoma: A, latero-ventral view; G, dorso-frontal view. B, metasoma and posterior part of mesosoma. C, ventral part of body and legs with labelled tarsi. D‒F, tarsi: D, fore tarsus; E, hind tarsus; F, mid tarsus. Abbreviations: bc, basitarsal comb; ca, calcar; fs, frontal sulcus; ftr, fore tarsus; htr, hind tarsus; mtr, mid tarsus; sg, scrobal groove; msp, mesothoracic spiracle; pp, prepectus.
FIGURE 2 in A new genus of Chalcidoidea (Hymenoptera) from Chile with challenging taxonomic position
FIGURE 2. Lautaroderus malalcahuello Gumovsky gen. et sp. n., holotype (♀). A, head and mesosoma. B, face. C, lower face. D, E, head and antenna. Abbreviations: an1 and an2, anelli; cly, clypeus; C1‒C3, club segments; fs, frontal sulcus; F1‒F4, funiculars; mtsc, metascutellum.
Figs. 1–8 in A New Genus and Species of Neotropical Taphurini Distant, 1905 (Hemiptera: Cicadoidea: Cicadidae: Cicadettinae) from Brazil with a Note on the Taxonomic Position of Prosotettix Jacobi, 1907
Figs. 1–8. Brevialavenosa aurepilosa Sanborn, new genus, new species. 1, Holotype male habitus. Scale bar = 2 cm. 2, Holotype male dorsum. Scale bar = 2 mm. 3, Holotype male timbal. Scale bar = 1 mm. 4, Paratype male operculum. Scale bar = 2 mm. 5, Paratype male lateral view of genitalia. Scale bar = 1 mm. 6, Paratype male posterior view of genitalia. Scale bar = 1 mm. 7, Paratype male aedeagus. Scale bar = 1 mm. 8, Paratype male claspers. Scale bar = 1 mm.
FIGURES 9–14 in On the taxonomic position of 'Siccia' yvonneae Kühne, 2007 (Lepidoptera: Nolidae: Nolinae)
FIGURES 9–14. Nolini and Lithosiini spp.: male genitalia. 9, Meganola yvonneae, paratype, W Kenya, slide Kühne 206/2004 (ZMB); 10, M. yvonneae, Liberia, slide AV4544 (ANHRT); 11, Meganola conspicua, USA, Texas, slide LGN1310 (©NH- MUK); 12, Meganola albula, Slovakia, slide LGN943 (MWM/ZSM); 13, Manoba lithosiformis, holotype, Philippines, slide LGN534 (MWM/ZSM); 14, Siccia caffra, South Africa, slide NHMUK010314586 Volynkin (©NHMUK).
FIGURES 15–18 in On the taxonomic position of 'Siccia' yvonneae Kühne, 2007 (Lepidoptera: Nolidae: Nolinae)
FIGURES 15–18. Nolini and Lithosiini spp.: female genitalia. 15, Meganola yvonneae, paratype, W Kenya, slide AV2893 (ZMB); 16, Meganola conspicua, USA, Nevada, slide LGN1312 (©NHMUK); 17, Meganola albula, Germany, slide LGN80 (MWM/ZSM); 18, Siccia caffra, South Africa, slide BMNH(E) Arct-5032 (©NHMUK).
FIGURES 1–8 in On the taxonomic position of 'Siccia' yvonneae Kühne, 2007 (Lepidoptera: Nolidae: Nolinae)
FIGURES 1–8. Nolini and Lithosiini spp.: adults. 1, Meganola yvonneae, paratype ♂, W Kenya (ZMB); 2, M. yvonneae, paratype ♀, W Kenya (ZMB); 3, M. yvonneae, ♂, Liberia (ANHRT); 4, M. yvonneae, ♂, Nigeria (©NHMUK); 5, Meganola conspicua, ♂, USA, Arizona (©NHMUK); 6, Meganola albula, ♀, Germany, Nordrhein-Westfalen (MWM/ZSM); 7, Manoba lithosiformis, holotype ♂, Philippines, Mindanao (MWM/ZSM); 8, Siccia caffra, ♂, South Africa (©NHMUK).
Data from: Taxonomic study on Japanese Salvia (Lamiaceae): Phylogenetic position of S. akiensis, and polyphyletic nature of S. lutescens var. intermedia
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Data from: Evolutionary patterns of ploidy and genome size variations show positive correlations with taxonomic diversity in tropical gingers (Zingiberaceae)
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Data from: An unusual new species of Bidens (Asteraceae, Coreopsideae) with its phylogenetic position and taxonomic notes
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FIG. 7 in On the taxonomic position of Phaenomenella Fraussen & Hadorn, 2006 (Neogastropoda, Buccinoidea) with description of two new species
FIG. 7. — Shells of Phaenomenella nicoi n. sp.: A-C, holotype, MNHN-IM-2013-61585, SL 41.1 mm; D, ZHONGSHA 2015, st. CP4157, sequenced spm, MNHN- IM-2013-59398, SL 37.5 mm; E, ZHONGSHA 2015, st. CP4133, sequenced spm, MNHN-IM-2013-61639, SL 43.2 mm; F, AURORA 2007, st. CP2685, sequenced spm, MNHN-IM-2007-34639, SL 34.7 mm; G, AURORA 2007, st. CP2685, not-sequenced spm, MNHN-IM-2007-34644, SL 38.7 mm; H, ZHONGSHA 2015, st. CP4133, sequenced spm, MNHN-IM-2013-61637, SL 30.6 mm (anatomy studied); I, ZHONGSHA 2015, st. CP4134, sequenced spm, MNHN-IM-2013-61673, SL 42 mm; J, ZHONGSHA 2015, st. CP4133, not-sequenced spm, MNHN-IM-2013-61636, SL 40.2 mm (anatomy studied); K, L, ZHONGSHA 2015, st. CP4132, not-sequenced spm, MNHN-IM-2013-61592, 39.1 mm; L, enlarged protoconch. Scale bars: A-K, 20 cm; L, 1 mm.
FIG. 3 in On the taxonomic position of Phaenomenella Fraussen & Hadorn, 2006 (Neogastropoda, Buccinoidea) with description of two new species
FIG. 3. — Phylogenetic tree of a dataset of Buccinoidea Rafinesque, 1815 obtained with Bayesian analysis of concatenated sequences of COI and 28S. Support values shown for the supported nodes with posterior probability values between 0.70 and 1.00 only.
FIG. 6 in On the taxonomic position of Phaenomenella Fraussen & Hadorn, 2006 (Neogastropoda, Buccinoidea) with description of two new species
FIG. 6. — Anatomy of Phaenomenella samadiae n. sp.: A, B, E-G, holotype, MNHN-IM-2013-61617, female; C, D, MNHN-IM-2013-61674, male; A, cephalopodium, front view, mantle removed; B, mantle; C, uppermost part of penis; D, stomach, external view; E, foregut, ventral view; F, foregut, lateral view; G, valve of Leiblein. Abbreviations: see material and methods. Scale bars: 5 mm.
FIG. 9 in On the taxonomic position of Phaenomenella Fraussen & Hadorn, 2006 (Neogastropoda, Buccinoidea) with description of two new species
FIG. 9. — Shells of studied Siphonalia spp.: A-C, S. cassidariaeformis (Reeve, 1846): specimen no. 1 (A), specimen no. 2 (B), specimen no. 3 (C); D, E, S. pfefferi G. B. Sowerby III, 1900; D, specimen no. 1; E, specimen no. 2. Scale bar: 10 mm.
FIG. 12 in On the taxonomic position of Phaenomenella Fraussen & Hadorn, 2006 (Neogastropoda, Buccinoidea) with description of two new species
FIG. 12. — Anatomy of Siphonalia pfefferi G. B. Sowerby III, 1900, specimen no. 1: A, cephalopodium,ventral view; B, cephalopodium, dorsal view, mantle removed; C, penis; D, foregut, dorsal view; E, foregut, ventral view; F, proboscis opened dorsally; G, stomach, external view; H, stomach, opened dorsally. Abbreviations: see material and methods. Scale bars: A-F, 10 mm; G, H, 5 mm.
FIG. 5 in On the taxonomic position of Phaenomenella Fraussen & Hadorn, 2006 (Neogastropoda, Buccinoidea) with description of two new species
FIG. 5. — Radulae of Phaenomenella spp. A, B, Phaenomenella samadiae n. sp.; holotype, MNHN-IM-2013-61617 (shell on Fig. 4A-C) (A); MNHN-IM-2013-61674 (shell on Fig. 4 E, F) (B); C-F. Phaenomenella nicoi n. sp.; C, holotype, MNHN-IM-2013-61585 (shell on Fig. 7A-C); D, MNHN-IM-2013-59398 (shell on Fig. 7D); E, MNHN-IM-2013-61639 (shell on Fig. 7E); F, MNHN-IM-2013-61673 (shell on Fig. 7I). Scale bars: 100 μm.
Figure 8 from: Li G, Lwin YH, Yang B, Qin T, Phothisath P, Maung K-W, Quan R-C, Li S (2020) Taxonomic revision and phylogenetic position of the flying squirrel genus Biswamoyopterus (Mammalia, Rodentia, Sciuridae, Pteromyini) on the northern Indo-China peninsula. ZooKeys 939: 65-85. https://doi.org/10.3897/zookeys.939.31764
Figure 8 Bayesian Inference and Maximum Likelihood inference tree (GTR+G+I model) of flying squirrels based on combined mitochondrial and nuclear DNA data. Numbers on branches indicate posterior probability in BI and bootstrap support from ML.
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Allen Brain Atlas
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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.