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501 results for “phylogenetic taxonomy”
Data from: Phylogenetic taxonomy, a farewell to species, and a revision of Heteropodarke (Hesionidae, Polychaeta, Annelida)
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Data from: Taxonomy in the phylogenomic era: Species boundaries and phylogenetic relationships among North American ants of the Crematogaster scutellaris group
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Figure 165 from: Liebherr JK (2016) Cyphocoleus Chaudoir (Coleoptera, Carabidae, Odacanthini): descriptive taxonomy, phylogenetic relationships, and the Cenozoic history of New Caledonia. Deutsche Entomologische Zeitschrift 63(2): 211-270. https://doi.org/10.3897/dez.63.10241
Figure 165 - Distribution map of Cyphocoleus subulatus and Cyphocoleus iledespinsensis.
Fig. 10 in Phylogenetic relationships based on morphological data and taxonomy of the genus Salvadora Baird & Girard, 1853 (Reptilia, Colubridae)
Fig. 10. Locality records of Salvadora intermedia Hartweg, 1940.
Fig. 7 in Phylogenetic relationships based on morphological data and taxonomy of the genus Salvadora Baird & Girard, 1853 (Reptilia, Colubridae)
Fig. 7. Locality records of Salvadora grahamiae Baird & Girard, 1853.
Fig. 1 in Phylogenetic relationships based on morphological data and taxonomy of the genus Salvadora Baird & Girard, 1853 (Reptilia, Colubridae)
Fig. 1. Molecular phylogenetic tree modified from Hernández-Jiménez et al. (2019).
Fig. 19. A. Two supralabials reaching the eye. B in Phylogenetic relationships based on morphological data and taxonomy of the genus Salvadora Baird & Girard, 1853 (Reptilia, Colubridae)
Fig. 19. A. Two supralabials reaching the eye. B. Fewer than two supralabials reaching the eye.
Fig. 18. A. Loreal scale single. B in Phylogenetic relationships based on morphological data and taxonomy of the genus Salvadora Baird & Girard, 1853 (Reptilia, Colubridae)
Fig. 18. A. Loreal scale single. B. Loreal normally divided.
Figures 19–24 in Taxonomy in the phylogenomic era: species boundaries and phylogenetic relationships among North American ants of the Crematogaster scutellaris group (Formicidae: Hymenoptera)
Figures 19–24. Crematogaster workers, showing lateral view of body (A), full-face view of head (B) and dorsal view of body (C). 19, C. mutans worker (CASENT0922736); 20, C. colei (CASENT0922726); 21, C. detecta holotype (CASENT0863461); 22, C. larreae paratype (CASENT0005943); 23, C. depilis (CASENT0005668); 24, C. californica lectotype (CASENT0923319). Images courtesy of AntWeb (www.antweb.org); photographers Wade Lee (19, 20), Zachary Griebenow (21), April Nobile (22, 23), Michele Esposito (24).
Figure 2. Symmela brasiliensis Moser, 1919 in The genus Symmela Erichson, 1835 (Coleoptera, Scarabaeidae, Sericini): taxonomy and phylogenetic analysis
Figure 2. Symmela brasiliensis Moser, 1919, holotype ♂. (a) Habitus, dorsal view; (b) habitus, lateral view; (c) labels; (d) parameres, dorsal view; (e) aedeagus, lateral view. Scale bars: a, b = 1 mm; d, e = 0.5 mm.
FIGURE 5. Moenkhausia australis MZUSP 115631, 32.8 in Taxonomy of Moenkhausia australis Eigenmann, 1908 (Characiformes, Characidae) with a discussion on its phylogenetic relationships
FIGURE 5. Moenkhausia australis MZUSP 115631, 32.8 mm SL, Rio Guaporé, Mato Grosso, Brazil, color in life. Photo by F. Dagosta.
FIGURE 4 in Re-evaluation of the taxonomy of the Sri Lankan pigmy shrew Suncus fellowesgordoni (Soricidae: Crocidurinae) and its phylogenetic relationship with S. etruscus
FIGURE 4. Plots of factor scores on PC1 vs. PC2 of Suncus etruscus and Suncus fellowesgordoni for A: external body measurements and B: cranial measurements.
Figure 1 in Phylogenetic affinities and taxonomy of the Oligocene Diomedeoididae, and the basal divergences amongst extant procellariiform birds
Figure 1. Selected skeletal elements of Rupelornis definitus in comparison to extant Procellariiformes. A, B, R. definitus, proximal end of right mandible (IRSNB Av 109a) in dorsal (A) and mediodorsal (B) view. C, proximal mandible of Puffinus huttoni (Procellariidae). D, right quadrate of P. huttoni. E, R. definitus, thoracic vertebra (IRSNB Av 109b). F, thoracic vertebra of P. huttoni. G-I, R. definitus, sternum (IRSNB Av 104a) in ventral (G), dorsal (H), and craniodorsal (I) views. J, R. definitus, left coracoid (IRSNB Av 107b) in dorsal view. K–M, R. definitus, left coracoid (IRSNB Av 112a) in dorsal (K), medial (L), and ventral (M) views. N, R. definitus, left scapula (IRSNB Av 102f) in lateral view. Abbreviations: amq, attachment area of musculus adductor mandibulae ossis quadrati; cas, rostrally projecting, concave articular surface of condylus medialis; cic, crista intercotylaris; cmd, cotyla medialis; csc, cotyla scapularis; ctl, cotyla lateralis; cvx, convex dorsal surface of extremitas omalis, between cotyla scapularis and tip of the processus acrocoracoideus; fns, foramen nervi supracoracoidei; for, large foramen in cranial portion of ventral surface of corpus sterni; fos, fossa on corpus of thoracic vertebra; lbi, labrum internum; rdg, ridge between the proximal end of cotyla medialis and tuberculum pseudotemporale; spe, spina externa; tpt, tuberculum pseudotemporale. Fossil bones are coated with ammonium chloride. Scale bars = 10 mm.
Figure 21 in Phylogenetic interrelationships, taxonomy, and reductive evolution in the Neotropical electric fish genus Hypopygus (Teleostei, Ostariophysi, Gymnotiformes)
Figure 21. Hypopygus isbruckeri, holotype, head, and lateral and dorsal views of body, UF 148539, 90 mm, immature; Venezuela, Amazonas, stream at Caño Magua, approximately 1 km from Magua, 13 km from San Fernando de Atabapo, 3°58′50.22″N, 67°36′28.08″W. Scale bars = 5 mm. Note. Scales are missing along mid section of flank because of specimen damage.
Figure 8 in Phylogenetic interrelationships, taxonomy, and reductive evolution in the Neotropical electric fish genus Hypopygus (Teleostei, Ostariophysi, Gymnotiformes)
Figure 8. Posterior portion of endopterygoid and quadrate, metapterygoid, symplectic, and adjoining bones in Steatogenys duidae MCP 31952 (WC14.240899), immature, 122 mm; left side, lateral view, anterior to left; larger stippling represents cartilage.
Figure 5 in Phylogenetic interrelationships, taxonomy, and reductive evolution in the Neotropical electric fish genus Hypopygus (Teleostei, Ostariophysi, Gymnotiformes)
Figure 5. Maxilla of: A, Steatogenys duidae MCP 31952 (WC14.240899), immature, 122 mm; anterior to left, inverted figure. B, Hypopygus minissimus UF 148533 (WC41.120304), female, 43 mm; left side, lateral view; larger stippling represents cartilage, anterior to left.
Figure 28 in Phylogenetic interrelationships, taxonomy, and reductive evolution in the Neotropical electric fish genus Hypopygus (Teleostei, Ostariophysi, Gymnotiformes)
Figure 28. Map of northern South America showing collection records of Hypopygus neblinae (circles), Hypopygus nijsseni (squares), and Hypopygus ortegai (triangles). Some symbols represent more than one nearby collecting locality.
FIGURE 11 in Revising the taxonomy of Darevskia valentini (Boettger, 1892) and Darevskia rudis (Bedriaga, 1886) (Squamata, Lacertidae): a Morpho-Phylogenetic integrated study in a complex Anatolian scenario
FIGURE 11. Escalation of the calf area in the rudis and valentini complexes. Scale size (great, medium, small) and keeling development (weak keeling, medium keeling, strong keeling). The new nomenclature proposed in the text is used. D. r. lantzicyreni comb. nov. (medium scale size, medium keeling); D. josefschmidtleri sp. nov. (small scale size, weak keeling); D. s. spitzenbergerae stat. et comb. nov. (small scale size, weak keeling); D. s. wernermayeri ssp. nov. (medium scale size, weak keeling); D. valentini (medium scale size, weak keeling); D. b. bithynica (small scale size, weak keeling); D. b. tristis (medium scale size, weak keeling); D. o. bischoffi comb. nov. (great scale size, strongly keeling); D. o. obscura stat. et comb. nov. (great scale size, strongly keeling); D. o. macromaculata comb. nov. (great scale size, strongly keeling); D. r. bolkardaghica (medium scale size, medium keeling); D. rudis (medium scale size, medium keeling); D. mirabilis stat. nov. (medium scale size, medium keeling.
Figure 5 in Taxonomy and molecular phylogenetic position of new species and new records of Coelosphaeridae (Demospongiae: Poecilosclerida) from the Mexican Pacific
Figure 5. SEM images of spicules of Lissodendoryx (Anomodoryx) incrustans sp. nov. A, Tylotes; B, tylotes head detail; C, sigmas; D, arcuate isochelae. Table 3. Comparative data for the dimensions of the spicules (in µm) of Lissodendoryx (Anomodoryx) incrustans sp. nov., shass length × width are given for megascleres and total length for arcuate isochelae and sigmas. Values in parentheses are means
Figure 11 in Taxonomy and molecular phylogenetic position of new species and new records of Coelosphaeridae (Demospongiae: Poecilosclerida) from the Mexican Pacific
Figure 11. Phylogenetic reconstruction of the COI mtDNA fragment. The tree presented was obtained by BI and includes ML values. The number at each node represents the PP in % from BI, followed by the BP from ML; a (–) indicates that a particular analysis supported the node at less than 50%. The GenBank accession numbers are given asser each taxon name.
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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)
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.