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17,475 results for “taxonomic revision”
Figures 1–3 in Taxonomic revision of Eunota togata (LaFerté-Sénectère, 1841) (Coleoptera: Cicindelidae) in North America with a new subspecies from western Texas and New Mexico, United States
Figures 1–3. Eunota togata male aedeagus extended in left lateral view from three geographical limits. 1) E. t. togata, Los Olmos, Kleburg Co., Texas. 2) E. t. leucophasma, new subspecies, Salt Flat, Hudspeth Co., Texas. 3) E. t. latilabris, Lincoln, Lancaster Co., Nebraska. Scale line = 0.5 mm.
Figure 50 in Taxonomic revision of Eunota togata (LaFerté-Sénectère, 1841) (Coleoptera: Cicindelidae) in North America with a new subspecies from western Texas and New Mexico, United States
Figure 50. Eunota togata geographical distribution in the United States from study specimens. = E. t. togata;
Figures 30–35 in Taxonomic revision of Eunota togata (LaFerté-Sénectère, 1841) (Coleoptera: Cicindelidae) in North America with a new subspecies from western Texas and New Mexico, United States
Figures 30–35. Eunota togata subspecies female elytral maculation patterns from coastal Texas, southeast Nebraska, and northcentral Kansas. E. t. togata from Cameron Co., Texas. 30) Adult dorsal habitus. 31) Adult elytra. E. t. latilabris from Lancaster Co., Nebraska. 32) Adult dorsal habitus. 33) Adult elytra. E. t. globicollis from Stafford Co., Kansas. 34) Adult dorsal habitus. 35) Adult elytra. Scale lines = 2 mm.
Fig. 7. A–D. Elmomorphus brevicornis Sharp, 1888 in Taxonomic revision of the genus Elmomorphus Sharp, 1888 I. Japanese and Korean species (Coleoptera: Dryopidae)
Fig. 7. A–D. Elmomorphus brevicornis Sharp, 1888, ♂ (JKCB). A. Foreclaws. B. Dorsal plastron scales. C. Ventral plastron scales. D. Detail on ventrite 5. E. Elmomorphus amamiensis Nomura, 1959, detail on male ventrite 5 (JKCB).
Fig. 3. Ordination ofElmomorphus brevicornis Sharp, 1888 in Taxonomic revision of the genus Elmomorphus Sharp, 1888 I. Japanese and Korean species (Coleoptera: Dryopidae)
Fig. 3. Ordination ofElmomorphus brevicornis Sharp, 1888 (black circles) andElmomorphus amamiensis Nomura, 1959 (red squares) along PC1 and PC2 axis. A. Males. B. Females.
Fig. 10 in Taxonomic revision of the genus Elmomorphus Sharp, 1888 I. Japanese and Korean species (Coleoptera: Dryopidae)
Fig. 10. Map showing records of A. Elmomorphus brevicornis Sharp, 1888. B. Elmomorphus amamiensis Nomura, 1959.
Fig. 9. Female terminalia. A–B, D. Elmomorphus brevicornis Sharp, 1888 in Taxonomic revision of the genus Elmomorphus Sharp, 1888 I. Japanese and Korean species (Coleoptera: Dryopidae)
Fig. 9. Female terminalia. A–B, D. Elmomorphus brevicornis Sharp, 1888 (JKCB). A. Sternite VIII. B. Ovipositor. C, E. Elmomorphus amamiensis Nomura, 1959 (JKCB). C. Ovipositor. D. Bursa copulatrix. E. Bursa copulatrix. Scale bars = 0.1 mm.
Fig. 2 in Taxonomic revision of the genus Elmomorphus Sharp, 1888 I. Japanese and Korean species (Coleoptera: Dryopidae)
Fig. 2.TCS haplotype network of COI sequences of Elmomorphus brevicornis Sharp, 1888,Elmomorphus amamiensis Nomura, 1959 and two outgroup taxa. Numbers along edges represent mutational steps. For specimens belonging to individual haplotype groups, see Fig. 1A.
Fig. 5. Habitus. A. Elmomorphus brevicornis Sharp, 1888 in Taxonomic revision of the genus Elmomorphus Sharp, 1888 I. Japanese and Korean species (Coleoptera: Dryopidae)
Fig. 5. Habitus. A. Elmomorphus brevicornis Sharp, 1888, ♂, length (anterior margin of clypeus to elytral apex): 3.7 mm (JKCB). B. Elmomorphus amamiensis Nomura, 1959, ♂, length (anterior margin of clypeus to elytral apex): 3.4 mm (JKCB).
Fig. 4. Elmomorphus brevicornis Sharp, 1888. A–B in Taxonomic revision of the genus Elmomorphus Sharp, 1888 I. Japanese and Korean species (Coleoptera: Dryopidae)
Fig. 4. Elmomorphus brevicornis Sharp, 1888. A–B. Syntype, ♀ (NHMUK). A. Specimen glued on the original card with Sharp's handwriting. B. Labels. C. Syntype, ♂ (NHMUK), labels (the last label not depicted).
Fig. 8. Male terminalia. A–B, E–F. Elmomorphus brevicornis Sharp, 1888 in Taxonomic revision of the genus Elmomorphus Sharp, 1888 I. Japanese and Korean species (Coleoptera: Dryopidae)
Fig. 8. Male terminalia. A–B, E–F. Elmomorphus brevicornis Sharp, 1888 (JKCB). A. Aedeagus, ventral aspect. B. Ibidem, lateral aspect. C–D. Elmomorphus amamiensis Nomura, 1959 (JKCB). C. Aedeagus, ventral aspect. D. Ibidem, lateral aspect. E. Sternite VIII. F. Sternite IX. Scale bar = 0.1 mm.
Fig. 6 in Taxonomic revision of the genus Elmomorphus Sharp, 1888 I. Japanese and Korean species (Coleoptera: Dryopidae)
Fig. 6. Details of the male head and ventral portions. A, C, E. Elmomorphus brevicornis Sharp, 1888 (JKCB). B, D, F. Elmomorphus amamiensis Nomura, 1959 (JKCB). A–B. Head. C–D. Ventral view of the prothorax. E–F. Ventral view of the metathorax. Arrows show the position of setal clusters.
Fig. 1 in Taxonomic revision of the genus Elmomorphus Sharp, 1888 I. Japanese and Korean species (Coleoptera: Dryopidae)
Fig. 1. Phylogenetic relationships and genetic distances between Japanese Elmomorphus species. Pomatinus substriatus (Müller, 1806) and Dryops auriculatus (Geoffroy, 1785) served as outgroup taxa in all analyses. A. Phylogenetic tree based on the mitochondrial COI gene. Bootstrap values for maximum likelihood analyses performed in IQTrees and distance NJ analyses performed in MEGA-X as well as posterior probabilities for Bayesian interference performed in MrBayes were mapped onto the best scoring IQTree. The scale bar denotes four substitutions per 100 nucleotide positions. B. Histogram displaying intraspecies, interspecies, and intrageneric distances of the taxa shown in (A). C. Multidimensional scaling based on p-distances of the taxa shown in (A).
Figure 168 in Taxonomic revision of the Temnothorax salvini clade (Hymenoptera: Formicidae), with a key to the clades of New World Temnothorax
Figure 168 Morphological variability in Temnothorax suditivus workers. (A–C) Estelí, Nicaragua (CASENT0619368). (A) Full-face view. (B) Profile view. (C) Dorsal view. (D–F) Jalisco, Mexico (CASENT0758299). (D) Full-face view. (E) Profile view. (F) Dorsal view. (G–I) Grand Cayman, Cayman Islands (CASENT0868474). (G) Full-face view. (H) Profile view. (I) Dorsal view. Scale bars 0.2 mm. Full-size DOI: 10.7717/peerj.11514/fig-168
Figure 170 in Taxonomic revision of the Temnothorax salvini clade (Hymenoptera: Formicidae), with a key to the clades of New World Temnothorax
Figure 170 Temnothorax terrigena. (A–C) Lectotype worker (MCZENT00522078). (A) Full-face view. (B) Profile view. (C) Dorsal view. (D–F) Paralectotype gyne (MCZENT00522078). (D) Full-face view. (E) Profile view. (F) Dorsal view. (G) Geographical and elevational distribution of specimens examined. Type locality is represented by a triangle, non-type localities are represented by circles. Bounding box in inset map shows location of main map. Scale bars 0.2 mm. Full-size DOI: 10.7717/peerj.11514/fig-170
Figure 169 in Taxonomic revision of the Temnothorax salvini clade (Hymenoptera: Formicidae), with a key to the clades of New World Temnothorax
Figure 169 Temnothorax tenuisculptus. (A–C) Holotype worker (MCZENT00032435). (A) Full-face view. (B) Profile view. (C) Dorsal view. (D–G) Gyne (CASENT0756078). (D) Full-face view. (E) Profile view. (F) Dorsal view. (G) Wings. (H) Geographical and elevational distribution of specimens examined. Type locality is represented by a triangle, non-type localities are represented by circles. Bounding box in inset map shows location of main map. Scale bars 0.2 mm. Full-size DOI: 10.7717/peerj.11514/fig-169
Figure 167 in Taxonomic revision of the Temnothorax salvini clade (Hymenoptera: Formicidae), with a key to the clades of New World Temnothorax
Figure 167 Temnothorax suditivus. (A–C) Worker (CASENT0758340). (A) Full-face view. (B) Profile view. (C) Dorsal view. (D–G) Gyne (CASENT0758338). (D) Full-face view. (E) Profile view. (F) Dorsal view. (G) Wings. (H–K) Male (CASENT0915978). (H) Full-face view. (I) Profile view. (J) Dorsal view. (K) Wings. Scale bars 0.2 mm. Full-size DOI: 10.7717/peerj.11514/fig-167
Figure 161 in Taxonomic revision of the Temnothorax salvini clade (Hymenoptera: Formicidae), with a key to the clades of New World Temnothorax
Figure 161 Temnothorax parvidentatus sp. nov. (A-C) Holotype worker (CASENT0756087). (A) Full-face view. (B) Profile view. (C) Dorsal view. (D–G) Paratype gyne (CASENT0612665). (D) Full-face view. (E) Profile view. (F) Wings. (G) Dorsal view. Scale bars 0.2 mm. Full-size DOI: 10.7717/peerj.11514/fig-161
Figure 163 in Taxonomic revision of the Temnothorax salvini clade (Hymenoptera: Formicidae), with a key to the clades of New World Temnothorax
Figure 163 Temnothorax salvini. (A–C) Worker (CASENT0756074). (A) Full-face view. (B) Profile view. (C) Dorsal view. (D–F) Gyne (JTLC000001501). (D) Full-face view. (E) Profile view. (F) Dorsal view. (G–L) Dark form worker, Cartago, Costa Rica (LACMENT323467). (G) Full-face view. (H) Profile view. (I) Dorsal view. (J–L) Dark form gyne, Chiriquí, Panama (CASENT0740647). (J) Full-face view. (K) Profile view. (L) Dorsal view. Scale bars 0.2 mm. Full-size DOI: 10.7717/peerj.11514/fig-163
Figure 154 in Taxonomic revision of the Temnothorax salvini clade (Hymenoptera: Formicidae), with a key to the clades of New World Temnothorax
Figure 154 Temnothorax aztecoides sp. nov. (A–C) Holotype worker (CASENT0758791). (A) Full-face view. (B) Profile view. (C) Dorsal view. (D–F) Paratype gyne (CASENT0758789). (D) Full-face view. (E) Profile view. (F) Dorsal view. (G) Wings. (H–K) Paratype male (CASENT0758790). (H) Full-face view. (I) Profile view. (J) Dorsal view. (K) Wings. Scale bars 0.2 mm. Full-size DOI: 10.7717/peerj.11514/fig-154
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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.