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17,475 results for “taxonomic revision”
FIGURE 13 in Empria longicornis species group: taxonomic revision with notes on phylogeny and ecology (Hymenoptera, Tenthredinidae)
FIGURE 13. GM analyses (25 landmarks) of valvula 1 and the relative length of flagellum of 5 species. First principal component (PC1) is on the x-axis, relative length of flagellum (sum of lengths of flagellomeres 1–4 divided by head breadth) on the yaxis. Specimens discussed in the text, are indicated by their ID numbers.
FIGURES 7–8. Empria longicornis Thomson, 1871 in Empria longicornis species group: taxonomic revision with notes on phylogeny and ecology (Hymenoptera, Tenthredinidae)
FIGURES 7–8. Empria longicornis Thomson, 1871: 7, head in lateral view (TL = temple length); 8, frontal crest in dorsal view.
FIGURES 53–58 in Empria longicornis species group: taxonomic revision with notes on phylogeny and ecology (Hymenoptera, Tenthredinidae)
FIGURES 53–58. Penis valves of Empria longicornis group: 53, E. alpina; 54, E. mongolica; 55, E. loktini (paratype); 56, E. alector (specimen h-32); 57, E. tridens (specimen 08-12); 58, E. minuta.
FIGURE 18 in Empria longicornis species group: taxonomic revision with notes on phylogeny and ecology (Hymenoptera, Tenthredinidae)
FIGURE 18. Barcoding analysis of manually aligned ITS sequences (incomplete sequences were excluded; alignment length 1348 bp). NJ tree based on Kimura two-parameter distances, pairwise deletion. Bootstrap proportions below 50% are not shown. Empria immersa group was used to root the tree. Barcoding analysis using the BAli-Phy MAP alignment (BAli-Phy analysis using E. immersa group as the only outgroup) gave nearly identical topology, the differences were not significantly (i.e. bootstrap proportions below 50%) supported. AUT, Austria; BEL, Belgium; CHE, Switzerland; DEU, Germany; EST, Estonia; FRA, France; ITA, Italy; JPN, Japan; NOR, Norway; RUS, Russia; SVK, Slovakia. al, E. alector; alp, E. alpina; bas, E. basalis; fletch, E. fletcheri; immersa, E. immersa; jap, E. japonica; lokt, E. loktini; long, E. longicornis; trid, E. tridens.
FIGURE 12 in Empria longicornis species group: taxonomic revision with notes on phylogeny and ecology (Hymenoptera, Tenthredinidae)
FIGURE 12. GM analyses (25 landmarks) of valvula 1 and the relative length of flagellum of 5 species. First principal component (PC1) is on the x-axis, relative length of flagellum (sum of lengths of individual flagellomeres divided by sum of breadths) on the y-axis. Specimens discussed in the text, are indicated by their ID numbers.
FIGURES 43–46 in Empria longicornis species group: taxonomic revision with notes on phylogeny and ecology (Hymenoptera, Tenthredinidae)
FIGURES 43–46. Lancets (valvulae 1) of Empria longicornis group: 43, E. alector; 44, E. basalis; 45, E. tridens (specimen h- 02a); 46, E. longicornis (specimen h-22a).
FIGURE 17 in Empria longicornis species group: taxonomic revision with notes on phylogeny and ecology (Hymenoptera, Tenthredinidae)
FIGURE 17. Phylogeny of about a quarter of ITS1 reconstructed using BAli-Phy (GTR+4Γ substitution model). Duplicate sequences were removed prior to analyses and are not shown. Clades with posterior probabilities less than 0.9 were collapsed. Empria immersa group was used to root the tree. BEL, Belgium; EST, Estonia; ITA, Italy; JPN, Japan; RUS, Russia; SWE, Sweden. al, E. alector; alp, E. alpina; bas, E. basalis; fletch, E. fletcheri; jap, E. japonica; lokt, E. loktini; long, E. longicornis; trid, E. tridens.
FIGURES 40–42 in Empria longicornis species group: taxonomic revision with notes on phylogeny and ecology (Hymenoptera, Tenthredinidae)
FIGURES 40–42. Lancets (valvulae 1) of Empria longicornis group: 40, E. japonica; 41, E. longicornis; 42, E. tridens.
FIGURES 1–2. Empria japonica n in Empria longicornis species group: taxonomic revision with notes on phylogeny and ecology (Hymenoptera, Tenthredinidae)
FIGURES 1–2. Empria japonica n. sp.: 1, head in anterior view (A, minimal distance between toruli, B, minimal ventro-ocular distance, C, maximal height of the compound eye); 2, head in dorsal view (A, head breadth, B, minimal distance between the compound eye and the occipital carina = head length behind the compound eye = head length, C, maximal length of the compound eye).
FIGURE 8 in Taxonomic revision of one of the Old World's smallest frogs, with description of a new Bornean Microhyla (Amphibia, Microhylidae)
FIGURE 8. Larval Microhyla malang sp. nov. from Gunung Serapi, Sarawak (A–C: stage 32, total length = 13.9 mm) and Tawau, Sabah (D–F: stage 41, total length = 16.4 mm, from photos taken by T. Shimada); dorsal (A, D), lateral (B, E), and ventral views (C, F). Scale bar = 5 mm.
FIGURE 3 in Taxonomic revision of one of the Old World's smallest frogs, with description of a new Bornean Microhyla (Amphibia, Microhylidae)
FIGURE 3. Bayesian tree of a 1735 bp sequence of mitochondrial 12S and 16S rRNA for samples of Microhyla (for the sample details, see Table 1). Numbers above or below branches represent bootstrap supports for MP and ML inferences, and Bayesian posterior probability (MP-BS/ML-BS/BPP).
FIGURE 7 in Taxonomic revision of one of the Old World's smallest frogs, with description of a new Bornean Microhyla (Amphibia, Microhylidae)
FIGURE 7. Dorsolateral view of head of Microhyla borneensis (A–B, males [A: KUHE 53938; B: KUHE 10692]: C–F, females [C: holotype, BM 1947. 2.11.82; D: KUHE 53020; E: KUHE 12067; F: KUHE 53165] and Microhyla malang sp. nov. (G–H, males [G: holotype, KUHE 17245; H: KUHE 17217]; I, female [KUHE 44228]).
FIGURE 5 in Taxonomic revision of one of the Old World's smallest frogs, with description of a new Bornean Microhyla (Amphibia, Microhylidae)
FIGURE 5. Ventral views of right hands (A, C) and feet (B, D) of syntopic Microhyla borneensis (A, B: KUHE 53814) and Microhyla malang sp. nov. (C, D: KUHE 53018) from Gunung Serapi, Sarawak. Scale bar = 5 mm.
FIGURE 2 in Taxonomic revision of one of the Old World's smallest frogs, with description of a new Bornean Microhyla (Amphibia, Microhylidae)
FIGURE 2. Female holotype of Microhyla borneensis (BM 1947. 2.11.82); dorsal (A), ventral (B) and lateral views (C), and ventral view of left foot (D). Scale bar in (A) and (B) = 10 mm.
FIGURE 4 in Taxonomic revision of one of the Old World's smallest frogs, with description of a new Bornean Microhyla (Amphibia, Microhylidae)
FIGURE 4. Dorsal (A) and ventral (C) views of male holotype of Microhyla malang sp. nov. (KUHE 17245) and dorsal view (B) of syntopic male Microhyla borneensis (KUHE 53814) from Gunung Serapi, Sarawak. Scale bar = 10 mm.
FIGURE 1 in Taxonomic revision of one of the Old World's smallest frogs, with description of a new Bornean Microhyla (Amphibia, Microhylidae)
FIGURE 1. Ventral views of feet of the large form (A-D: males from Gunung Serapi, Sarawak [A: KUHE 17217; B: KUHE 17245; C: KUHE 17658; D: KUHE 53176], E: female from Poring, Sabah [KUHE 44228]) and the small form of Microhyla (F-J: males [F: KUHE 10693; G: KUHE 10695; H: KUHE 10743; I: KUHE 53241; J: KUHE 53938]; K-O: females [K: KUHE 12067; L: KUHE 26419; M: KUHE 53020; N: KUHE 53165; O: KUHE 53582], all from Gunung Serapi, Sarawak). Not to scale.
FIGURE 6 in Taxonomic revision of one of the Old World's smallest frogs, with description of a new Bornean Microhyla (Amphibia, Microhylidae)
FIGURE 6. Dorsolateral view of a male paratype of Microhyla malang sp. nov. (KUHE 53018) from Gunung Serapi, Sarawak.
FIGURE 9 in Multi-locus phylogeny and taxonomic revision of Uperoleia toadlets (Anura: Myobatrachidae) from the western arid zone of Australia, with a description of a new species
FIGURE 9. Photos in life (dorsolateral and dorsal views) and after preservation (ventral view) of U. saxatilis sp. nov. holotype (WAM R162877) from Turee Creek, Western Australia. Photos by P. Doughty.
FIGURE 5 in Multi-locus phylogeny and taxonomic revision of Uperoleia toadlets (Anura: Myobatrachidae) from the western arid zone of Australia, with a description of a new species
FIGURE 5. Plot showing results of Principle Components Analysis (top) and Discriminant Function Analysis (bottom) on body proportion variables only, see text for details. Uperoleia micromeles is the most distinct and U. russelli and U. saxatilis sp. nov. are indistinguishable based on these characters, but each is distinct based on genetic, call and other morphological characters.
FIGURE 6 in Multi-locus phylogeny and taxonomic revision of Uperoleia toadlets (Anura: Myobatrachidae) from the western arid zone of Australia, with a description of a new species
FIGURE 6. Oscillographs and spectrograms of (a) U. glandulosa, U. russelli (b) long call and (c) short call, U. talpa (d) long call and (e) short call, and U. saxatilis sp. nov. (f) long call and (g) short call.
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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.