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446 results for “taxonomic position”
FIGURES 2–9 in The Neotropical genus Ginungagapus gen. nov. (Hesperiidae, Hesperiinae, Moncini): phylogenetic position and taxonomic review
FIGURES 2–9. Dorsal and ventral views of males (left) and females (right) of species of Ginungagapus gen. nov.: 2. Ginungagapus schmithi (Bell, 1930) comb nov. 3. Ginungagapus awarreni Carneiro, Mielke & Casagrande sp. nov. (holotype and alotype); 4. Ginungagapus bocus (Bell, 1947) comb nov.; 5. Ginungagapus tangerinii Carneiro, Mielke & Casagrande (holotype and alotype) sp. nov.; 6. Ginungagapus ranesus (Schaus, 1902) comb nov.; 7. Ginungagapus fiedleri Carneiro, Mielke & Casagrande sp. nov. (paratypes). 8. Ginungagapus rogan (Evans, 1955) comb nov. (male only); 9. Ginungagapus brasilia Carneiro, Mielke & Casagrande sp. nov. (female only, holotype).
FIGURE 1 in The Neotropical genus Ginungagapus gen. nov. (Hesperiidae, Hesperiinae, Moncini): phylogenetic position and taxonomic review
FIGURE 1. Pattern of ventral wing surface of: A: Ginungagapus rogan (Evans, 1955); and B: Ginungagapus schmithi (Schaus, 1902).
FIGURES 37–40 in Description of two new species of Pheles Herrich – Schäffer, [1853] and notes on the taxonomic position of two species hitherto included in the genus (Riodinidae: Riodininae)
FIGURES 37–40. Female genitalia of some species belonging to Pheles Herrich–Schäffer, [1853] and Melanis Hübner, [1819]. 37. Pheles plaumanni sp. nov., paratype (DZ 21.017). 38. Pheles atricolor atricolor. 39. Pheles obscura sp. nov., holotype. 40. Melanis caatingensis comb. nov., paratype (DZ 28.358).
FIGURES 33–36 in Description of two new species of Pheles Herrich – Schäffer, [1853] and notes on the taxonomic position of two species hitherto included in the genus (Riodinidae: Riodininae)
FIGURES 33–36. Male genitalia of some species belonging to Pheles Herrich–Schäffer, [1853], Pachythone Bates, 1868 and Melanis Hübner, [1819]. 33. Pheles plaumanni sp. nov., paratype (DZ 21.010). 34. Pheles atricolor atricolor. 35. Pachythone bicolor comb. nov. 36. Melanis caatingensis comb. nov., paratype (DZ 21.059).
FIGURES 1–20 in Description of two new species of Pheles Herrich – Schäffer, [1853] and notes on the taxonomic position of two species hitherto included in the genus (Riodinidae: Riodininae)
FIGURES 1–20. Species belonging to Pheles Herrich–Schäffer, [1853], Pachythone Bates, 1868 and Melanis Hübner, [1819], dorsal and ventral. 1–4. Pheles plaumanni sp. nov. 1–2. Male holotype, Nova Teutônia, Seara, Santa Catarina, Brazil (DZ 28.363). 3–4. Female allotype, Nova Teutônia, Seara, Santa Catarina, Brazil (DZ 28.344). 5–12. Pheles atricolor atricolor. 5–8. Typical phenotype pattern from Atlantic ombrophilous dense forest and Araucaria moist forest. 5–6. Male, Joinville, Santa Catarina, Brazil (DZ 28.294). 7–8. Female, Cedro, Antonina, Paraná, Brazil (DZ 28.312). 9–12. Phenotype pattern from Cerrado and Atlantic semideciduous forest. 9–10. Male, Brasília, Distrito Federal, Brazil (DZ 26.412). 11–12. Female, Fazenda Água Limpa, Brasília, Distrito Federal, Brazil (DZ 28.316). 13–14. Pheles obscura sp. nov. female holotype, Piên, Paraná, Brazil (DZ 30.136). 15–16. Pachythone bicolor comb. nov. male, Joinville, Santa Catarina, Brazil (DZ 28.362). 17–20. Melanis caatingensis comb. nov. 17–18. Male paratype, Brejo Santo, Ceará, Brazil (DZ 31.899). 19–20. Female paratype, Brejo Santo, Ceará, Brazil (DZ 31.938).
FIGURES 21–32 in Description of two new species of Pheles Herrich – Schäffer, [1853] and notes on the taxonomic position of two species hitherto included in the genus (Riodinidae: Riodininae)
FIGURES 21–32. Male head of some species belonging to Pheles Herrich–Schäffer, [1853], Pachythone Bates, 1868 and Melanis Hübner, [1819], frontal and lateral. 21–22. Pheles plaumanni sp. nov. 23–26. Pheles atricolor atricolor. 23–24. Typical phenotype pattern from Atlantic ombrophilous dense forest and Araucaria moist forest. 25–26. Phenotype pattern from Cerrado and Atlantic semideciduous forest. 27–28. Pheles obscura sp. nov. 29–30. Pachythone bicolor comb. nov. 31–32. Melanis caatingensis comb. nov.
FIGURES 13–17 in Chaetotaxy of Neotropical Cyphoderus caetetus sp. nov. with comments on the taxonomic position of Cyphoderinae within Paronellidae (Collembola, Entomobryoidea)
FIGURES 13–17. Cyphoderus caetetus sp. nov.: 13, coxa; 14, trochanter; 15, amplified metatrochanteral organ; 16, femur; 17, tibiotarsal apex (column A, prothoracic leg; column B, mesothoracic leg; column C, metathoracic leg).
FIGURES 1–2 in Chaetotaxy of Neotropical Cyphoderus caetetus sp. nov. with comments on the taxonomic position of Cyphoderinae within Paronellidae (Collembola, Entomobryoidea)
FIGURES 1–2. Cyphoderus caetetus sp. nov.: 1, setae and symbols named and used in chaetotaxic illustrations (a—tenent hair, b—feathered seta, c—ciliated seta, d—smooth seta, e—bothriotrix, f—bristle-like sensillum, g—sense rod, h—microseta, i—pseudopore, j—fan-shaped seta, k—macroseta, l—mesoseta, m—,microseta); 2, habitus.
FIGURES 3–8 in Chaetotaxy of Neotropical Cyphoderus caetetus sp. nov. with comments on the taxonomic position of Cyphoderinae within Paronellidae (Collembola, Entomobryoidea)
FIGURES 3–8. Cyphoderus caetetus sp. nov.: 3, fourth antennal segment; 4, third antennal segment; 5, apical sensory organ and sensilla of third antennal segment; 6, second antennal segment; 7, second antennal segment, apical sensilla; 8, first antennal segment. Antennal segments, dorsal view; ventral setae—grayed).
FIGURES 9‒11 in Chaetotaxy of Neotropical Cyphoderus caetetus sp. nov. with comments on the taxonomic position of Cyphoderinae within Paronellidae (Collembola, Entomobryoidea)
FIGURES 9‒11. Cyphoderus caetetus sp. nov.: 9, cephalic chaetotaxy; 10, clypeo-labral chaetotaxy; 11, labial triangle chaetotaxy.
FIGURE 7 in Phanoceroides Hinton, 1939: description of new species, morphology of larvae, and revised taxonomic position of the genus (Coleoptera: Elmidae) based on molecular evidence
FIGURE 7. Maximum likelihood tree. Blue lineage—Hypsilara, green lineage—Phanoceroides. Disersus, Pseudodisersus, Hexanchorus, Phanocerus—Larainae genera. Stegoelmis, Hexacylloepus, Microcylloepus, Gyrelmis, Austrelmis, Heterelmis— Elminae genera. Numbers above branches represent bootstrap support.
FIGURE 3 in Phanoceroides Hinton, 1939: description of new species, morphology of larvae, and revised taxonomic position of the genus (Coleoptera: Elmidae) based on molecular evidence
FIGURE 3. SEM photos of Phanoceroides fernandesi sp. n.: a) left antenna; b–c) antennal club; d) pronotum; e) prosternum and mesoventrite; f) scutellum and elytral setae; g) punctures of metaventrite; h) protarsus; i) same, detail of claws and empodium; j) cleaning fringe of protibia; k) femur; l) abdomen, ventral view; m) abdomen, dorsal view; n–o) plastron setae on abdominal segments.
FIGURE 6 in Phanoceroides Hinton, 1939: description of new species, morphology of larvae, and revised taxonomic position of the genus (Coleoptera: Elmidae) based on molecular evidence
FIGURE 6. SEM photos of larvae of Phanoceroides: a–b) habitus, dorsal view; c–d) antenna; e–f) head and anterior part of prothorax; g) labrum; h) maxillae and labium; i) mandible; j) prothorax, ventral view; k) meso-, metathorax and abdomen, ventral view; l–m) ventral operculum; n–p) sensilla of ventral side; q) bifurcated sensilla of dorsal side; r) scales between sclerites, dorsal side. (P. aquaticus: a, c, e, g, h, i, l, q, n, p; P. fernandesi sp. n.: b, d, f, j, k, m, o, r).
FIGURE 5 in Phanoceroides Hinton, 1939: description of new species, morphology of larvae, and revised taxonomic position of the genus (Coleoptera: Elmidae) based on molecular evidence
FIGURE 5. Type locality of Phanoceroides fernandesi sp. n., Caño Coromoto above Tobogan de la Selva camp site, near Puerto Ayacucho, Amazonas state, Venezuela.
FIGURE 4 in Phanoceroides Hinton, 1939: description of new species, morphology of larvae, and revised taxonomic position of the genus (Coleoptera: Elmidae) based on molecular evidence
FIGURE 4. Phanoceroides fernandesi sp. n.: a) aedeagus dorsal view; b) aedeagus, ventral view; c) ovipositor; d) SEM photo of apex of penis; e) SEM photo of apex of ovipositor. Scale (a–c): 0.1mm.
FIGURE 2 in Phanoceroides Hinton, 1939: description of new species, morphology of larvae, and revised taxonomic position of the genus (Coleoptera: Elmidae) based on molecular evidence
FIGURE 2. SEM photos of Phanoceroides fernandesi sp. n.: a) head dorso-lateral view; b) upper margin of right eye; c) labrum; d) right maxilla, dorsal view; e) left maxilla, ventral view; f) galea, ventral view; g) galea, dorsal view; h) left mandible, dorsal view; i) prostheca; j) left mandible, inner basal angle; k) mandible, ventral condyle; l) labium; m) lateral sensilla of second segment of labial palp; n) ventral sensilla of second segment of labial palp; o–p) terminal segment of labial palp with sensory field.
FIGURES 1–8 in New taxonomic position of several Macrobiotus species (Eutardigrada: Macrobiotidae)
FIGURES 1–8. Macrobiotus subintermedius (syntype) (Figs. 1–4): 1—bucco-pharyngeal apparatus in lateral view (Phase Contrast = PhC); 2—pores on the caudal cuticle (arrows) (Differential Interference Contrast); 3—pores on the anterior cuticle (arrows) (PhC); 4—egg (PhC). Macrobiotus pustulatus (holotype) (Figs. 5–8; PhC): 5—bucco-pharyngeal apparatus in ventral view; 6—claws of the first pair of legs; 7—pores on the dorsal posterior cuticle; 8—pores on the ventral posterior cuticle. Scale bars: 1, 5, 6 = 5 µm; 2, 3, 4, 7, 8 = 10 µm.
FIGURES 9–18 in New taxonomic position of several Macrobiotus species (Eutardigrada: Macrobiotidae)
FIGURES 9–18. Macrobiotus lazzaroi (Figs. 9–12; PhC): 9—bucco-pharyngeal apparatus in ventral view (paratype); 10—claws of the second pair of legs (holotype); 11—pores on dorsal cuticle (holotype); 12—egg. Macrobiotus spertii (holotype) (Figs. 13–18; PhC): 13—bucco-pharyngeal apparatus in ventral view; 14—macroplacoids within the pharynx; 15—claws of the first pair of legs (arrow = accessory points on main branch); 16—egg; 17—egg processes of another egg; 18—egg processes of a further egg. Scale bars: 9, 10, 15, 17, 18 = 5 µm; 11–14, 16 = 10 µm.
FIGURE 7 in Taxonomic position of Eothenomys wardi (Arvicolinae: Cricetidae) based on morphological and molecular analyses with a detailed description of the species
FIGURE 7. Bayesian inference tree (50% majority rule consensus tree) resulting from analyses of the mitochondrial gene encoding cytochrome oxidase subunit 1. Numbers represent nodal support inferred from Bayesian posterior probabilities, ML bootstrap, MP bootstrap, respectively. Symbol * indicates a MP bootstrap value <50%.
FIGURE 4 in Taxonomic position of Eothenomys wardi (Arvicolinae: Cricetidae) based on morphological and molecular analyses with a detailed description of the species
FIGURE 4. PCA analysis of the first three components among five species of genus Eothenomys, subgenus Anteliomys. Projections of individual specimen scores from principal component analysis on the 1st, 2nd, and 3rd factors (F1 to F3, 3-D scatter plot).
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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.