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427 results for “taxonomic characters”
FIGURE 5 in Taxonomic application of macro and micro morphological characters of seeds in Astragalus L. (Galegeae, Fabaceae) in India
FIGURE 5. SEM-micrographs of Astragalus gracilipes: A, entire seed (100x); B, seed sculpture (3000x); C, seed sculpture (6000x). FIGURE 6. SEM-micrographs of Astragalus melanostachys: A, entire seed (100x); B, seed sculpture (3000x); C, seed sculpture (6000x).
FIGURE 17 in Taxonomic application of macro and micro morphological characters of seeds in Astragalus L. (Galegeae, Fabaceae) in India
FIGURE 17. SEM-micrographs of Astragalus stipulatus: A, entire seed (150x); B, seed sculpture (3000x); C, seed sculpture (6000x). FIGURE 18. SEM-micrographs of Astragalus uttaranchalensis: A, entire seed (100x); B, seed sculpture (3000x); C, seed sculpture (6000x).
FIGURE 7 in Taxonomic application of macro and micro morphological characters of seeds in Astragalus L. (Galegeae, Fabaceae) in India
FIGURE 7. SEM-micrographs of Astragalus candolleanus: A, entire seed (100x); B, seed sculpture (3000x); C, seed sculpture (6000x). FIGURE 8. SEM-micrographs of Astragalus drasianus: A, entire seed (100x); B, seed sculpture (3000x); C, seed sculpture (6000x).
FIGURE 1 in Taxonomic application of macro and micro morphological characters of seeds in Astragalus L. (Galegeae, Fabaceae) in India
FIGURE 1. SEM-micrographs of Astragalus multiceps: A, entire seed (150x); B, seed sculpture (3000x); C, seed sculpture (6000x). FIGURE 2. SEM-micrographs of Astragalus oplites: A, entire seed (50x); B, seed sculpture (3000x); C, seed sculpture (6000x).
FIGURE 9 in Taxonomic application of macro and micro morphological characters of seeds in Astragalus L. (Galegeae, Fabaceae) in India
FIGURE 9. SEM-micrographs of Astragalus malacophyllus: A, entire seed (100x); B, seed sculpture (3000x); C, seed sculpture (6000x). FIGURE 10. SEM-micrographs of Astragalus pindreensis: A, entire seed (100x); B, seed sculpture (3000x); C, seed sculpture (6000x).
FIGURE 11 in Taxonomic application of macro and micro morphological characters of seeds in Astragalus L. (Galegeae, Fabaceae) in India
FIGURE 11. SEM-micrographs of Astragalus rhizanthus: A, entire seed (100x); B, seed sculpture (3000x); C, seed sculpture (6000x). FIGURE 12. SEM-micrographs of Astragalus lessertioides: A, entire seed (100x); B, seed sculpture (3000x); C, seed sculpture (6000x).
FIGURE 27 in Taxonomic application of macro and micro morphological characters of seeds in Astragalus L. (Galegeae, Fabaceae) in India
FIGURE 27. SEM-micrographs of Astragalus tenuicaulis: A, entire seed (200x); B, seed sculpture (3000x); C, seed sculpture (6000x). FIGURE 28. SEM-micrographs of Astragalus hoffmeisteri: A, entire seed (100x); B, seed sculpture (3000x); C, seed sculpture (6000x).
FIGURE 15 in Taxonomic application of macro and micro morphological characters of seeds in Astragalus L. (Galegeae, Fabaceae) in India
FIGURE 15. SEM-micrographs of Astragalus concretus: A, entire seed (100x); B, seed sculpture (3000x); C, seed sculpture (6000x). FIGURE 16. SEM-micrographs of Astragalus graveolens: A, entire seed (100x); B, seed sculpture (3000x); C, seed sculpture (6000x).
FIGURE 23 in Taxonomic application of macro and micro morphological characters of seeds in Astragalus L. (Galegeae, Fabaceae) in India
FIGURE 23. SEM-micrographs of Astragalus leucocephalus: A, entire seed (200x); B, seed sculpture (3000x); C, seed sculpture (6000x). FIGURE 24. SEM-micrographs of Astragalus sanjappae: A, entire seed (150x); B, seed sculpture (3000x); C, seed sculpture (6000x).
FIGURE 3 in Taxonomic application of macro and micro morphological characters of seeds in Astragalus L. (Galegeae, Fabaceae) in India
FIGURE 3. SEM-micrographs of Astragalus webbianus: A, entire seed (90x); B, seed sculpture (3000x); C, seed sculpture (6000x). FIGURE 4. SEM-micrographs of Astragalus zanskarensis: A, entire seed (100x); B, seed sculpture (3000x); C, seed sculpture (6000x).
FIGURE 6 in Ampharetidae (Annelida: Polychaeta) from Japan. Part I: The genus Ampharete Malmgren, 1866, along with a discussion of several taxonomic characters of the family and the introduction of a new identification tool
FIGURE 6. "ID cards" of each Ampharete species: A: Ampharete ampullata sp. nov. B: Ampharete cinnamomea sp. nov. C: Ampharete falcata, D: Ampharete lindstroemi, E: Ampharete orientalis.
FIGURE 4 in Ampharetidae (Annelida: Polychaeta) from Japan. Part I: The genus Ampharete Malmgren, 1866, along with a discussion of several taxonomic characters of the family and the introduction of a new identification tool
FIGURE 4. Ampharete lindstroemi: A: prostomium, dorsal view, 30x, B: papillae of buccal tentacle, 200x, C: anterior end, dorsal view, 25x, D: same, lateral view, 25x, E: notochaeta, 375x, F: abdominal parapodium, 80x, G: posterior end, ventral view, 28x, H-I: thoracic uncini, H: 1100x, I: 1500x.
FIGURE 3 in Ampharetidae (Annelida: Polychaeta) from Japan. Part I: The genus Ampharete Malmgren, 1866, along with a discussion of several taxonomic characters of the family and the introduction of a new identification tool
FIGURE 3. Ampharete falcata: A: anterior end, dorsal view, 40x, B: distal part of buccal tentacle, 180x, C: anterior end of another individual, lateral view, 30x, D: paleae, 120x, E: thoracic parapodia, 60x, F: constriction of abdomen, 22x, G: posterior end, ventral view, 44x, H: thoracic uncinus, 1920x, I: abdominal uncinus, 1800x.
FIGURE 5 in Ampharetidae (Annelida: Polychaeta) from Japan. Part I: The genus Ampharete Malmgren, 1866, along with a discussion of several taxonomic characters of the family and the introduction of a new identification tool
FIGURE 5. Ampharete orientalis: A: prostomium and branchiae, dorsal view, 35x, B: distal end of buccal tentacle, 18x, C: anterior end, dorsal view, 30x, D: thoracic parapodium, lateral view, 80x, E: last thoracic chaetiger and abdominal segments, lateral view, 17x, F: abdominal parapodium, lateral view, 80x, G: posterior end, dorsal view, 50x, H: thoracic uncinus, 835x.
FIGURE 1 in Ampharetidae (Annelida: Polychaeta) from Japan. Part I: The genus Ampharete Malmgren, 1866, along with a discussion of several taxonomic characters of the family and the introduction of a new identification tool
FIGURE 1. Ampharete ampullata sp. nov.: A: anterior end, dorsal view, 40x, B: same, lateral view, 40x, C: distal end of buccal tentacle, 375x, D: papilla of buccal tentacle, 755x, E: limbate capillary notochaeta, 755x, F: abdominal parapodia, 40x, G: thoracic uncinus, 1100x, H: abdominal uncinus, 2100x.
FIGURE 2 in Ampharetidae (Annelida: Polychaeta) from Japan. Part I: The genus Ampharete Malmgren, 1866, along with a discussion of several taxonomic characters of the family and the introduction of a new identification tool
FIGURE 2. Ampharete cinnamomea sp. nov.: A: prostomium, dorsal view, 30x, B: anterior end, dorsal view, 30x, C: notochaeta, 215x, D: anterior end, lateral view, 30x, E: two thoracic parapodia, lateral view, 37x, F: one thoracic and five abdominal segments, lateral view, 27x, G: abdominal parapodium, 80x, H: posterior end, ventral view, 58x, I, J: thoracic uncini, 1100x, K, L: abdominal uncini, K: 1100x, L: 1350x.
Figure 7. Body plan evolution within Ornithischia and character states with phylogenetic importance for the present hypothesis. A in Taxonomic, palaeobiological and evolutionary implications of a phylogenetic hypothesis for Ornithischia (Archosauria: Dinosauria)
Figure 7. Body plan evolution within Ornithischia and character states with phylogenetic importance for the present hypothesis. A, skeletal reconstruction of Silesaurus opolensis, a parapredentatan (stem lineage) ornithischian (after Dzik, 2003). B, skeletal reconstruction of Laquintasaura venezuelae, a parapredentatan ornithischian (after Barrett et al., 2014). C, skeletal reconstruction of Eocursor parvus, a prionodontian ornithischian (after Butler et al., 2010). D, left dentary of Kwanasaurus williamparkeri (DMNH EPV.63136) in lateral view (modified from Martz & Small, 2019). E, left ectopterygoid of Asilisaurus kongwe (NMT RB159) in posterior (modified from Nesbitt et al., 2019). F, posterior portion of the right hemimandible of Asilisaurus kongwe (NMT RB159) in lateral (modified from Nesbitt et al., 2019). G, partial left dentary of Asilisaurus kongwe (NMT RB159) in occlusal view (modified from Nesbitt et al., 2019). H, left dentary of Kwanasaurus williamparkeri (DMNH EPV.63136) in medial view (modified from Martz & Small, 2019). I, isolated tooth of Kwanasaurus williamparkeri (DMNH EPV.63843) in labial view (modified from Martz & Small, 2019). J, proximal portion of the right femur of Sacisaurus agudoensis (MCN PV100014) in caudomedial view. K, right maxilla of Echinodon becklesii (NHMUK OR48211) in lateral view (modified from Sereno, 2012). L, right tibia of Eocursor parvus (SAM-PK-K8025) in proximal view. M, left pelvic elements of Heterodontosaurus tucki (SAM-PK-K1332) in lateral view. N, skull of Heterodontosaurus tucki (SAM-PK-K1332) in right lateral view. O, cervical 6 and 7 of Heterodontosaurus tucki (SAM-PK-K1332) in left lateral view. P, proximal portion of the right tibia of Eocursor parvus (SAM-PK-K8025) in lateral view. Q, left ischium of Lesothosaurus diagnosticus (SAM-PK-K1105) in medial view (modified from Baron et al., 2017a). R, proximal portion of the left femur of Lesothosaurus diagnosticus (BP/1/6582) in lateral view. Elements are not to scale.
FIGURE 8 in Studies on Collaea species (Fabaceae) occurring in Brazil: taxonomic novelties, new interpretations about the leaf of the genus, and new leaf anatomical characters for American Fabaceae
FIGURE 8. Schemae of the leaves of Collaea. a. C. insignis, b. C. speciosa, and c. C. aschersoniana and C. stenophylla.
FIGURE 1. Collaea insignis M. J. Silva. a in Studies on Collaea species (Fabaceae) occurring in Brazil: taxonomic novelties, new interpretations about the leaf of the genus, and new leaf anatomical characters for American Fabaceae
FIGURE 1. Collaea insignis M. J. Silva. a. fertile branch; b. leave. c. detail of upper surface of the leaflet; d. detail of lower surface of leaflet; d. leaflet. e. floral bud; f. bract; g. bracteole; h. calyx opened out; i. detail of the central carenal lacinia; j. standard petal. k. base of the standard showing the claw, callosities and basal appendages; l. apex the standard; m. wing. n. keel petals; o. staminal tube. p. staminal tube opened out; q. anther in frontal view. r. anther in dorsal view. s. gynoecium. t detail of the stigma. u. fruit; v. fruit showing the valves elastically dehiscing; w. apex the fruit. x. seed, hilar view. y. seed, side view.
FIGURE 5 in Studies on Collaea species (Fabaceae) occurring in Brazil: taxonomic novelties, new interpretations about the leaf of the genus, and new leaf anatomical characters for American Fabaceae
FIGURE 5. Cross-section of the leaflets blades and margin of Collaea aschersoniana (a–d), C. insignis (e–h), C. speciosa (i–l) and C. stenophylla (m–p): a, e, i and m general aspect of the leaf blades. b, f, j and n detail of the stomatal crypts in the adaxial surface. c, g, k and o detail of the epidermis, trichomes, vascular bundles, palisade and spongy parenchyma. d, h, l and p general aspect of the margin. (cr = stomatal crypts; ep = epidermis; fi = fibers; me = mesophyll; ph = phloem; pp = palisade parenchyma; sp = spongy parenchyma; tr = trichomes; vb = vascular bundle; xy = xylem; arrows = stomata). Scale: a, d, e, h, i, l, m, p = 200 μm; b, c, f, g, j, k, n, o = 50 μm.
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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.