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207 results for “re-assessment”
FIGURE 4 in A re-assessment of Elsinoaceae (Myriangiales, Dothideomycetes)
FIGURE 4. Molleriella mirabilis (type) material redrawn from Höhnel (1909). a. Herbarium material. b. Pseudoascostromata on host substrate. c. Section through pseudoascostroma. d. Asci. e–f. Immature asci. g. Mature ascus. h. Immature ascus stained in cotton blue reagent. i–k. Irregularly arranged hyaline 6–8-septate ascospores. i. Ascospore stained in cotton blue. Scale bars: c–d = 100 µm, e–l = 10 µm.
FIGURE 3a in A re-assessment of Elsinoaceae (Myriangiales, Dothideomycetes)
FIGURE 3a. Sphaceloma sp. (THAILAND, Chiang Rai, near Phu Chi Fa, on Citrus sp., 28 January 2013, MFLU 12-2214). a–b. Conidiomata on host substrate. c–d. Section of conidiomata. e–g. Phialidic conidiogenous cells. h–i. Conidia. Scale bars: e–i = 50 µm, c–d = 20 µm, k = 10 µm.
FIGURE 2 in A re-assessment of Elsinoaceae (Myriangiales, Dothideomycetes)
FIGURE 2. Elsinoe canavaliae (isotype). a. Herbarium material. b. Pseudoascostromata on host substrate. c–d. Section of pseudoascostroma. e. Asci stained with cotton blue reagent in a section of pseudoascostromata. f–g. Ascus eight irregularly arranged ascospores. h. Fissitunicate dehicnese of the ascus. i. Smooth, hyaline ascospores. j. Ascospore stained with cotton blue. Scale bars: c–d = 100 µm, e = 50 µm, f–h = 20 µm, i–j = 10 µm.
FIGURE 3b in A re-assessment of Elsinoaceae (Myriangiales, Dothideomycetes)
FIGURE 3b. Sphaceloma ampelinum material redrawn from Sutton & Pollok (1973) a. Conidia. b. Phialidic conidiogenous cells. c. V.S. of confluent acervuli. Scale bars: a–b = 10 µm, c = 100 µm.
FIGURE 1 in A re-assessment of Elsinoaceae (Myriangiales, Dothideomycetes)
FIGURE 1. Phylogram generated from maximum parsimony analysis based on combined multi-gene sequences (ITS, SSU, LSU, RPB2 and TEF1), showing the phylogenetic relationships of the family Elsinoaceae. The values noted are parsimony bootstraps (>50%). The tree is rooted with Schismatomma decolorans.
FIGURE 3 in Taxonomic re-assessment of the Australian and New Guinean green-eyed treefrogs Litoria eucnemis, L. genimaculata and L. serrata (Anura: Hylidae)
FIGURE 3. Bayesian majority rule consensus tree of 12S rRNA nucleotide sequences from 77 pelodryadid hylid frogs from Australia and New Guinea. Numbers at nodes indicate Bayesian posterior probabilities and maximum likelihood non-parametric bootstrap proportions.
FIGURE 1 in Taxonomic re-assessment of the Australian and New Guinean green-eyed treefrogs Litoria eucnemis, L. genimaculata and L. serrata (Anura: Hylidae)
FIGURE 1. Map showing locations of samples used for the molecular genetic analyses (numbered sites) and morphological comparisons (lower case letters). Site labels are listed in Appendix I and also referred to in Figure 2.
FIGURE 2 in Taxonomic re-assessment of the Australian and New Guinean green-eyed treefrogs Litoria eucnemis, L. genimaculata and L. serrata (Anura: Hylidae)
FIGURE 2. Neighbour-joining phylogram based on Cavalli-Sforza chord allozyme allele frequency distances between OTUs. OTU numbers are listed in Table 1 and Appendix I.
FIGURE 2. A in Re-assessment of the Reinwardt's Gliding Frog, Rhacophorus reinwardtii (Schlegel 1840) (Anura: Rhacophoridae) in Southern Thailand and Peninsular Malaysia and its re-description as a new species
FIGURE 2. A– Rhacophorus reinwardtii, Sukabumi, West Java. B– Rhacophorus reinwardtii, Gunung Gede, West Java. C– Holotype Rhacophorus norhayatii (UKMHC 714). D– Rhacophorus reinwardtii, Batang Ai, Sarawak, Borneo. E– Ventral view of specimen D.
FIGURE 3. A in Re-assessment of the Reinwardt's Gliding Frog, Rhacophorus reinwardtii (Schlegel 1840) (Anura: Rhacophoridae) in Southern Thailand and Peninsular Malaysia and its re-description as a new species
FIGURE 3. A– Dorsal view of hand, Rhacophorus reinwardtii (ZRC 1.6833). B– Dorsal view of foot (ZRC 1.6833). C– Dorsal view of hand, holotype Rhacophorus norhayatii (UKMHC 714). D– Dorsal view of foot (UKMHC 714). E– Ventral view of female Rhacophorus reinwardtii (ZRC 1.3641). F– Ventral view of female Rhacophorus norhayatii (ZRC 1.10355). G– Flank of Rhacophorus norhayatii (ZRC 1.12447).
FIGURE 3 in A re-assessment of Hexapleomera Dudich, 1931 (Crustacea: Tanaidacea: Tanaidae), with designation of three new species
FIGURE 3. Hexapleomera wombat sp. nov., adult male, A, dorsal; B, lateral (photographs by Jon Bishop).
FIGURE 7 in A re-assessment of Hexapleomera Dudich, 1931 (Crustacea: Tanaidacea: Tanaidae), with designation of three new species
FIGURE 7. Hexapleomera satella sp. nov., female: A, cheliped; B–D, pereopods 1 to 3 respectively; E, pereopod 4, with detail of claw; F, pereopod 6; G and H, pleopods 2 and 3 respectively (plumose mature of all setae not shown; most setae of rami shown only by their bases); I, uropod. Scale line = 0.2 mm for A to H, 0.15 mm for I.
FIGURE 2 in A re-assessment of Hexapleomera Dudich, 1931 (Crustacea: Tanaidacea: Tanaidae), with designation of three new species
FIGURE 2. Hexapleomera wombat sp. nov., female: A, right cheliped; B–G, pereopods 1 to 6 respectively; H, uropod. Scale line = 0.2 mm.
FIGURE 8 in A re-assessment of Hexapleomera Dudich, 1931 (Crustacea: Tanaidacea: Tanaidae), with designation of three new species
FIGURE 8. Hexapleomera satella sp. nov., male allotype: A, habitus; B, antennule; C, antenna; D, right cheliped. Scale line = 1 mm for A, 0.3 mm for B–D.
FIGURE 5 in A re-assessment of Hexapleomera Dudich, 1931 (Crustacea: Tanaidacea: Tanaidae), with designation of three new species
FIGURE 5. Size-frequency histogram of the type series of Hexapleomera wombat, distinguishing juveniles, genders, and the various stages of adults.
FIGURE 6 in A re-assessment of Hexapleomera Dudich, 1931 (Crustacea: Tanaidacea: Tanaidae), with designation of three new species
FIGURE 6. Hexapleomera satella sp. nov., female: A, holotype, dorsal; B, pleotelson, dorsal; C, antennule; D, antenna; E, labrum; F, left mandible; G, right mandible; H, maxillule and maxilla; I, labium; J, maxilliped; K, maxilliped endites; L, epignath. Scale line = 1 mm for A, 0.4 mm for B, 0.2 mm for C–L.
FIGURE 4 in A re-assessment of Hexapleomera Dudich, 1931 (Crustacea: Tanaidacea: Tanaidae), with designation of three new species
FIGURE 4. Hexapleomera wombat sp. nov., A, subadult male; B–E, adult male: B, habitus; C, antennule; D, antenna; E, left cheliped. Scale line = 1 mm for A and B, 0.3 mm for C to E.
FIGURE 1 in A re-assessment of Hexapleomera Dudich, 1931 (Crustacea: Tanaidacea: Tanaidae), with designation of three new species
FIGURE 1. Hexapleomera wombat sp. nov., A, holotype, dorsal; B, pleotelson, dorsal; C, antennule; D, antenna; E, labrum; F, right mandible; G, left mandible (molar not shown); H, maxillule and maxilla, with detail of distal maxillular spine; I, labium; J, maxilliped; K, maxilliped endites; L, epignath; M, pleopod 2. Scale line = 1 mm for A, 0.2 mm for B–M.
FIGURE 7 in A re-assessment of diversity among Philippine gymnures (Mammalia: Erinaceidae Podogymnura), with a new species from eastern Mindanao
FIGURE 7. Podogymnura intermedia (FMNH 186805, holotype), adult male. Photographed 28 July 2005 by D. S. Balete.
FIGURE 4 in A re-assessment of diversity among Philippine gymnures (Mammalia: Erinaceidae Podogymnura), with a new species from eastern Mindanao
FIGURE 4. Photographs of skull of Podogymnura aureospinula, holotype, DMNH 4386, approximately life size. Adapted from Heaney & Morgan 1982.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.