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275 results for “Morpho”
Morpho-functional Changes After Oral Supplementation of Antioxidants and Anti-inflammatory Treatment in Age-Related Macular Degeneration.
ClinicalTrials.gov study NCT03919019. IPD Sharing: NO. Countries: 1. Publications: 4.
Data from: Effectiveness of modern leaf analysis tools for the morpho-ecological study of plants: the case of Primula albenensis Banfi et Ferl
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Morpho-functional traits of the coral Stylophora pistillata enhance light capture for photosynthesis at mesophotic depths
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Patterns of morphological variation highlight the effect of natural selection on eyespots modularity in the butterfly Morpho telemachus - Dataset
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Feeding in the Devonian antiarch placoderm fishes: a study based upon morpho-functional analysis of jaws
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Morpho butterflies eyespot data
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Figure 3 from: Santos D, Saraiva RVC, Ferraz TM, Arruda ECP, Buril MT (2020) A threatened new species of Ipomoea (Convolvulaceae) from the Brazilian Cerrado revealed by morpho-anatomical analysis. PhytoKeys 151: 93-106. https://doi.org/10.3897/phytokeys.151.49833
Figure 3 A, BIpomoea maranhensisA arrangement of vascular bundles in U; prominent/concave main rib shape B dorsiventral mesophyll C–FI. burchelliiC arrangement of vascular bundles in V; convex/flat main rib shape D mesophyll isobilateral E glandular trichomes restricted to the abaxial surface of the leaf (red arrow) F parenchymatous tissue with isodiametric cells (Photos by E. Pereira Arruda). AD: adaxial epidermis; AB: abaxial epidermis; Is: isodiametric cells; Pa: Parenchymatous tissue; Pp: palisade parenchyma; Sp: spongy parenchyma; Vb: vascular bundle; Tr: trichome.
Figure 1 from: Santos D, Saraiva RVC, Ferraz TM, Arruda ECP, Buril MT (2020) A threatened new species of Ipomoea (Convolvulaceae) from the Brazilian Cerrado revealed by morpho-anatomical analysis. PhytoKeys 151: 93-106. https://doi.org/10.3897/phytokeys.151.49833
Figure 1 A–FIpomoea maranhensisA branch with leaves (abaxial surface) and flowers B branch with leaves (adaxial surface) and floral buds C leaf in abaxial view presenting sericeous aspect D floral bud E sepals F ovary (Photos by F. Santos and Flora do Brasil 2019).
Figure 2 from: Santos D, Saraiva RVC, Ferraz TM, Arruda ECP, Buril MT (2020) A threatened new species of Ipomoea (Convolvulaceae) from the Brazilian Cerrado revealed by morpho-anatomical analysis. PhytoKeys 151: 93-106. https://doi.org/10.3897/phytokeys.151.49833
Figure 2 A–HIpomoea maranhensisA twining habit B primary and secondary veins on the abaxial surface C floral bud D sepals with apex long acuminate E flower F open corolla G stamen H gynoecium. Drawn by Regina Carvalho from Félix et al. 8136.
Figure 1 from: Xu X-L, Yang C-L, Jeewon R, Wanasinghe DN, Liu Y-G, Xiao Q-G (2020) Morpho-molecular diversity of Linocarpaceae (Chaetosphaeriales): Claviformispora gen. nov. from decaying branches of Phyllostachys heteroclada. MycoKeys 70: 1-17. https://doi.org/10.3897/mycokeys.70.54231
Figure 1 Phylogram of RAxML analysis based on a combined ITS, LSU, SSU and TEF-1α sequence dataset within order Chaetosphaeriales. Bootstrap support values for maximum likelihood (ML, left) greater than 70% and Bayesian posterior probabilities (PP, right) equal to or greater than 0.95 are indicated at the nodes. The tree is rooted to Gelasinospora tetrasperma (CBS 178.33) and Sordaria fimicola (CBS 508.50). All sequences from ex-type strains are in bold. The newly-generated sequence is in red.
Figure 2 from: Xu X-L, Yang C-L, Jeewon R, Wanasinghe DN, Liu Y-G, Xiao Q-G (2020) Morpho-molecular diversity of Linocarpaceae (Chaetosphaeriales): Claviformispora gen. nov. from decaying branches of Phyllostachys heteroclada. MycoKeys 70: 1-17. https://doi.org/10.3897/mycokeys.70.54231
Figure 2 Claviformispora phyllostachydis (SICAU 16-0007, holotype) a, bStromata on host substrate c section through ascoma with ascomata d ostiole with periphyses e peridium f paraphyses g–j asci k–o ascospores p germinated ascospore q, r colony on PDA after 7 days. Scale bars: 2 mm (a), 500 μm (b), 100 μm (c), 20 μm (d, e), 10 μm (f–p).
Supplementary material 1 from: Xu X-L, Yang C-L, Jeewon R, Wanasinghe DN, Liu Y-G, Xiao Q-G (2020) Morpho-molecular diversity of Linocarpaceae (Chaetosphaeriales): Claviformispora gen. nov. from decaying branches of Phyllostachys heteroclada. MycoKeys 70: 1-17. https://doi.org/10.3897/mycokeys.70.54231
Figure S1
Supplementary material 2 from: Xu X-L, Yang C-L, Jeewon R, Wanasinghe DN, Liu Y-G, Xiao Q-G (2020) Morpho-molecular diversity of Linocarpaceae (Chaetosphaeriales): Claviformispora gen. nov. from decaying branches of Phyllostachys heteroclada. MycoKeys 70: 1-17. https://doi.org/10.3897/mycokeys.70.54231
Figure S2
Supplementary material 1 from: Zhang J-F, Liu J-K, Hyde KD, Ekanayaka AH, Liu Z-Y (2020) Morpho-phylogenetic evidence reveals new species in Rhytismataceae (Rhytismatales, Leotiomycetes, Ascomycota) from Guizhou Province, China. MycoKeys 76: 81-106. https://doi.org/10.3897/mycokeys.76.58465
Dataset for molecular analyses
Figure 5 from: Zhang J-F, Liu J-K, Hyde KD, Ekanayaka AH, Liu Z-Y (2020) Morpho-phylogenetic evidence reveals new species in Rhytismataceae (Rhytismatales, Leotiomycetes, Ascomycota) from Guizhou Province, China. MycoKeys 76: 81-106. https://doi.org/10.3897/mycokeys.76.58465
Figure 5 Terriera sigmoideosporaa, b apothecia observed under the dissecting microscope c section of covering stroma d median vertical section through an apothecium e immature ascus f paraphyses and asci in various states of maturity g, h ascospores. Note: c–h mounted in water. Scale bar: 1 mm (a), 500 µm (b), 100 µm (c), 20 µm (d–h).
Figure 3 from: Zhang J-F, Liu J-K, Hyde KD, Ekanayaka AH, Liu Z-Y (2020) Morpho-phylogenetic evidence reveals new species in Rhytismataceae (Rhytismatales, Leotiomycetes, Ascomycota) from Guizhou Province, China. MycoKeys 76: 81-106. https://doi.org/10.3897/mycokeys.76.58465
Figure 3 Terriera karstia, b apothecia observed under the dissecting microscope c detail of covering stroma in vertical section d vertical section through an apothecium e, f asci in various states of maturity g apices of paraphyses h, i ascospores. Note: c–i mounted in water. Scale bar: 1 mm (a), 500 µm (b), 20 µm (c, e, f), 100 µm (d), 10 µm (g, i).
Figure 2 from: Zhang J-F, Liu J-K, Hyde KD, Ekanayaka AH, Liu Z-Y (2020) Morpho-phylogenetic evidence reveals new species in Rhytismataceae (Rhytismatales, Leotiomycetes, Ascomycota) from Guizhou Province, China. MycoKeys 76: 81-106. https://doi.org/10.3897/mycokeys.76.58465
Figure 2 Hypoderma paralinderaea, b apothecia observed under a dissecting microscope in face view c vertical section through an apothecium d lips adjacent to the top of covering stroma e section of covering stroma f section of basal stroma g paraphyses and asci in various states of maturity h immature ascus i, j ascospores. Note: c–j mounted in water. Scale bar: 1 mm (a), 500 µm (b), 200 µm (c), 20 µm (d, g, h), 10 µm (e, i, j), 5 µm (f).
Figure 1 from: Zhang J-F, Liu J-K, Hyde KD, Ekanayaka AH, Liu Z-Y (2020) Morpho-phylogenetic evidence reveals new species in Rhytismataceae (Rhytismatales, Leotiomycetes, Ascomycota) from Guizhou Province, China. MycoKeys 76: 81-106. https://doi.org/10.3897/mycokeys.76.58465
Figure 1 Phylogram of Rhytismataceae is presented as the best tree revealed by MP analysis, based on the concatenated LSU-ITS-mtSSU sequence dataset. MP bootstrap support values (MPBP ≥ 50%) and Bayesian inference posterior probabilities (BYPP ≥ 0.95) are shown near the nodes. The tree is rooted to Marthamyces emarginatus (ICMP 22854), the scale bar showing 10 changes. Type strains are indicated in bold and new sequences, generated in this study, are given in red.
Figure 4 from: Zhang J-F, Liu J-K, Hyde KD, Ekanayaka AH, Liu Z-Y (2020) Morpho-phylogenetic evidence reveals new species in Rhytismataceae (Rhytismatales, Leotiomycetes, Ascomycota) from Guizhou Province, China. MycoKeys 76: 81-106. https://doi.org/10.3897/mycokeys.76.58465
Figure 4 Terriera meitanensisa habit of apothecia on substrate b, c apothecia observed under the dissecting microscope in face view d vertical section through an apothecium e covering stroma f triangular space in section between the covering stroma and basal stroma g basal stroma h paraphyses with anastomoses amongst asci in various states of maturity i, j immature asci k, l ascospores. Note: d–l mounted in water. Scale bar: 1 cm (a), 1 mm (b), 500 µm (c), 100 µm (d), 10 µm (e, g, k, l), 30 µm (f), 20 µm (h–j).
Genetic variation of morpho-physiological traits in an apple core collection
<p>Dataset used for the preparation of the manuscript “Genetic variation of morphological traits and transpiration in an apple core collection under well-watered conditions: towards the identification of morphotypes with high water use efficiency”</p> <p>The dataset presented includes information for morphological and physiological traits for 183 genotypes of an INRA apple core collection. This collection was grown under well-watered condition in the Phenoarch phenotyping platform in Montpellier (France). Trees were evaluated during the first year of growth after grafting them on M9 rootstock. A first file includes individual information for four plants for each genotype. A second file includes the Best Linear Unbiased Predictors (BLUP’s) of genetic values for each morpho-physiological trait and genotype. Mixed effect models taking into account the spatial heterogeneity within the phenotyping platform were used to estimate BLUPs values.</p>
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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.