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76 results for “Rai”
YouTube RAI channel dataset
<p>id, title and youtube segmentation of videos from the official youtube RAI channel (<a href="https://www.youtube.com/@rai" rel="nofollow">https://www.youtube.com/@rai</a>) longer than 5 minutes. For each video the segmentation is a list composed by the start time (in milliseconds) and the title of each chapter. The dataset is already divided in two non-overlapping sets: 614 in "test_yt_over5min.json" and 2460 in "train_yt_over5min.json".</p>
Reacquisition of Radioactive Iodine (RAI) Uptake of RAI-Refractory Metastatic Thyroid Cancers by Pretreatment With the Selective MEK Inhibitor AZD6244
ClinicalTrials.gov study NCT00970359. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Nexavar® Versus Placebo in Locally Advanced/Metastatic RAI-Refractory Differentiated Thyroid Cancer
ClinicalTrials.gov study NCT00984282. IPD Sharing: Not stated. Countries: 18. Publications: 5.
Perioperative Accuracy of the Raiing Wireless Axillary Thermometer
ClinicalTrials.gov study NCT02756910. IPD Sharing: NO. Countries: 1. Publications: 47.
FIGURE 2 in Greeneria saprophytica sp. nov. on dead leaves of Syzygium cumini from Chiang Rai, Thailand
FIGURE 2. Greeneria saprophytica (MFLUCC 12-0298, holotype). A. Specimen on dead leaf of Syzygium cumini. B. Conidiomata on the host surface. C. L.S. of a conidioma. D–H. Phialidic conidiogenous cells with developing conidia; in G. note proliferating conidiogenous cell. I–L. Conidia. M. Germinating conidium. N–O. Colonies on PDA; N. From top, O. From reverse. Scale bars: C = 50 μm, D–M = 10 μm.
FIGURE 1 in Greeneria saprophytica sp. nov. on dead leaves of Syzygium cumini from Chiang Rai, Thailand
FIGURE 1. Maximum likelihood (ML) majority rule 28S nuclear large subunit (nuLSU) consensus tree for Greeneria saprophytica, G. uvicola and other representatives in order Diaporthales and genera incertae sedis. RAxML bootstrap support values are given at the nodes. The tree is rooted to Coniochaeta velutina (Coniochaetales).
ETHICS IN MICROFINANCE_RADICAL AFFINITY INDEX RAI APPLIED TO MICROFINANCE
<p>We have adapted the Radical Affinity Index for the analysis of ethics in micro financial institutions. It was used the data available at december 2023. We have review all the web pages one by one and establish each evaluation from 0 to 4 for the RAI aspects: transparency, placemento fo assets, guarantees and participation. Ohter aspects from MIX Market database has taken into account after we review the information before to proceed. They are: <span>Country, Region, Legal Status, Total Assets (US$), Loan Portfolio/Asset, Average Loan and Balance per Borrower/GDPpc</span></p>
FIGURE 2. Oxygraphis kumaonensis I. D. Rai and G. S in Oxygraphis kumaonensis sp. nov. (Ranunculaceae) from Western Himalaya, India
FIGURE 2. Oxygraphis kumaonensis I. D. Rai and G. S. Rawat sp. nov: (a) and (b). Habit; (c). Flower with different floral parts; (d) Flowers showing purple-brown coating on the petal; (e). Mature flower with persistent calyx, carpels and dried stamen & petals; (f). Mature flower and leaves.
FIGURE 1. Oxygraphis kumaonensis I. D. Rai and G. S in Oxygraphis kumaonensis sp. nov. (Ranunculaceae) from Western Himalaya, India
FIGURE 1. Oxygraphis kumaonensis I. D. Rai and G. S. Rawat sp. nov: (a). Habit; (b). Single individual with flower, leaves and roots; (c). Petals; (d). Stamen with anthers; (e). Achene.
FIGURE 2. Rhododendron rawatii I. D. Rai & B. S in Rhododendron rawatii (Ericaceae), a new species from the Western Himalaya, India
FIGURE 2. Rhododendron rawatii I. D. Rai & B. S. Adhikari sp. nov. A. Flowering branch. B. Leaf: adaxial (left) and abaxial (right) surface. C. Flower with bracteoles. D. Androecium and gynoecium. E. Bract. F. Intact and dehisced capsules. G. Seeds (Illustration by IDR from type locality).
FIGURE 1. Rhododendron rawatii I. D. Rai & B. S in Rhododendron rawatii (Ericaceae), a new species from the Western Himalaya, India
FIGURE 1. Rhododendron rawatii I. D. Rai & B. S. Adhikari sp. nov. A. & B. Habit and habitat (flowering and vegetative stage). C.Leaf abaxial and adaxial surface. D. & E. Bark. F. Inflorescence. G. Flower. H. Stamen, calyx and bract. I. Basal part of the flower with calyx. J. Ovary, calyx and bracteoles. K. Flower bud. L. Leaf bud. M. & N. Mature and dehisced capsule. O. Seeds. (Photographs by IDR from type locality).
FIGURE 1. Bistorta tenuifolia var. gidarensis I. D. Rai, G. Singh and G. S in Bistorta tenuifolia var. gidarensis (Polygonaceae), a new variety from India
FIGURE 1. Bistorta tenuifolia var. gidarensis I. D. Rai, G. Singh and G. S. Rawat: A. Habit. B. Flowering branch. C. Flower. D. Perianth lobes with stamen. E. Pistil and androecium. F. Bulbils.
FIGURE 2. Bistorta tenuifolia var. gidarensis I.D. Rai, G. Singh and G.S in Bistorta tenuifolia var. gidarensis (Polygonaceae), a new variety from India
FIGURE 2. Bistorta tenuifolia var. gidarensis I.D. Rai, G. Singh and G.S. Rawat: A. Habit. B. Flowering branch. C. Flower. D. Perianth lobes with pistil. E. Perianth and androecium (brown spots). F. Perianth. G. Pistil and androecium. H. Bulbils.
FIGURE 3 in Addition to Micropeltidaceae: Micropeltis goniothalamicola sp. nov. and new record of Scolecopeltidium menglaense from Chiang Rai, Thailand
FIGURE 3. Scolecopeltidium menglaense (MFLU 19–1009). a–c Ascomata on living leaf surface. d Squash mount of ascoma. e The upper wall. f Paraphyses. g–k Immature to mature asci. l–m Ascospores. Scale bars: c = 100 µm, d = 50 µm e = 25 µm, f–k = 10 µm, l–m = 5 µm.
FIGURE 2 in Addition to Micropeltidaceae: Micropeltis goniothalamicola sp. nov. and new record of Scolecopeltidium menglaense from Chiang Rai, Thailand
FIGURE 2. Micropeltis goniothalamicola (MFLU 19–1212). a–c Ascomata on living leaf surface. d Squash mount of ascoma. e The upper wall. f Paraphyses. g–k Immature to mature asci. l–n Immature ascospores (Fig. n Thin mucilaginous sheath in red arrow). o Mature ascospore with shorter basal cell (red arrow). Scale bars: c = 100 µm, d = 50 µm e = 25 µm, f–k = 10 µm, l–o = 5 µm.
FIGURE 1 in Addition to Micropeltidaceae: Micropeltis goniothalamicola sp. nov. and new record of Scolecopeltidium menglaense from Chiang Rai, Thailand
FIGURE 1. Phylogram generated from maximum likelihood (RAxML) based on LSU and ITS matrix. ML bootstrap support (≥60 %) and Bayesian posterior probability (≥0.80) are indicated above the branches as ML/BYPP. The values of ML (<50%) and BYPP (<0.80) are represented by asterisk "*". The tree is rooted with Calicium salicinum (MP12, CBS 100898). Type strains are in bold and the newly generated sequence is in red (novel taxon) and blue (new host record).
FIGURE 2 in Isolation and characterization of novel Dothideomycetes species from forest soils in Chiang Rai and Krabi (Thailand): additions to the diversity of Curvularia and Verruconis
FIGURE 2. Maximum likelihood phylogenetic tree based on combined SSU-ITS-LSU sequence data for Sympoventuriaceae. Bootstrap support values of maximum likelihood greater than 60% and Bayesian posterior probabilities (BYPP) greater than 0.95 are indicated above the nodes. Newly added strains are in blue and ex-type strains are in bold. The tree is rooted to Venturia inaequalis (CBS 594.70 and CBS 815.69). Isolated substrates are indicated in triangles. Black: Human/ animal, green: plants, brown: soil, purple: rock/ sediments, blue: aquatic habitat. unknown: empty
FIGURE 5 in Isolation and characterization of novel Dothideomycetes species from forest soils in Chiang Rai and Krabi (Thailand): additions to the diversity of Curvularia and Verruconis
FIGURE 5. Verruconis soli (MFLU22-0257, holotype) a. Colony from above (on PDA). b. Colony from below (on PDA). c. Sporulated colony. d. Melanized hyphae. e. Hyaline hyphae f–l. Conidiogenesis. m–r. Conidia. Scale bars: e = 15 μm, d, f–k = 10 μm, l–r = 5 μm.
FIGURE 6 in Isolation and characterization of novel Dothideomycetes species from forest soils in Chiang Rai and Krabi (Thailand): additions to the diversity of Curvularia and Verruconis
FIGURE 6. Verruconis thailandica (MFLU22-0258, new record) a. Colony from above (on PDA). b. Colony from below (on PDA). c. Sporulated colony with conidial attachments on the mycelium. d. Immature hyphae e. Mature septate hyphae. f. Conidiogenesis synnematous. g–j. Conidiogenesis mononematous conidiophores. k–p Conidia. Scale bars: d, e = 20 μm, f–l, n = 10 μm, m, o, p = 5 μm.
FIGURE 4 in Isolation and characterization of novel Dothideomycetes species from forest soils in Chiang Rai and Krabi (Thailand): additions to the diversity of Curvularia and Verruconis
FIGURE 4. Curvularia chiangmaiensis (MFLU22-0252, new record) a. Colony from above (on PDA). b. Colony from below (on PDA). c. Sporulated colony with conidial attachments on the mycelium. d. Immature hyphae e. Mature melanized hyphae. f. Hyaline chlamydospores. g. Melanized chlamydospores h. Macronematous conidiogenesis on the conidiophore. i–m. Conidiogenesis. n–s. Conidia. Scale bars: g = 25 μm, d–f, h–l = 20 μm, m–s= 10 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)
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DANDI Archive for NWB datasets
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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.