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965 results for “Artemisia”
Herbal Evaluation Of Artemisia Annua For Small Intestinal Bacterial Overgrowth
ClinicalTrials.gov study NCT06721884. IPD Sharing: NO. Countries: 1. Publications: 0.
Evaluation of Soy-protein Russian Tarragon (Artemisia Dracunculus L.)
ClinicalTrials.gov study NCT02088203. IPD Sharing: UNDECIDED. Countries: 1. Publications: 0.
To Determine the Minimum Amount of Artemisia Vulgaris Allergen Extract Producing a Positive Skin Reaction.
ClinicalTrials.gov study NCT01984541. IPD Sharing: Not stated. Countries: 1. Publications: 0.
Artemisia and Green Tea Extracts for Gastric Mucosal Health
ClinicalTrials.gov study NCT06628804. IPD Sharing: Not stated. Countries: 1. Publications: 0.
Dried Leaf Artemisia (DLA) Compared to Artemisinin Combination Therapy (ACT) vs Malaria
ClinicalTrials.gov study NCT03199755. IPD Sharing: UNDECIDED. Countries: 1. Publications: 0.
Hypotensive major health effect of Rubus ulmifolius Schott. and Artemisia campestris L. highlighted by nutrigenomic and cardiovascular studies
GEO Series GSE251733. Mus musculus. 9 samples. Type: Expression profiling by array.
FIGURE 2. a in Tuberocephalus tsengi (Tao, 1963) STAT. REV. (Hemiptera: Aphididae), an East Asian Artemisia - feeding aphid species introduced to Britain
FIGURE 2. a Apterous vivipara of Tuberocephalus tsengi; b Apterous vivipara of Tuberocephalus sasakii; c Alate vivipara of T. tsengi (from type series); d Dorsal cuticle of T. tsengi; e Dorsal aspect of head of T. tsengi; f Dorsal aspect of head of T. sasakii; g Posterior abdomen of T. tsengi; h Posterior abdomen of T. sasakii.
FIGURE 1 in Tuberocephalus tsengi (Tao, 1963) STAT. REV. (Hemiptera: Aphididae), an East Asian Artemisia - feeding aphid species introduced to Britain
FIGURE 1. Apterous vivipara of Tuberocephalus tsengi on Artemisia vulgaris at Rye Harbour, Sussex, 13.v.2018.
FIGURE 3 in The identity of Artemisia brevis (Asteraceae, Anthemideae) from Xinjiang, China
FIGURE 3. Lectotype sheet of Artemisia rupestris. Inset: portion of synflorescence, showing arachnoid-pubescent stem, sparsely pubescent leaves and abaxially sparsely pubescent phyllaries.
FIGURE 19 in Clarification of morphological characters and geographical distribution of Artemisia neosinensis (Asteraceae, Anthemideae), a strikingly misunderstood species from China
FIGURE 19. Holotype (A), isotype (B), and non-type (C, D) sheets of Artemisia robusta (= A. strongylocephala var. sinensis f. robusta), all from Gongshan County in Yunnan. A, B. G. Forrest 13379 (E, PE). C. T.T. Yu 20286 (PE). D. T.T. Yu 20724 (PE).
FIGURE 2 in Clarification of morphological characters and geographical distribution of Artemisia neosinensis (Asteraceae, Anthemideae), a strikingly misunderstood species from China
FIGURE 2. Specimens of Artemisia zayuensis (A, B) and A. zayuensis var. pienmaensis (C, D; holotype and isotype of this variety) all from Gongshan County in Yunnan and wrongly cited as A. strongylocephala var. sinensis (= A. neosinensis) by Anonymous (1984). A, B. T.T. Yu 20084 (KUN, PE). C, D. S.K. Wu 8146 (KUN).
Melanagromyza artemisiae Spencer, 1957
<u>Source</u>: Europeana <br><u>4DCity URL</u>: <a href="https://4dcity.org/imgupload/1652249410.4231.jpg">https://4dcity.org/imgupload/1652249410.4231.jpg</a> <br><u>Original Image URL</u>: <a href="https://api.europeana.eu/thumbnail/v2/url.json?uri=http%3A%2F%2Fwww.nhm.ac.uk%2Fservices%2Fmedia-store%2Fasset%2F8353108de88ab92710961a6bbbf44653388e9882%2Fcontents%2Fpreview&type=IMAGE">https://api.europeana.eu/thumbnail/v2/url.json?uri=http%3A%2F%2Fwww.nhm.ac.uk%2Fservices%2Fmedia-store%2Fasset%2F8353108de88ab92710961a6bbbf44653388e9882%2Fcontents%2Fpreview&type=IMAGE</a> <br><br><u>Image-Metadata:</u><br>Filename: 1652249410.4231.jpg<br>Image Dimensions: 400x610<br>Megapixels: 0.24 MP<br>Filesize: 38.07 KB<br>
FIGURE 7 in Artemisia flaccida (Asteraceae, Anthemideae) is merged with A. fulgens, with transfer of A. flaccida var. meiguensis to A. fulgens
FIGURE 7. Artemisia fulgens var. fulgens in the wild (China, Sichuan, Kangding county, the type locality). A. Habitat and habit. B. Rhizome and roots. C. Portion of stem (left: distal portion; right: proximal portion). D. Leaves. E. Portion of a leaf (adaxial side). F. Portion of a leaf (abaxial side). G. Synflorescence. H. Capitula. I. Phyllaries (abaxial side). J. Receptacle. K. Marginal female florets. L. Disk florets.
FIGURE 5 in Artemisia flaccida (Asteraceae, Anthemideae) is merged with A. fulgens, with transfer of A. flaccida var. meiguensis to A. fulgens
FIGURE 5. Paratype sheets of Artemisia flaccida var. meiguensis (= A. fulgens var. meiguensis). A, B. China, Sichuan, Ebian county, Anonymous 13146 (CDBI). C, D. China, Sichuan, Leibo county, Liangshan Pref. Wild Plant Exped. 754 (CDBI, KUN, respectively).
FIGURE 1 in Artemisia flaccida (Asteraceae, Anthemideae) is merged with A. fulgens, with transfer of A. flaccida var. meiguensis to A. fulgens
FIGURE 1. Lectotype (A) and isolectotype (B) sheets of Artemisia fulgens. Inset a: portion of a leaf, abaxially tomentose; inset b: capitula, showing the abaxially glabrous phyllaries.
FIGURE 12 in Clarification of some morphological characters in Artemisia anomala (Asteraceae, Anthemideae), with reduction of var. tomentella and var. acuminatissima to the synonymy of the species
FIGURE 12. Specimens of Artemisia viridissima. A. N.T. Liou 1735 (PE). B. Y.T. Hou et al. 137 (QFNU).
Fig. 9. Compound 4 in Artemidubolides A T, cytotoxic unreported guaiane-type sesquiterpenoid dimers against three hepatoma cell lines from Artemisia dubia
Fig. 9. Compound 4 induces cell cycle arrest in HepG2 cells. Cells were treated with 4 (0.0, 3.5, 7.0 and 10.5 μM) for 48 h. (A) and (B) Flow cytometric analysis and cell cycle quantification of HepG2 cells. (C) and (D) Cell cycle-associated protein levels in hepatoma cells treated with compound 4 for 48 h. Western blot and statistical results of CDK4, CDK6, CyclinD1 and P21. The results were normalized to the β-actin loading control. *P <0.05, **P <0.01, and ***P <0.001, n = 3.
Fig. 6 in Biotransformation of artemisinic acid to bioactive derivatives by endophytic Penicillium oxalicum B4 from Artemisia annua L.
Fig. 6. Cytotoxic activity induced by artemisinic acid (AA) and its derivatives in HL60 (A), LS174T (B) and A549 cells (C). Cells were incubated with artemisinic acid derivatives for 24 h.
FIGURE 9 in Artemisia taibaishanensis (Asteraceae, Anthemideae), a new synonym of A. qinlingensis from China
FIGURE 9. Syntype sheets of Artemisia divaricata.
Artemisia pollen dataset for exploring the potential ecological indicators in deep time
<p>To cover the maximum range of <em>Artemisia</em> pollen morphological variation, we provide a pollen dataset of 36 species from 9 clades and 3 outgroups of <em>Artemisia </em>constrained by the phylogenetic framework, containing 4018 original pollen photographs under LM and SEM, 7200 statistical data of pollen morphological traits, together with their 30858 source plant occurrences, and corresponding environmental factors. Here, we attempt to decipher the underlying causes of the long-standing disagreement in the palynological community on the correlation between <em>Artemisia</em> pollen and aridity by using this pollen dataset to recognize the different ecological implications of <em>Artemisia</em> pollen types.</p> <p>The <em>Artemisia</em> pollen dataset as designed is open and expandable for new pollen data from<em> Artemisia</em> worldwide in order to better serve the global environment assessment and refined reconstruction of vegetation in the geological past.</p>
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