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44 results for “Erythrina”
FIGURES 1–8 in A new species of Eurytoma (Hymenoptera: Eurytomidae) attacking Quadrastichus spp. (Hymenoptera: Eulophidae) galling Erythrina spp. (Fabaceae), with a summary of African Eurytoma biology and species checklist
FIGURES 1–8. Eurytoma erythrinae, female: 1, lateral habitus; 2, anterior head; 3, dorsal mesosoma; 4, lateral mesosoma; 5, propodeum; 6, anterior prothoracic leg; 7, lateroventral mesosoma; 8, lateral gaster.
FIGURES 3– 9 in The tetrastichine wasps (Hymenoptera: Chalcidoidea: Eulophidae) associated with galls on Erythrina species (Fabaceae) in South Africa, with the description of five new species
FIGURES 3– 9. Quadrastichus ingens sp. n.: 3, forewing, female; 4, mesosoma, female; 5, head, frontal view, female; 6, antenna, male; 7, antenna, female; 8, ovipositor and middle tibia, same scale, female; 9, male genitalia.
FIGURES 31–38 in The tetrastichine wasps (Hymenoptera: Chalcidoidea: Eulophidae) associated with galls on Erythrina species (Fabaceae) in South Africa, with the description of five new species
FIGURES 31–38. Aprostocetus spp.: 31–37, A. nitens sp. n.: 31, forewing, female; 32, antenna, female; 33, antenna, male; 34, mesosoma, female; 35, head, frontal view, female; 36, ovipositor and middle tibia, same scale, female; 37, male genitalia. 38, A. exertus La Salle, female, lateral view.
FIGURES 10–16 in The tetrastichine wasps (Hymenoptera: Chalcidoidea: Eulophidae) associated with galls on Erythrina species (Fabaceae) in South Africa, with the description of five new species
FIGURES 10–16. Quadrastichus gallicola sp. n.: 10, mesosoma, female; 11, forewing, female; 12, head, frontal view, female; 13, antenna, male; 14, antenna, female; 15, ovipositor and middle tibia, same scale, female; 16, male genitalia.
FIGURES 17–23 in The tetrastichine wasps (Hymenoptera: Chalcidoidea: Eulophidae) associated with galls on Erythrina species (Fabaceae) in South Africa, with the description of five new species
FIGURES 17–23. Quadrastichus bardus sp. n.: 17, forewing, female; 18, mesosoma, female; 19, head, frontal view, female; 20, antenna, male; 21, antenna, female; 22, ovipositor and middle tibia, same scale, female; 23, male genitalia.
Fig. 2. Selected 1H–1H in Coumaronochromones, flavanones, and isoflavones from the twigs and leaves of Erythrina subumbrans inhibit PTP1B and nitric oxide production
Fig. 2. Selected 1H–1H COSY (green bold lines) and HMBC (blue arrows) correlations of compounds 1, 2, 4–7, 15, 25, and 26. (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)
Fig. 5 in Coumaronochromones, flavanones, and isoflavones from the twigs and leaves of Erythrina subumbrans inhibit PTP1B and nitric oxide production
Fig. 5. Experimental ECD spectra of 15a and 15b and calculated ECD spectra for (1′′R,2′′R)-15 and (1′′S,2′′S)-15.
Fig. 5 in Dimeric Erythrina alkaloids as well as their key units from Erythrina variegata
Fig. 5. The dose-dependent response of erythrivarine T in HEI–OC–1 cells treated with neomycin (20 mM). Cell survival (mean ± SD, n = 3) after treatment with various concentrations of compounds and/or neomycin (Neo). The significance was determined by Student's t-test (*p <0.05, **p <0.01, ***p <0.001 vs. neomycin-only group).
Anxiety Control by Erythrina Mulungu
ClinicalTrials.gov study NCT01948622. IPD Sharing: Not stated. Countries: 1. Publications: 4.
Figure 2 in Systematics and phylogeography of the Dysdera erythrina species complex (Araneae, Dysderidae) in Sardinia
Figure 2. Chronogram of the species sampled in the present study, based on the preferred Bayesian tree obtained by simultaneous analyses of the cox1, 16S, nad1, 28S and H3 partitions. Bars on branches denote support as follows: anterior bar refers to posterior probability, middle bar to maximum likelihood bootstrap support, posterior bar to parsimony jackknife support. Black bar: posterior probability>0.95 or ML bootstrap, Parismony jackknife> 70, grey bar: posterior probability <0.95 or ML bootstrap, Parsimo- ny jackknife <70, white bar: this particular clade was not recovered in the analyses. Numbers on branches are the age of the clade in millions of years before the present, estimated using penalized likelihood (set penalty=add, smoothing=3200), number in brackets refer to bootstrap confidence intervals.
FIGURES 1–2. 1 in The tetrastichine wasps (Hymenoptera: Chalcidoidea: Eulophidae) associated with galls on Erythrina species (Fabaceae) in South Africa, with the description of five new species
FIGURES 1–2. 1, leaf galls on Erythrina latissima; 2, leaf galls on Erythrina lysistemon.
Fig. 4 in Coumaronochromones, flavanones, and isoflavones from the twigs and leaves of Erythrina subumbrans inhibit PTP1B and nitric oxide production
Fig. 4. Key ROESY correlations of compound 15.
Fig. 3. ECD spectra for compounds 1–3 in Coumaronochromones, flavanones, and isoflavones from the twigs and leaves of Erythrina subumbrans inhibit PTP1B and nitric oxide production
Fig. 3. ECD spectra for compounds 1–3.
Fig. 1 in Coumaronochromones, flavanones, and isoflavones from the twigs and leaves of Erythrina subumbrans inhibit PTP1B and nitric oxide production
Fig. 1. Chemical structures of compounds 1–27.
Fig. 3 in Dimeric Erythrina alkaloids as well as their key units from Erythrina variegata
Fig. 3. The key ROESY correlations of 1 and 2 in the 3D models.
Fig. 2. 1H–1H in Dimeric Erythrina alkaloids as well as their key units from Erythrina variegata
Fig. 2. 1H–1H COSY and key HMBC correlations of 1 and 2.
Fig. 1 in Dimeric Erythrina alkaloids as well as their key units from Erythrina variegata
Fig. 1. Chemical structures of compounds 1–12.
Fig. 4 in Dimeric Erythrina alkaloids as well as their key units from Erythrina variegata
Fig. 4. Proposed biosynthesis of the dimeric alkaloids 1–10.
Fig. 3 in Alkaloids from the stem barks of Erythrina stricta
Fig. 3. Hypothetical biogenetic pathways of compounds 16–19.
Fig. 2 in Alkaloids from the stem barks of Erythrina stricta
Fig. 2. The experimental and calculated ECD spectra of 15 and 18 in CH3OH(left: 15; right: 18).
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OpenNeuro
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