Showing 321 - 340 results of 45,126 for search '(( 5 ((mean decrease) OR (we decrease)) ) OR ( 100 ((nn decrease) OR (a decrease)) ))', query time: 0.66s Refine Results
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    Fig 16 - by Deepu Dowarha (5673440)

    Published 2020
    Subjects:
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    Image2_A Novel Plant Leaf Patch Absorbed With IL-33 Antibody Decreases Venous Neointimal hyperplasia.TIFF by Boao Xie (11621803)

    Published 2021
    “…IL-33 plays a role in the neointimal formation after vascular injury. We hypothesized that plant leaves can absorb therapeutic drug solution and can be used as a patch with drug delivery capability, and plant leaves absorbed with IL-33 antibody can decrease venous neointimal hyperplasia in the rat IVC venoplasty model.…”
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    Image1_A Novel Plant Leaf Patch Absorbed With IL-33 Antibody Decreases Venous Neointimal hyperplasia.TIFF by Boao Xie (11621803)

    Published 2021
    “…IL-33 plays a role in the neointimal formation after vascular injury. We hypothesized that plant leaves can absorb therapeutic drug solution and can be used as a patch with drug delivery capability, and plant leaves absorbed with IL-33 antibody can decrease venous neointimal hyperplasia in the rat IVC venoplasty model.…”
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    In Situ Observation of the Movement of Magnetic Particles in Polyurethane Elastomer Densely Packed Magnetic Particles Using Synchrotron Radiation X‑ray Computed Tomography by Kejun Chen (10781400)

    Published 2022
    “…The orientation angle for magnetic elastomers with <i>ϕ</i> = 0.24 was approximately 55° at 0 mT and decreased remarkably with the magnetic field. At magnetic fields above 150 mT, the orientation angle gradually decreased with the field and showed a constant value of 38° at 300 mT, suggesting that magnetic particles move and form a chain-like structure although the chains do not align perfectly in the direction of the magnetic field. …”
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    In Situ Observation of the Movement of Magnetic Particles in Polyurethane Elastomer Densely Packed Magnetic Particles Using Synchrotron Radiation X‑ray Computed Tomography by Kejun Chen (10781400)

    Published 2022
    “…The orientation angle for magnetic elastomers with <i>ϕ</i> = 0.24 was approximately 55° at 0 mT and decreased remarkably with the magnetic field. At magnetic fields above 150 mT, the orientation angle gradually decreased with the field and showed a constant value of 38° at 300 mT, suggesting that magnetic particles move and form a chain-like structure although the chains do not align perfectly in the direction of the magnetic field. …”
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