Showing 861 - 880 results of 138,495 for search '(( 1 m decrease ) OR ( 5 ((((step decrease) OR (we decrease))) OR (a decrease)) ))', query time: 2.35s Refine Results
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    Stabilization of Hif-1α at early stages of infection leads to a decrease in bacterial burden. by Philip M. Elks (324793)

    Published 2013
    “…(E) Bacterial pixel counts of RNA injected larvae at 4 dpi. Dominant active <i>hif-1αb</i> (DA1) significantly decreased bacterial burden in infected larvae compared to both phenol red injected controls (PR) and dominant negative <i>hif-1αb</i> (DN1). …”
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    Local inhibition of nitrergic activity in tenotomized rats accelerates muscle regeneration by increasing fiber area and decreasing central core lesions by A.D. Seabra (6515330)

    Published 2019
    “…<div><p>Muscular atrophy is a progressive degeneration characterized by muscular proteolysis, loss of mass and decrease in fiber area. …”
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    Ligand-Controlled Magnetic Interactions in Mn<sub>4</sub> Clusters by Erik Kampert (2330428)

    Published 2009
    “…Experimentally measured magnetic moments in high magnetic fields show that, upon electron density withdrawal, the main antiferromagnetic exchange constant <i>J</i><sub>1</sub> decreases from −2.2 K for the [Mn<sub>4</sub>(OAc)<sub>4</sub>] cluster to −1.9 K for the [Mn<sub>4</sub>(H<sub>5</sub>C<sub>6</sub>COO)<sub>4</sub>] cluster and −0.6 K for the [Mn<sub>4</sub>(F<sub>3</sub>CCOO)<sub>4</sub>] cluster, while <i>J</i><sub>2</sub> decreases from −1.1 K to nearly 0 K and <i>J</i><sub>3</sub> changes to a small ferromagnetic coupling. …”
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    Ligand-Controlled Magnetic Interactions in Mn<sub>4</sub> Clusters by Erik Kampert (2330428)

    Published 2009
    “…Experimentally measured magnetic moments in high magnetic fields show that, upon electron density withdrawal, the main antiferromagnetic exchange constant <i>J</i><sub>1</sub> decreases from −2.2 K for the [Mn<sub>4</sub>(OAc)<sub>4</sub>] cluster to −1.9 K for the [Mn<sub>4</sub>(H<sub>5</sub>C<sub>6</sub>COO)<sub>4</sub>] cluster and −0.6 K for the [Mn<sub>4</sub>(F<sub>3</sub>CCOO)<sub>4</sub>] cluster, while <i>J</i><sub>2</sub> decreases from −1.1 K to nearly 0 K and <i>J</i><sub>3</sub> changes to a small ferromagnetic coupling. …”
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