Showing 421 - 440 results of 102,334 for search '(( 1 nm decrease ) OR ( 5 ((wt decrease) OR (((we decrease) OR (a decrease)))) ))', query time: 0.90s Refine Results
  1. 421

    Decrease of 4 Asp isomers at 70°C. by Kenzo Aki (386666)

    Published 2013
    “…<p><a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0058515#pone-0058515-g007" target="_blank">Figure 7a:</a> decrease of L-α-Asp with incubation of T6-Lα peptide at 70°C. …”
  2. 422

    Virus replication is decreased by treatment of HDAC inhibitors. by Angelika Danielsson (229695)

    Published 2011
    “…<p>LNCaP and PC-346C were transduced with Ad[i/PPT-E1A, E3] and Ad5 wt and BON cells were transduced with Ad[CgA-E1A] and Ad5 wt. …”
  3. 423

    Parrotfish Teeth: Stiff Biominerals Whose Microstructure Makes Them Tough and Abrasion-Resistant To Bite Stony Corals by Matthew A. Marcus (115744)

    Published 2017
    “…Its enameloid is a fluorapatite (Ca<sub>5</sub>(PO<sub>4</sub>)<sub>3</sub>F) biomineral with outstanding mechanical characteristics: the mean elastic modulus is 124 GPa, and the mean hardness near the biting surface is 7.3 GPa, making this one of the stiffest and hardest biominerals measured; the mean indentation yield strength is above 6 GPa, and the mean fracture toughness is ∼2.5 MPa·m<sup>1/2</sup>, relatively high for a highly mineralized material. …”
  4. 424

    Parrotfish Teeth: Stiff Biominerals Whose Microstructure Makes Them Tough and Abrasion-Resistant To Bite Stony Corals by Matthew A. Marcus (115744)

    Published 2017
    “…Its enameloid is a fluorapatite (Ca<sub>5</sub>(PO<sub>4</sub>)<sub>3</sub>F) biomineral with outstanding mechanical characteristics: the mean elastic modulus is 124 GPa, and the mean hardness near the biting surface is 7.3 GPa, making this one of the stiffest and hardest biominerals measured; the mean indentation yield strength is above 6 GPa, and the mean fracture toughness is ∼2.5 MPa·m<sup>1/2</sup>, relatively high for a highly mineralized material. …”
  5. 425

    Parrotfish Teeth: Stiff Biominerals Whose Microstructure Makes Them Tough and Abrasion-Resistant To Bite Stony Corals by Matthew A. Marcus (115744)

    Published 2017
    “…Its enameloid is a fluorapatite (Ca<sub>5</sub>(PO<sub>4</sub>)<sub>3</sub>F) biomineral with outstanding mechanical characteristics: the mean elastic modulus is 124 GPa, and the mean hardness near the biting surface is 7.3 GPa, making this one of the stiffest and hardest biominerals measured; the mean indentation yield strength is above 6 GPa, and the mean fracture toughness is ∼2.5 MPa·m<sup>1/2</sup>, relatively high for a highly mineralized material. …”
  6. 426

    Parrotfish Teeth: Stiff Biominerals Whose Microstructure Makes Them Tough and Abrasion-Resistant To Bite Stony Corals by Matthew A. Marcus (115744)

    Published 2017
    “…Its enameloid is a fluorapatite (Ca<sub>5</sub>(PO<sub>4</sub>)<sub>3</sub>F) biomineral with outstanding mechanical characteristics: the mean elastic modulus is 124 GPa, and the mean hardness near the biting surface is 7.3 GPa, making this one of the stiffest and hardest biominerals measured; the mean indentation yield strength is above 6 GPa, and the mean fracture toughness is ∼2.5 MPa·m<sup>1/2</sup>, relatively high for a highly mineralized material. …”
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    Effects of decreased cellulose on cell wall thickness. by Takumi Higaki (87635)

    Published 2016
    “…<p>(a) Transmission electron microscopic images of the cotyledon lateral cell wall in an <i>rsw2/kor1</i> mutant, in which cellulose production is decreased. …”
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    Spt5 protein is significantly decreased in <i>fog<sup>sk8</sup></i> embryos. by Keerthi Krishnan (269578)

    Published 2008
    “…(C–D) Whole mount immunofluorescence detection of Spt5 in WT and <i>fog<sup>sk8</sup></i> embryos at 24 hpf, showing overall decrease of Spt5 protein in <i>fog<sup>sk8</sup></i> embryos. …”
  14. 434

    Decreased function of Nrf2 in the aging heart. by Sellamuthu S. Gounder (306106)

    Published 2013
    “…<p>(<b>A</b>) <b>Decreased nuclear translocation of Nrf2 is evident in the heart of aging mice.…”
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