Showing 81 - 100 results of 43,125 for search '(( 5 nm decrease ) OR ((( 50 ((a decrease) OR (mean decrease)) ) OR ( 5 we decrease ))))', query time: 0.95s Refine Results
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    mTORC1 hyperactivation led to a decreased autophagic activity in the podocytes. by Wakiko Iwata (8600457)

    Published 2020
    “…(<b>B</b>) <i>FIP200</i> and <i>ATG101</i> mRNA expressions were decreased in the primary cultured podocytes from <i>Tsc2</i><sup>Δ<i>podocyte</i></sup>. …”
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    DataSheet_1_Circulating exosomes decrease in size and increase in number between birth and age 7: relations to fetal growth and liver fat.pdf by Marta Díaz (337207)

    Published 2023
    “…Circulating exosomes of SGAs (as compared to those of AGAs) had a larger size at birth [146.8 vs 137.8 nm, respectively; p=0.02], and were in lower number at ages 2 [4.3x10<sup>11</sup>vs 5.6x10<sup>11</sup> particles/mL, respectively; p=0.01] and 7 [6.3x10<sup>11</sup>vs 6.8x10<sup>11</sup> particles/mL, respectively; p=0.006]. …”
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    Functional Plasmonic Microscope: Characterizing the Metabolic Activity of Single Cells via Sub-nm Membrane Fluctuations by Suraj D. Khochare (18288990)

    Published 2024
    “…The FPM can accurately image and quantify the subnanometer membrane fluctuations with a spatial resolution of 0.5 μm in real time. These active cell membrane fluctuations are caused by metabolic activities across the cell membrane. …”
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    Functional Plasmonic Microscope: Characterizing the Metabolic Activity of Single Cells via Sub-nm Membrane Fluctuations by Suraj D. Khochare (18288990)

    Published 2024
    “…The FPM can accurately image and quantify the subnanometer membrane fluctuations with a spatial resolution of 0.5 μm in real time. These active cell membrane fluctuations are caused by metabolic activities across the cell membrane. …”
  13. 93

    Functional Plasmonic Microscope: Characterizing the Metabolic Activity of Single Cells via Sub-nm Membrane Fluctuations by Suraj D. Khochare (18288990)

    Published 2024
    “…The FPM can accurately image and quantify the subnanometer membrane fluctuations with a spatial resolution of 0.5 μm in real time. These active cell membrane fluctuations are caused by metabolic activities across the cell membrane. …”
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