Showing 52,281 - 52,300 results of 226,405 for search '(( a ((a decrease) OR (linear decrease)) ) OR ( a ((largest decrease) OR (larger decrease)) ))', query time: 1.46s Refine Results
  1. 52281

    Kaplan-Meier overall survival analyses of bimodally expressed genes <i>IGHM</i>, <i>IGKC</i>, <i>NCAN</i>, <i>OTOF</i>, and <i>USH2A</i>. by Marko Salmikangas (10866642)

    Published 2023
    “…<p>Elevated expression of (A) <i>IGHM</i>, (B) <i>IGKC</i>, and (C) <i>NCAN</i> and decreased expression of (D) <i>OTOF</i> and (E) <i>USH2A</i> associated with better overall survival.…”
  2. 52282
  3. 52283

    Durable and Scalable Candle Soot Icephobic Coating with Nucleation and Fracture Mechanism by Muhammad Imran Jamil (7246883)

    Published 2019
    “…We develop durable candle soot icephobic coating with RTV-1 as a low-modulus binding material. Heterogeneous nucleation on 20–40 nm candle soot particles and their fracture mechanism are discussed. …”
  4. 52284

    Durable and Scalable Candle Soot Icephobic Coating with Nucleation and Fracture Mechanism by Muhammad Imran Jamil (7246883)

    Published 2019
    “…We develop durable candle soot icephobic coating with RTV-1 as a low-modulus binding material. Heterogeneous nucleation on 20–40 nm candle soot particles and their fracture mechanism are discussed. …”
  5. 52285

    Durable and Scalable Candle Soot Icephobic Coating with Nucleation and Fracture Mechanism by Muhammad Imran Jamil (7246883)

    Published 2019
    “…We develop durable candle soot icephobic coating with RTV-1 as a low-modulus binding material. Heterogeneous nucleation on 20–40 nm candle soot particles and their fracture mechanism are discussed. …”
  6. 52286

    Durable and Scalable Candle Soot Icephobic Coating with Nucleation and Fracture Mechanism by Muhammad Imran Jamil (7246883)

    Published 2019
    “…We develop durable candle soot icephobic coating with RTV-1 as a low-modulus binding material. Heterogeneous nucleation on 20–40 nm candle soot particles and their fracture mechanism are discussed. …”
  7. 52287
  8. 52288

    Durable and Scalable Candle Soot Icephobic Coating with Nucleation and Fracture Mechanism by Muhammad Imran Jamil (7246883)

    Published 2019
    “…We develop durable candle soot icephobic coating with RTV-1 as a low-modulus binding material. Heterogeneous nucleation on 20–40 nm candle soot particles and their fracture mechanism are discussed. …”
  9. 52289

    Durable and Scalable Candle Soot Icephobic Coating with Nucleation and Fracture Mechanism by Muhammad Imran Jamil (7246883)

    Published 2019
    “…We develop durable candle soot icephobic coating with RTV-1 as a low-modulus binding material. Heterogeneous nucleation on 20–40 nm candle soot particles and their fracture mechanism are discussed. …”
  10. 52290
  11. 52291

    EX-527 treatment of stable hESCs lines affects SIRT1, peroxins, and neuronal marker expression during neural differentiation. by Maryam Esmaeili (6457958)

    Published 2024
    “…<p>A) relative mRNA expression of <i>SIRT1</i> before and after Dox treatment during neural differentiation. …”
  12. 52292

    Durable and Scalable Candle Soot Icephobic Coating with Nucleation and Fracture Mechanism by Muhammad Imran Jamil (7246883)

    Published 2019
    “…We develop durable candle soot icephobic coating with RTV-1 as a low-modulus binding material. Heterogeneous nucleation on 20–40 nm candle soot particles and their fracture mechanism are discussed. …”
  13. 52293
  14. 52294

    Novel Benzazole Derivatives Endowed with Potent Antiheparanase Activity by Valentina Noemi Madia (1585285)

    Published 2018
    “…Most of the designed derivatives were active at micromolar or submicromolar concentration, and the most promising compounds are fluorinated and/or amino acids derivatives <b>13a</b>, <b>14d</b>, and <b>15</b> that showed IC<sub>50</sub> 0.16–0.82 μM. …”
  15. 52295

    Novel Benzazole Derivatives Endowed with Potent Antiheparanase Activity by Valentina Noemi Madia (1585285)

    Published 2018
    “…Most of the designed derivatives were active at micromolar or submicromolar concentration, and the most promising compounds are fluorinated and/or amino acids derivatives <b>13a</b>, <b>14d</b>, and <b>15</b> that showed IC<sub>50</sub> 0.16–0.82 μM. …”
  16. 52296
  17. 52297

    Novel Benzazole Derivatives Endowed with Potent Antiheparanase Activity by Valentina Noemi Madia (1585285)

    Published 2018
    “…Most of the designed derivatives were active at micromolar or submicromolar concentration, and the most promising compounds are fluorinated and/or amino acids derivatives <b>13a</b>, <b>14d</b>, and <b>15</b> that showed IC<sub>50</sub> 0.16–0.82 μM. …”
  18. 52298
  19. 52299

    Novel Benzazole Derivatives Endowed with Potent Antiheparanase Activity by Valentina Noemi Madia (1585285)

    Published 2018
    “…Most of the designed derivatives were active at micromolar or submicromolar concentration, and the most promising compounds are fluorinated and/or amino acids derivatives <b>13a</b>, <b>14d</b>, and <b>15</b> that showed IC<sub>50</sub> 0.16–0.82 μM. …”
  20. 52300

    Novel Benzazole Derivatives Endowed with Potent Antiheparanase Activity by Valentina Noemi Madia (1585285)

    Published 2018
    “…Most of the designed derivatives were active at micromolar or submicromolar concentration, and the most promising compounds are fluorinated and/or amino acids derivatives <b>13a</b>, <b>14d</b>, and <b>15</b> that showed IC<sub>50</sub> 0.16–0.82 μM. …”