Showing 13,061 - 13,080 results of 123,599 for search '(( 2 e decrease ) OR ( 5 ((((we decrease) OR (a decrease))) OR (mean decrease)) ))', query time: 2.12s Refine Results
  1. 13061

    SMA and SM22 expression was attenuated in homogenates of palladin E11.5 knockdown embryos, in isolated umbilical vessels and in dorsal aortae. by Li Jin (40265)

    Published 2010
    “…The signals were normalized to GAPDH. Values represent the mean±SEM (n = 3). *, p<0.05. D) The expression of SMA, SM22, and SM MHC mRNA is markedly decreased in umbilical vessels isolated from E11.5 palladin +/− and −/− mice compared to Wt. …”
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  15. 13075

    High‑<i>k</i>, Ultrastretchable Self-Enclosed Ionic Liquid-Elastomer Composites for Soft Robotics and Flexible Electronics by Ankit (8938664)

    Published 2020
    “…These ultrasoft high-<i>k</i> composites enable a significant improvement in the actuation performance of DEAslongitudinal strain (5 times) and areal strain (8 times)at low applied nominal electric fields (4 V/μm). …”
  16. 13076

    High‑<i>k</i>, Ultrastretchable Self-Enclosed Ionic Liquid-Elastomer Composites for Soft Robotics and Flexible Electronics by Ankit (8938664)

    Published 2020
    “…These ultrasoft high-<i>k</i> composites enable a significant improvement in the actuation performance of DEAslongitudinal strain (5 times) and areal strain (8 times)at low applied nominal electric fields (4 V/μm). …”
  17. 13077

    High‑<i>k</i>, Ultrastretchable Self-Enclosed Ionic Liquid-Elastomer Composites for Soft Robotics and Flexible Electronics by Ankit (8938664)

    Published 2020
    “…These ultrasoft high-<i>k</i> composites enable a significant improvement in the actuation performance of DEAslongitudinal strain (5 times) and areal strain (8 times)at low applied nominal electric fields (4 V/μm). …”
  18. 13078

    High‑<i>k</i>, Ultrastretchable Self-Enclosed Ionic Liquid-Elastomer Composites for Soft Robotics and Flexible Electronics by Ankit (8938664)

    Published 2020
    “…These ultrasoft high-<i>k</i> composites enable a significant improvement in the actuation performance of DEAslongitudinal strain (5 times) and areal strain (8 times)at low applied nominal electric fields (4 V/μm). …”
  19. 13079
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