Showing 6,961 - 6,980 results of 31,756 for search '(( a step decrease ) OR ( 50 ((((teer decrease) OR (mean decrease))) OR (a decrease)) ))', query time: 1.03s Refine Results
  1. 6961

    Effects of alcohol on bone morphology and alcohol metabolism ability in female and male rats. by Ming Cheng (494553)

    Published 2025
    “…Green arrows indicate thinning of bone trabecula, yellow arrows indicate decreased bone marrow hematopoietic cells. Scale bar: 50 μm, 400 × . …”
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    Analyses of membrane currents elicited by depolarizing voltage ramps in EYFP/Panx1 expressing N2a cells. by Sarah Kurtenbach (475817)

    Published 2013
    “…Each bar represents the mean + SEM. (EYFP: n = 35; mPanx1: n = 28; drPanx1a: n = 24; drPanx1b: n = 36; p<0.05 = *; p<0.01 = **; p<0.001 = ***).…”
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  11. 6971

    In-Depth Sequence–Function Characterization Reveals Multiple Pathways to Enhance Enzymatic Activity by Vikas D. Trivedi (11847266)

    Published 2022
    “…Deep mutational scanning (DMS) has recently emerged as a powerful method to study protein sequence–function relationships but is not well-explored as a guide to enzyme engineering and identifying of pathways by which their catalytic cycle may be improved. …”
  12. 6972

    In-Depth Sequence–Function Characterization Reveals Multiple Pathways to Enhance Enzymatic Activity by Vikas D. Trivedi (11847266)

    Published 2022
    “…Deep mutational scanning (DMS) has recently emerged as a powerful method to study protein sequence–function relationships but is not well-explored as a guide to enzyme engineering and identifying of pathways by which their catalytic cycle may be improved. …”
  13. 6973

    In-Depth Sequence–Function Characterization Reveals Multiple Pathways to Enhance Enzymatic Activity by Vikas D. Trivedi (11847266)

    Published 2022
    “…Deep mutational scanning (DMS) has recently emerged as a powerful method to study protein sequence–function relationships but is not well-explored as a guide to enzyme engineering and identifying of pathways by which their catalytic cycle may be improved. …”
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  20. 6980