Showing 141 - 160 results of 199 for search '((((pinn OR ping) OR (mice OR spike)) OR pine) OR (sspinal OR (pin OR min)))', query time: 0.06s Refine Results
  1. 141

    The training intensity distribution of marathon runners across performance levels by Muniz-Pumares, Daniel, Hunter, Ben, Meyler, Samuel, Maunder, Ed, Smyth, Barry

    Published 2024
    “…Results: Training volume across all runners was 45.1±26.4 km·wk-1, but the fastest runners within the dataset (marathon time 120-150 min) accumulated >3 times more volume than slower runners. …”
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    Increasing the frequency of physical activity very brief advice for cancer patients. Development of an intervention using the behaviour change wheel by Webb, Justin, Foster, Jo, Poulter, E.

    Published 2016
    “…This was not defined a priori but emerged during the development process. RESULTS: A 60 min training intervention, delivered in either a face-to-face or online setting, with follow-up at eight weeks, was designed to improve the capability, opportunity and motivation of nurses to deliver VBA on physical activity to people living with cancer. …”
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    Aspects of modelling variability of single cell lag time for Cronobacter spp. after exposure to sublethal heat treatment in normal and stressful environments by Xu, Yizhi

    Published 2014
    “…The effect of heat stress (49 oC for 7 min) and subsequent recovery temperatures (7 oC to 22 oC) on the individual cellular lag times of one strain of Cronobacter turicensis were analysed using optical density measurements. …”
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  20. 160

    3D-printed Franz cells - update on optimization of manufacture and evaluation by Sil dos Santos, Bruno, Belgrave, Rebecca G., Alvarez, Miguel P., Luo, Lin, Cristofoli, Mignon, Penny, Matthew R., Moore, David J., Hadgraft, Jonathan, Hilton, Stephen T., Lane, Majella E.

    Published 2020
    “…Permeation studies using transparent 3D printed constructs resulted in 12.85 ± 0.53 μg cm ‑2 caffeine recovery in the receptor solution after 180 min with comparable permeant recovery, 11.49 ± 1.04 μg cm ‑2, for the glass homologues. …”
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