This study aimed at assessing (1) the effect of congested match schedules on match loads and well-being as well as (2) pre-match well-being and level of opponents on match loads in elite women's rugby sevens. Eleven players of the Brazilian women's rugby sevens national team were investigated across three 2019-20 HSVC World Rugby Women's Seven Series tournaments to assess: (1) within-tournament match-to-match changes in various external and internal match load measures; (2) daily changes in players' well-being collected before the commencement of a tournament (day one) and during or post-tournament (day two to day four); and (3) the effect of pre-match well-being and level of opponents (high vs. low level) on match loads. Results revealed no between-match significant differences ( > 0.05) in most of the investigated match load measures. A congested match schedule negatively affected perceived fatigue ( < 0.001), muscle soreness ( = 0.004) and overall wellness ( < 0.001), with post hoc analyses showing decreased values on day four compared to previous days (small-to-moderate effect sizes). Finally, pre-match well-being and level of opponents did not affect match loads ( > 0.05). These results highlighted the necessity to embrace a multidimensional approach when adopting monitoring systems in elite women's rugby sevens during tournaments and to consider various contextual factors possibly affecting match loads, besides those investigated.
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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8623102 | PMC |
http://dx.doi.org/10.3390/ijerph182212132 | DOI Listing |
Stem cells adapt to their local mechanical environment by rearranging their cytoskeleton, which underpins the evolution of their shape and fate as well as the emergence of tissue structure and function. Here, in the second part of a two-part experimental series, we aimed to elucidate spatiotemporal cytoskeletal remodeling and resulting changes in morphology and mechanical properties of cells and their nuclei. Akin to mechanical testing of the most basic living and adapting unit of life, i.
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Faculty of Sport Sciences, University of Extremadura, Cáceres, Spain.
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INSERM UMR1093-CAPS, University of Bourgogne, University of Franche-Comté of Sport Sciences, Dijon, France.
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