Post-exercise hypotensive responses following an acute bout of aquatic and overground treadmill walking in people post-stroke: a pilot study

2015 ◽  
Vol 22 (3) ◽  
pp. 231-238 ◽  
Author(s):  
Byron Lai ◽  
Brenda Jeng ◽  
Konstantinos Vrongistinos ◽  
Taeyou Jung
2021 ◽  
Vol 101 ◽  
pp. 103455
Author(s):  
Jessica K. Suagee-Bedore ◽  
Yeting Shen ◽  
Shea Porr ◽  
Ivan D. Girard ◽  
Karen Bennett-Wimbush ◽  
...  

2014 ◽  
Vol 125 ◽  
pp. S145
Author(s):  
R. Chieffo ◽  
F. Ferrari ◽  
P. Battista ◽  
E. Houdayer ◽  
A. Nuara ◽  
...  

2019 ◽  
Vol 27 (4) ◽  
pp. 482-488
Author(s):  
Charity B. Breneman ◽  
Christopher E. Kline ◽  
Delia West ◽  
Xuemei Sui ◽  
Xuewen Wang

This study investigated the acute effect of exercise on sleep outcomes among healthy older women by comparing days with structured exercise versus days without structured exercise during 4 months of exercise training. Participants (n = 51) in this study had wrist-worn actigraphic sleep data available following at least 3 days with structured exercise and 3 days without structured exercise at mid-intervention and at the end of intervention. The exercise intervention was treadmill walking. Multilevel models were used to examine whether structured exercise impacted sleep outcomes during the corresponding night. Overall, 1,362 nights of data were included in the analyses. In unadjusted and adjusted models, bedtimes were significantly earlier on evenings following an acute bout of structured exercise than on evenings without structured exercise. No other sleep parameters differed between exercise and nonexercise days. Understanding the effects of exercise on sleep in this understudied population may help to improve their overall sleep quality.


2015 ◽  
Vol 37 (5) ◽  
pp. 434-440 ◽  
Author(s):  
Yanna Tong ◽  
Brian Forreider ◽  
Xinting Sun ◽  
Xiaokun Geng ◽  
Weidong Zhang ◽  
...  

2014 ◽  
Vol 171 (3) ◽  
pp. 343-352 ◽  
Author(s):  
Stella S Daskalopoulou ◽  
Alexandra B Cooke ◽  
Yessica-Haydee Gomez ◽  
Andrew F Mutter ◽  
Andreas Filippaios ◽  
...  

BackgroundIrisin, a recently discovered myokine, has been shown to induce browning of white adipose tissue, enhancing energy expenditure and mediating some of the beneficial effects of exercise. We aimed to estimate the time frame of changes in irisin levels after acute exercise and the effect of different exercise workloads and intensities on circulating irisin levels immediately post-exercise.MethodsIn a pilot study, four healthy subjects (22.5±1.7 years) underwent maximal workload exercise (maximal oxygen consumption, VO2 max) and blood was drawn at prespecified intervals to define the time frame of pre- and post-exercise irisin changes over a 24-h period. In the main study, 35 healthy, non-smoking (23.0±3.3 years) men and women (n=20/15) underwent three exercise protocols ≥48-h apart, in random order: i) maximal workload (VO2 max); ii) relative workload (70% of VO2 max/10 min); and iii) absolute workload (75 W/10 min). Blood was drawn immediately pre-exercise and 3 min post-exercise.ResultsIn the pilot study, irisin levels increased by 35% 3 min post-exercise, then dropped and remained relatively constant. In the main study, irisin levels post-exercise were significantly higher than those of pre-exercise after all workloads (all,P<0.001). Post-to-pre-exercise differences in irisin levels were significantly different between workloads (P=0.001), with the greatest increase by 34% following maximal workload (P=0.004 vs relative and absolute).ConclusionsCirculating irisin levels were acutely elevated in response to exercise, with a greater increase after maximal workload. These findings suggest that irisin release could be a function of muscle energy demand. Future studies need to determine the underlying mechanisms of irisin release and explore irisin's therapeutic potential.


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