scholarly journals Immediate and Long‐term effects of the COVID‐19 pandemic and lockdown on physical activity in patients with implanted cardiac devices

Author(s):  
Lindsey Rosman ◽  
Anthony J Mazzella ◽  
Anil Gehi ◽  
Yutong Liu ◽  
Quefeng Li ◽  
...  
2020 ◽  
Author(s):  
Lillemor Amanda Nyberg ◽  
Carl Johan Sundberg ◽  
Per Wändell ◽  
Jan Kowalski ◽  
Mai-Lis Hellenius

Abstract Background: Low physical performance is a predictor of morbidity and mortality. This study looks at long-term effects of an exercise intervention on maximal step-up height (MSH) in individuals with low physical function. Furthermore, we studied correlates to changes in MSH. Methods: Female patients (n=101), mean(SD) age of 52(11) years, were recruited for a 3-month group exercise intervention including 2-3 sessions/week of mixed aerobic fitness and strength training. MSH, weight, body mass index (BMI), waist circumference, maximal oxygen consumption (VO₂-max), self-reported health (SF-36) and physical activity (PA) were measured at baseline (T0), after 3 months (T1) and after 14-30(mean 22) months (T2). Relationships between changes in MSH (cm) and age, baseline MSH, time to follow-up, changes in anthropometric measurements, VO₂-max, SF-36 and PA were studied with regression analyses. Results: MSH, significantly, increased from T0 to T1, 27.2(5.7) to 29.0(5.5) cm and decreased to 25.2(5.5) cm at T2. Time to follow-up (B=-0.42, p<0.001) and change in BMI (B=-0.29, p=0.012) correlated significantly to changes in MSH. Waist circumference, VO₂-max, PF and exercise/physical activity levels were significantly improved at T2, while BMI did not change. In a univariate logistic regression model, maintenance of MSH correlated to the extent of mixed training (OR 3.33, 95% CI 1.25-8.89). In a multivariate logistic regression model adjusted for important factors the correlation was not significant. However, MSH was significantly higher in individuals participating in 2-3 session per week compared to one session. Conclusions: A 3-month group exercise intervention increased MSH, improved fitness, decreased risk in female patients with elevated cardio-metabolic risk. After an average of 22 months MSH was reduced while positive effects remained for waist circumference, VO₂-max, physical function and physical activity. However, regular group exercise 2-3 times per week with mixed aerobic fitness and strength training was associated with maintenance of MSH in a subgroup of patients. We suggest that such an intervention including regular support from healthcare professionals is a successful approach for maintaining improved leg-muscle strength among primary care patients.


2019 ◽  
Vol 91 (2) ◽  
pp. 209-218 ◽  
Author(s):  
Pablo Corres ◽  
Aitor MartinezAguirre-Betolaza ◽  
Simon M. Fryer ◽  
Ilargi Gorostegi-Anduaga ◽  
Iñaki Arratibel-Imaz ◽  
...  

2006 ◽  
Vol 55 (2) ◽  
pp. 229-236 ◽  
Author(s):  
HISAO SUZUKI ◽  
HIDETAKA NISHIKAWA ◽  
NOBUYUKI MIYATAKE ◽  
YUKO NISHIDA ◽  
DA-HONG WANG ◽  
...  

Author(s):  
Lillemor A. Nyberg ◽  
Carl Johan Sundberg ◽  
Per Wändell ◽  
Jan Kowalski ◽  
Mai-Lis Hellénius

Abstract Background Low physical performance is a predictor of morbidity and mortality. This study looks at long-term effects of an exercise intervention on maximal step-up height (MSH) in individuals with low physical function. Factors associated with changes in MSH was studied. Methods Female patients (n = 101), mean (SD) age of 52 (11) years, were recruited for a 3-month group exercise intervention including 2–3 sessions/week of mixed aerobic fitness and strength training. MSH, weight, body mass index (BMI), waist circumference, maximal oxygen consumption (VO2-max), self-reported health (SF-36) and physical activity (PA) were measured at baseline (T0), after 3 months (T1) and after 14–30 (mean 22) months (T2). Relationships between changes in MSH (cm) and age, baseline MSH, time to follow-up, changes in anthropometric measurements, VO2-max, SF-36 and PA were studied with regression analyses. Results MSH, significantly, increased from T0 to T1, 27.2 (5.7) to 29.0 (5.5) cm and decreased to 25.2 (5.5) cm at T2. Time to follow-up (B = − 0.42, p < 0.001) and change in BMI (B = − 0.29, p = 0.012) correlated significantly to changes in MSH. Waist circumference, VO2-max, PF and exercise/physical activity levels were significantly improved at T2, while BMI did not change. In a univariate logistic regression model, maintenance of MSH correlated to the extent of mixed training (OR 3.33, 95% CI 1.25–8.89). In a multivariate logistic regression model adjusted for important factors the correlation was not significant. However, MSH was significantly higher in individuals participating in 2–3 session per week compared to one session. Conclusions A 3-month group exercise intervention increased MSH, improved fitness, decreased risk in female patients with elevated cardio-metabolic risk. After an average of 22 months MSH was reduced while positive effects remained for waist circumference, VO2-max, physical function and physical activity. However, regular group exercise 2–3 times per week with mixed aerobic fitness and strength training was associated with maintenance of MSH in a subgroup of patients. We suggest that such an intervention including regular support from healthcare professionals is a successful approach for maintaining improved leg-muscle strength among primary care patients. Trial registration ISRCTN21220201 September 18, 2019, retrospectively registered.


2008 ◽  
Vol 33 (2) ◽  
pp. 393-401 ◽  
Author(s):  
Dorine C.M. Collard ◽  
Evert A.L.M. Verhagen ◽  
Marijke J.M. Chin A Paw ◽  
Willem van Mechelen

An increase in the physical activity of individuals has many health benefits, but a drawback of an increase in physical activity is the risk of related injuries. To reduce the short- and long-term effects in terms of social and economic consequences, prevention of physical activity injuries is an important challenge. A sequence of prevention model has been proposed that aims to prevent physical activity injuries in different steps. The model includes (i) identification of the problem in terms of incidence and severity of physical activity injuries, (ii) identification of the risk factors and injury mechanisms that play a role in the occurrence of physical activity injuries, (iii) introduction of measures that are likely to reduce the future risk and (or) severity of physical activity injuries, and (iv) evaluation of the effectiveness of the measures by conducting a randomized controlled trial (RCT). This review describes what is currently known about all of the various aspects of the sequence of prevention in children (steps i–iv).


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