Device-Measured 24-Hour Movement Behaviors and Blood Pressure: A 6-Part Compositional Individual Participant Data Analysis in the ProPASS Consortium
Abstract
BACKGROUND: Blood pressure (BP)–lowering effects of structured exercise are well-established. Effects of 24-hour movement behaviors captured in free-living settings have received less attention. This cross-sectional study investigated associations between a 24-hour behavior composition comprising 6 parts (sleeping, sedentary behavior, standing, slow walking, fast walking, and combined exercise-like activity [eg, running and cycling]) and systolic BP (SBP) and diastolic BP (DBP). METHODS: Data from thigh-worn accelerometers and BP measurements were collected from 6 cohorts in the Prospective Physical Activity, Sitting and Sleep consortium (ProPASS) (n=14 761; mean±SD, 54.2±9.6 years). Individual participant analysis using compositional data analysis was conducted with adjustments for relevant harmonized covariates. Based on the average sample composition, reallocation plots examined estimated BP reductions through behavioral replacement; the theoretical benefits of optimal (ie, clinically meaningful improvement in SBP [2 mm Hg] or DBP [1 mm Hg]) and minimal (ie, 5-minute reallocation) behavioral replacements were identified. RESULTS: The average 24-hour composition consisted of sleeping (7.13±1.19 hours), sedentary behavior (10.7±1.9 hours), standing (3.2±1.1 hours), slow walking (1.6±0.6 hours), fast walking (1.1±0.5 hours), and exercise-like activity (16.0±16.3 minutes). More time spent exercising or sleeping, relative to other behaviors, was associated with lower BP. An additional 5 minutes of exercise-like activity was associated with estimated reductions of –0.68 mm Hg (95% CI, –0.15, –1.21) SBP and –0.54 mm Hg (95% CI, –0.19, 0.89) DBP. Clinically meaningful improvements in SBP and DBP were estimated after 20 to 27 minutes and 10 to 15 minutes of reallocation of time in other behaviors into additional exercise. Although more time spent being sedentary was adversely associated with SBP and DBP, there was minimal impact of standing or walking. CONCLUSIONS: Study findings reiterate the importance of exercise for BP control, suggesting that small additional amounts of exercise are associated with lower BP in a free-living setting.
Article Details
Authors (30)
Joanna M. Blodgett
Institute of Sport Exercise and Health, Division of Surgery and Interventional Science, University College London, UK (J.M.B., M.H.).
Matthew N. Ahmadi
Andrew J. Atkin
Richard M. Pulsford
Faculty of Health and Life Sciences, University of Exeter, United Kingdom (R.M.P.).
Vegar Rangul
HUNT Research Centre, Department of Public Health and Nursing, Faculty of Medicine and Health Sciences, Norwegian University of Science and Technology, Levanger (V.R.).
Sebastien Chastin
Hsiu-Wen Chan
School of Public Health, University of Queensland, Brisbane, Australia (H.-W.C., G.D.M.).
Kristin Suorsa
Department of Public Health (K.S., S.S.), University of Turku and Turku University Hospital, Finland.
Esmée A. Bakker
Department of Physical Education and Sports, Faculty of Sport Sciences, Sport and Health University Research Institute, University of Granada, Spain (E.A.B., T.M.H.E.).
Nidhi Gupta
Pasan Hettiarachchi
Peter J. Johansson
Lauren B. Sherar
Borja del Pozo Cruz
Faculty of Sport Sciences, and Faculty of Biomedical and Health Sciences, Universidad Europea de Madrid, Madrid, Spain (B.d.P.C.).
Nicholas A. Koemel
Gita D. Mishra
School of Public Health, University of Queensland, Brisbane, Australia (H.-W.C., G.D.M.).
Thijs M.H. Eijsvogels
Department of Medical BioSciences, Exercise Physiology Research Group, Radboud University Medical Center, Nijmegen, The Netherlands (T.M.H.E.).
Sari Stenholm
Alun D. Hughes
Armando Teixeira-Pinto
School of Public Health (A.T.-P.), Faculty of Medicine and Health, University of Sydney, Australia.
Ulf Ekelund
I-Min Lee
Andreas Holtermann
Annemarie Koster
Emmanuel Stamatakis
Mark Hamer
Hans Savelberg
Bastiaan De Galan
Carla van de Kallen
Dick H.J. Thijssen