Isometric Exercise Training and Arterial Hypertension: An Updated Review

Roth GA, Abate D, Abate KH, Abay SM, Abbafati C, Abbasi N, et al. Global, regional, and national age-sex-specific mortality for 282 causes of death in 195 countries and territories, 1980–2017: a systematic analysis for the Global Burden of Disease Study 2017. Lancet [Internet]. 2018;392:1736–88.

WHO. Cardiovascular diseases (CVDs) [Internet]. 2017. https://www.who.int/news-room/fact-sheets/detail/cardiovascular-diseases-(cvds). Cited 8 May 2021.

Amini M, Zayeri F, Salehi M. Trend analysis of cardiovascular disease mortality, incidence, and mortality-to-incidence ratio: results from global burden of disease study 2017. BMC Public Health [Internet]. 2021;21:1–12. https://doi.org/10.1186/s12889-021-10429-0.

Lim SS, Vos T, Flaxman AD, Danaei G, Shibuya K, Adair-Rohani H, et al. A comparative risk assessment of burden of disease and injury attributable to 67 risk factors and risk factor clusters in 21 regions, 1990–2010: a systematic analysis for the Global Burden of Disease Study 2010. Lancet. 2012;380:2224–60.

Article  PubMed  PubMed Central  Google Scholar 

Allen M. The SAGE encyclopedia of communication research methods. Milwaukee: SAGE Publications Inc.; 2017.

Book  Google Scholar 

NICE. Hypertension in adults: diagnosis and management [Internet]. NICE guidance. NICE; 2019. http://www.nice.org.uk.

Williams B, Mancia G, Spiering W, Rosei EA, Azizi M, Burnier M, et al. 2018 ESC/ESH guidelines for the management of arterial hypertension. Eur Heart J. 2018;3021–104.

Whelton PK, Carey RM, Aronow WS, Casey DE, Collins KJ, Dennison Himmelfarb C, et al. 2017 ACC/AHA/AAPA/ABC/ACPM/AGS/APhA/ASH/ASPC/NMA/PCNA guideline for the prevention, detection, evaluation, and management of high blood pressure in adults: executive summary: a report of the American College of Cardiology/American Heart Association Task F. J Am Soc Hypertens [Internet]. 2018;579.e1–e73. https://doi.org/10.1016/j.jash.2018.06.010.

Ettehad D, Emdin CA, Kiran A, Anderson SG, Callender T, Emberson J, et al. Blood pressure lowering for prevention of cardiovascular disease and death: a systematic review and meta-analysis. The Lancet. 2016;387:957–67.

Article  Google Scholar 

Bundy JD, Li C, Stuchlik P, Bu X, Kelly TN, Mills KT, et al. Systolic blood pressure reduction and risk of cardiovascular disease and mortality a systematic review and network meta-analysis. JAMA Cardiol [Internet]. 2017;2:775–81.

Article  PubMed  PubMed Central  Google Scholar 

Lewington S, Clarke R, Qizilbash N, Peto R, Collins R. Age-specific relevance of usual blood pressure to vascular mortality: a meta-analysis of individual data for one million adults in 61 prospective studies. Lancet [Internet]. 2002;360:1903–13.

Article  PubMed  Google Scholar 

Group TSR. A randomized trial of intensive versus standard blood-pressure control. N Engl J Med [Internet]. 2015;373:2103.

Article  Google Scholar 

Forouzanfar MH, Liu P, Roth GA, Ng M, Biryukov S, Marczak L, et al. Global burden of hypertension and systolic blood pressure of at least 110 to 115 mm Hg, 1990–2015. JAMA [Internet]. 2017;317:165. https://doi.org/10.1001/jama.2016.19043.

Article  PubMed  Google Scholar 

WHO. WHO | Blood Pressure. WHO [Internet]. 2018. https://www.who.int/gho/ncd/risk_factors/blood_pressure_prevalence/en/%0A. http://www.who.int/gho/ncd/risk_factors/blood_pressure_prevalence/en/. Cited 2 Apr 2020.

Suchard MA, Schuemie MJ, Krumholz HM, You SC, Chen RJ, Pratt N, et al. Comprehensive comparative effectiveness and safety of first-line antihypertensive drug classes: a systematic, multinational, large-scale analysis. Lancet [Internet]. 2019;394:1816–26. /pmc/articles/PMC6924620/. Cited 9 May 2021.

Musini VM, Tejani AM, Bassett K, Puil L, Wright JM. Pharmacotherapy for hypertension in adults 60 years or older [Internet]. Cochrane Database Syst Rev. 2019. /pmc/articles/PMC6550717/. Cited 9 May 2021.

Gu Q, Burt VL, Dillon CF, Yoon S. Trends in antihypertensive medication use and blood pressure control among united states adults with hypertension: the national health and nutrition examination survey, 2001 to 2010. Circulation [Internet]. 2012;126:2105–14.

Article  CAS  PubMed  Google Scholar 

NHS Digital. Prescriptions dispensed in the community [Internet]. 2017. http://www.statisticsauthority.gov.uk/assessment/code-of-practice.

Wang G, Grosse SD, Schooley MW. Conducting research on the economics of hypertension to improve cardiovascular health. Am J Prev Med. 2017;S115–7.

Assiri GA, Shebl NA, Mahmoud MA, Aloudah N, Grant E, Aljadhey H, et al. What is the epidemiology of medication errors, error-related adverse events and risk factors for errors in adults managed in community care contexts? A systematic review of the international literature [Internet]. BMJ Open. 2018;19101. http://bmjopen.bmj.com/. Cited 19 May 2021.

Vrijens B, Vincze G, Kristanto P, Urquhart J, Burnier M. Adherence to prescribed antihypertensive drug treatments: longitudinal study of electronically compiled dosing histories. BMJ [Internet]. 2008;336:1114–7.

Article  PubMed  PubMed Central  Google Scholar 

Kim S, Shin DW, Yun JM, Hwang Y, Park SK, Ko YJ, et al. Medication adherence and the risk of cardiovascular mortality and hospitalization among patients with newly prescribed antihypertensive medications. Hypertension [Internet]. 2016;67:506–12. https://doi.org/10.1161/HYPERTENSIONAHA.

Article  CAS  PubMed  Google Scholar 

Rea F, Corrao G, Merlino L, Mancia G. Initial antihypertensive treatment strategies and therapeutic inertia evidence from a large population-based cohort. Hypertension [Internet]. 2018;72:846–53. https://doi.org/10.1161/HYPERTENSIONAHA.118.11308.

Article  CAS  PubMed  Google Scholar 

Farah BQ, Rodrigues SLC, Silva GO, Pedrosa RP, Correia MA, Barros MVG, et al. Supervised, but not home-based, isometric training improves brachial and central blood pressure in medicated hypertensive patients: a randomized controlled trial. Front Physiol. 2018;9.

Carlson DJ, Inder J, Palanisamy SKA, McFarlane JR, Dieberg G, Smart NA. The efficacy of isometric resistance training utilizing handgrip exercise for blood pressure management: a randomized trial. Medicine (United States). 2016;95.

Farah BQ, Germano-Soares AH, Rodrigues SLC, Santos CX, Barbosa SS, Vianna LC, et al. Acute and chronic effects of isometric handgrip exercise on cardiovascular variables in hypertensive patients: a systematic review. Sports [Internet]. 2017;5:55.

Article  PubMed  PubMed Central  Google Scholar 

Wiles JD, Coleman DA, Swaine IL. The effects of performing isometric training at two exercise intensities in healthy young males. Eur J Appl Physiol [Internet]. 2010;108:419–28.

Article  PubMed  Google Scholar 

Baross A, Wiles, Swaine I. Double-leg isometric exercise training in older men. Open Access J Sports Med. 2013;33.

Taylor KA, Wiles JD, Coleman DA, Leeson P, Sharma R, O’Driscoll JM. Neurohumoral and ambulatory haemodynamic adaptations following isometric exercise training in unmedicated hypertensive patients. J Hypertens. 2019;37:827–36.

Article  CAS  PubMed  Google Scholar 

Wiles JD, Goldring N, Coleman D. Home-based isometric exercise training induced reductions resting blood pressure. Eur J Appl Physiol. 2017;117:83–93.

Article  PubMed  Google Scholar 

Edwards JJ, Wiles J, O’Driscoll J. Mechanisms for blood pressure reduction following isometric exercise training: a systematic review and meta-analysis. J Hypertens. 2022;Publish Ah.

Owen A, Wiles J, Swaine I. Effect of isometric exercise on resting blood pressure: a meta analysis. J Hum Hypertens [Internet]. 2010;24:796–800.

Article  CAS  PubMed  Google Scholar 

Smart NA, Way D, Carlson D, Millar P, McGowan C, Swaine I, et al. Effects of isometric resistance training on resting blood pressure: individual participant data meta-analysis. J Hypertens [Internet]. 2019;37:1927–38.

Article  CAS  PubMed  PubMed Central  Google Scholar 

Carlson DJ, Dieberg G, Hess NC, Millar PJ, Smart NA. Isometric exercise training for blood pressure management: a systematic review and meta-analysis. Mayo Clin Proc [Internet]. 2014;89:327–34. https://doi.org/10.1002/central/CN-01782136/full.

Article  PubMed  Google Scholar 

Jin YZ, Yan S, Yuan WX. Effect of isometric handgrip training on resting blood pressure in adults: a meta-analysis of randomized controlled trials. J Sports Med Phys Fit [Internet]. 2017;57:154–60.

Google Scholar 

Inder JD, Carlson DJ, Dieberg G, Mcfarlane JR, Hess NCL, Smart NA. Isometric exercise training for blood pressure management: a systematic review and meta-analysis to optimize benefit. Hypertens Res. 2016;39:89–94.

Article  Google Scholar 

Loaiza-Betancur AF, Chulvi-Medrano I. Is low-intensity isometric handgrip exercise an efficient alternative in lifestyle blood pressure management? A systematic review. Sports Health [Internet]. 2020;12:470–7. https://doi.org/10.1177/1941738120943882.

Article  PubMed  PubMed Central  Google Scholar 

López-Valenciano A, Ruiz-Pérez I, Ayala F, Sánchez-Meca J, Vera-Garcia FJ. Updated systematic review and meta-analysis on the role of isometric resistance training for resting blood pressure management in adults. J Hypertens. 2019;1320–33.

Hansford H, Parmenter B, Wewege M, Mckleod K, Smart N, Schutte A, et al. the Effectiveness and safety of isometric resistance training for adults with raised blood pressure: a systematic review and meta-analysis. J Hypertens [Internet]. 2021;39:e408

Edwards J, De Caux A, Donaldson J, Wiles J, O’Driscoll J. Isometric exercise versus high-intensity interval training for the management of blood pressure: a systematic review and meta-analysis. Br J Sports Med [Internet]. 2022;56:506–14.

Article  PubMed  Google Scholar 

Wiley RL, Dunn CL, Cox RH, Hueppchen NA, Scott MS. Isometric exercise training lowers resting blood pressure. Med Sci Sports Exerc [Internet]. 1992;24:749–54.

CAS  PubMed  Google Scholar 

Law MR, Morris JK, Wald NJ. Use of blood pressure lowering drugs in the prevention of cardiovascular disease: Meta-analysis of 147 randomised trials in the context of expectations from prospective epidemiological studies. BMJ (Online) [Internet]. 2009;338:1245. http://www.bmj.com/. Cited 5 Feb 2021.

Somani Y, Baross A, Levy P, Zinszer K, Milne K, Swaine I, et al. Reductions in ambulatory blood pressure in young normotensive men and women after isometric resistance training and its relationship with cardiovascular reactivity. Blood Press Monit [Internet]. 2017;22:1–7. https://pubmed.ncbi.nlm.nih.gov/27824678/. Cited 19 Feb 2022.

Taylor KA, Wiles JD, Coleman DA, Leeson P, Sharma R, O’Driscoll JM. Neurohumoral and ambulatory haemodynamic adaptations following isometric exercise training in unmedicated hypertensive patients. J Hypertens [Internet]. 2019;37:827–36.

Article  CAS  PubMed  Google Scholar 

Baross AW, Kay AD, Baxter BA, Wright BH, McGowan CL, Swaine IL. Effects of isometric resistance training and detraining on ambulatory blood pressure and morning blood pressure surge in young normotensives. Front Physiol. 2022;0:1872.

Stiller-Moldovan C, Kenno K, McGowan CL. Effects of isometric handgrip training on blood pressure (resting and 24 h ambulatory) and heart rate variability in medicated hypertensive patients. Blood Press Monit [Internet]. 2012;17:55–61.

Article  PubMed  Google Scholar 

Pagonas N, Vlatsas S, Bauer F, Seibert FS, Zidek W, Babel N, et al. Aerobic versus isometric handgrip exercise in hypertension: a randomized controlled trial. J Hypertens [Internet]. 2017;35:2199–206.

Article  CAS  PubMed  Google Scholar 

Vollmer WM, Appel LJ, Svetkey LP, Moore TJ, Vogt TM, Conlin PR, et al. Comparing office-based and ambulatory blood pressure monitoring in clinical trials. J Hum Hypertens [Internet]. 2005;19:77–82.

Article  CAS  PubMed  Google Scholar 

Niiranen TJ, Mäki J, Puukka P, Karanko H, Jula AM. Office, home, and ambulatory blood pressures as predictors of cardiovascular risk. Hypertension [Internet]. 2014;64:281–6. https://doi.org/10.1161/hypertensionaha.114.03292.

Article  CAS  PubMed  Google Scholar 

Staplin N, de la Sierra A, Ruilope LM, Emberson JR, Vinyoles E, Gorostidi M, et al. Relationship between clinic and ambulatory blood pressure and mortality: an observational cohort study in 59 124 patients. Lancet [Internet]. 2023;401:2041–50.

Article  PubMed  Google Scholar 

Hansen TW, Li Y, Boggia J, Thijs L, Richart T, Staessen JA. Predictive role of the nighttime blood pressure. Hypertension [Internet]. 2011;57:3–10.

Article  CAS  PubMed  Google Scholar 

Agarwal R, Light RP. The effect of measuring ambulatory blood pressure on nighttime sleep and daytime activity—implications for dipping. Clin J Am Soc Nephrol. 2010;5:281–5.

Article  PubMed  PubMed Central 

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