Self-efficacy is tightly intertwined with person-centered care and correlates with engaging in self-care behaviors, an important part of hypertension treatment. Evidence indicates that e-Health-based self-management interventions could increase self-efficacy. The objectives of this study were to investigate whether an intervention with a person-centered approach supported by e-Health technology can impact self-efficacy. Furthermore, to examine the impact of self-efficacy on hypertension management, and assess if self-efficacy can indicate which patients might see the greatest improvement on blood pressure from an e-Health-based self-management intervention for hypertension. This multicenter randomized controlled trial included 949 primary healthcare patients with hypertension. After exclusions, data was analyzed for 862 patients. The intervention group used an e-Health-based self-management system for 8 weeks. Self-efficacy was measured with the general self-efficacy (GSE) scale at inclusion, 8-week follow-up and 1-year follow-up. A significant increase in the mean GSE score in the intervention group was identified (p 0.042). No significant association between self-efficacy and blood pressure control was found. GSE scores did not significantly differ between the patients that had the best effect on blood pressure and those that had none. This study showed a significant increase in self-efficacy after the intervention. Self-management-based e-Health interventions might have a role in clinical practice to increase self-efficacy and improve general health. We found no association between self-efficacy and achieving a blood pressure below 140/90. Furthermore, no support was found to claim that self-efficacy would be an indicator of which patients might have the greatest effect from a self-management-based e-Health intervention for hypertension.
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http://dx.doi.org/10.1111/jch.14981 | DOI Listing |
Stem Cells Dev
January 2025
Department of Clinical Pharmacy and Pharmacy Practices, Faculty of Pharmacy, University Malaya, Kuala Lumpur, Malaysia.
Hypertension, commonly known as high blood pressure, is a significant health issue that increases the risk of cardiovascular diseases, stroke, and renal failure. This condition broadly encompasses both primary and secondary forms. Despite extensive research, the underlying mechanisms of systemic arterial hypertension-particularly primary hypertension, which has no identifiable cause and is affected by genetic and lifestyle agents-remain complex and not fully understood.
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Eye School of Chengdu, University of Traditional Medicine, Chengdu, 510100, Sichuan Province, China.
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Centre for Healthy Ageing, Health Futures Institute, Murdoch University, Perth, Australia.
Blood flow restriction (BFR) combined with low work rate exercise can enhance muscular and cardiovascular fitness. However, whether neural mechanisms mediate these enhancements remains unknown. This study examined changes in corticospinal excitability and motor cortical inhibition following arm cycle ergometry with and without BFR.
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School of Art and Design, Beijing Forestry University, Beijing, China.
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GENUD Toledo Research Group, Faculty of Sport Sciences, University of Castilla-La Mancha, Toledo, Spain.
Mean middle cerebral artery velocity (MCAv) and the pulsatility index (PI), at rest and in response to exercise, are important markers of cerebrovascular health status in middle-aged adults, when vascular decline assumes substantial relevance. Thus, this study aimed to describe and compare the responses of MCAv and PI to incremental exercise. Two hundred and forty-eight volunteers (50-58 years, 55% women) completed a ramp test on a cycle-ergometer.
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