Why the study?
Previous results regarding exercise and physiotherapy in HFpEF rehabilitation remained unclear, partly due to limited statistical power and small sample sizes.
Do exercise training and physiotherapy improve exercise capacity, quality of life, and diastolic function in patients with HFpEF?
Do exercise training and physiotherapy improve exercise capacity, quality of life, and diastolic function in patients with HFpEF?
Functional electrical stimulation, inspiratory muscle training, and endurance training improve functional capacity and quality of life in HFpEF patients, while combined endurance and resistance training may also improve diastolic function.
Combined exercise may improve diastolic function in HFpEF; extends prior evidence on capacity and quality of life to echocardiographic parameters.
BACKGROUND: Exercise and physiotherapy are accepted as an important contribution to the rehabilitation of patients with heart failure with preserved ejection fraction (HFpEF). But the previous results are unclear partly because of their limited power and small sample sizes. AIMS: We aimed to understand better the effects of two exercise training interventions and two modalities of physiotherapies on exercise capacity, quality of life (QoL), and diastolic dysfunction in HFpEF patients. METHODS: The Cochrane Library, EMBASE, and MEDLINE via PubMed were searched for randomized controlled trials from their inception to May 2021. The effect size was estimated as mean differences (MD) with 95% confidence intervals (CI). RESULTS: A total of 14 articles on 13 trials were included in this meta-analysis with 673 HFpEF patients. The pooling revealed that peak oxygen uptake was improved by endurance training, functional electrical stimulation (FES), and inspiratory muscle training (IMT). Similar results were observed for a 6-minute walk test and QoL. A combination of endurance and resistance training (combined exercise) was beneficial to the ratio of peak early to late diastolic mitral inflow velocities (MD [95% CI]: -2.90 [-4.97, -0.83]; P = 0.006) and the early diastolic mitral annual velocity (MD [95% CI]: 1.40 [0.68, 2.12]; P = 0.006]. IMT improved the ventilation/carbon dioxide ratio slope (MD [95% CI]: -3.36 ml/kg/min [-6.17, -0.54]; P = 0.019]. CONCLUSIONS: FES and IMT improve functional capacity and QoL without a change in diastolic function in HFpEF patients, and the outcomes are similar to endurance training. Notably, combined exercise may improve diastolic function.
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Zhuang et al. (2021) studied this question.
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