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Remote cardiac rehabilitation supported by mHealth improves exercise capacity in patients with heart failureVirtual cardiac rehab improves exercise capacity for heart failure patients

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Key Takeaway
Consider mHealth-supported remote cardiac rehabilitation to improve exercise capacity in heart failure patients.

The authors evaluated the efficacy of structured, exercise-focused remote, virtual, or hybrid cardiac rehabilitation (RVH-CR) supported by mHealth compared to usual care or center-based cardiac rehabilitation for patients with heart failure. The primary focus was on improvements in exercise capacity, specifically peak oxygen consumption and walking distance.

The analysis found that RVH-CR led to greater improvements in peak oxygen consumption compared to center-based models. Additionally, remote programs were associated with improved walking distances when compared to usual care. Patients participating in these remote programs also showed improved scores on quality of life assessments.

Several limitations were noted by the authors, including a limited number of trials available for comparison against center-based rehabilitation. Furthermore, sparse data regarding adverse events and short follow-up periods limited the ability to draw firm conclusions regarding long-term safety. The certainty of evidence across the findings ranged from low to moderate.

Clinicians may consider remote cardiac rehabilitation as a viable option for improving exercise capacity in heart failure patients. However, because results varied by comparator type and evidence certainty was not consistently high, these findings should be integrated into clinical practice with consideration of individual patient needs.

Living with heart failure often means dealing with limited energy and a shorter walking distance. New data suggests that moving your recovery outside of a traditional clinic might help you get stronger. Researchers looked at how remote, virtual, or hybrid cardiac rehabilitation programs—supported by mobile health tools—compared to standard care.

The study included 1,368 patients with heart failure. The results showed that those who used these remote programs saw better improvements in their oxygen capacity (VO2 peak) compared to those in center-based programs. They also walked significantly further during a six-minute walk test than those receiving usual care. Additionally, patients reported a better quality of life.

While the results are promising, it is important to note that the evidence for comparing remote programs directly to center-based ones comes from a limited number of trials. The overall certainty of the data ranges from low to moderate. No serious safety issues were reported during the study, but more long-term follow-up is needed to fully understand the safety and lasting impact.

What this means for you:
Remote heart rehabilitation programs can improve walking distance and oxygen capacity for people with heart failure.

Common questions

How does remote heart rehab compare to center-based programs?

Patients in remote, virtual, or hybrid programs showed a statistically significant greater improvement in oxygen capacity (VO2 peak) compared to those in center-based programs. However, because there were a limited number of trials comparing these two specific types, the certainty of this finding is low to moderate.

Can remote heart rehab help me walk further?

Yes. The study found that remote, virtual, or hybrid programs associated with improved six-minute walk distances compared to usual care. This means patients in these programs were able to walk further during a standard test than those who did not have specialized rehabilitation.

Is it safe for heart failure patients to do remote exercise?

No serious adverse events were reported in the study. However, because there were sparse events and short follow-up periods across the trials, more data is needed to draw firm conclusions about long-term safety.

Study Details

Study typeMeta analysis
Sample sizen = 1,368
EvidenceLevel 1
PublishedJul 2026
View Original Abstract ↓
BACKGROUND: Structured exercise is a key component of cardiac rehabilitation (CR) for patients with heart failure (HF), but access to center-based cardiac rehabilitation (CBCR) is often limited. Mobile health (mHealth) platforms enable remote, virtual, or hybrid cardiac rehabilitation (RVH-CR) delivery. OBJECTIVE: This study aimed to evaluate the effectiveness and safety of structured, exercise-focused RVH-CR supported by mHealth compared with usual care or CBCR in patients with heart failure with reduced ejection fraction (HFrEF) or in HF populations predominantly comprising patients with HFrEF. METHODS: We searched PubMed, Web of Science, MEDLINE via Ovid, Cochrane CENTRAL, and CINAHL Complete from inception to April 27, 2026. Randomized controlled trials comparing mHealth-supported RVH-CR with usual care or CBCR were included. The primary outcome was exercise capacity, assessed by peak oxygen uptake (VO2 peak) and 6-minute walk distance (6MWD). Secondary outcomes included health-related quality of life and safety. Data were pooled using random-effects meta-analysis stratified by comparator. Risk of bias was assessed with the Cochrane Risk of Bias Tool version 2, and evidence certainty was evaluated using GRADE (Grading of Recommendations Assessment, Development, and Evaluation). RESULTS: Eight randomized controlled trials with 1368 patients were included. In the CBCR comparison, mHealth-supported RVH-CR showed a statistically significant greater improvement in VO2 peak than CBCR (mean difference [MD] 0.82, 95% CI 0.06-1.57; P=.03), although this finding was based on a limited number of trials. Compared with usual care, mHealth-supported RVH-CR was associated with improved 6MWD (MD 22.99, 95% CI 1.15-44.82; P=.04). Single-trial estimates suggested improvements in VO2 peak (MD 2.50, 95% CI 0.88-4.12) and Minnesota Living with Heart Failure Questionnaire scores (standardized MD -0.57, 95% CI -0.98 to -0.17; P<.01) versus usual care. The certainty of evidence ranged from low to moderate. No intervention-related deaths or serious adverse events were reported, but sparse events and short follow-up limited conclusions regarding safety. CONCLUSIONS: The effects of structured RVH-CR supported by mHealth differed according to comparator type, but the certainty of evidence ranged from low to moderate. Compared with usual care, mHealth-supported RVH-CR was associated with improved 6MWD. Compared with CBCR, mHealth-supported RVH-CR showed a significantly greater improvement in VO2 peak in a limited number of trials, but superiority, equivalence, or noninferiority to CBCR cannot be concluded. Because usual care and CBCR are clinically distinct comparators, no single overall effect across comparator types should be inferred. Future studies should assess long-term outcomes and standardize structured exercise protocols across RVH-CR models.
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