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A Novel Digital Platform for a Monitored Home-based Cardiac Rehabilitation Program
Published on: April 19, 2019
A Detailed Analysis of Cardiac Rehabilitation on 180-Day All-Cause Hospital Readmission and Mortality
Brian D Duscha1, Leanna M Ross, Andrew L Hoselton
1Duke University School of Medicine, Division of Cardiology and Duke Molecular Physiology Institute, Durham, North Carolina (Messrs Duscha and Hoselton, Drs Ross and Kraus, and Ms Piner); and Center for Aging and Human Development, Duke University School of Medicine Center, Durham, and Department of Biostatistics and Bioinformatics, Duke University Medical Center, Durham, North Carolina (Dr Pieper).
Insights
Cardiac rehabilitation (CR) significantly reduces readmission or death risk in coronary artery disease (CAD) patients. This study clarifies CR
Area of Science:
- Cardiology
- Public Health
Background:
- Cardiac rehabilitation (CR) is recommended for coronary artery disease (CAD) but its effectiveness varies.
- Inconsistent findings may stem from confounding factors influencing patient outcomes.
Purpose of the Study:
- To investigate the impact of confounding factors on the efficacy of CR.
- To determine if CR affects all-cause readmission and mortality rates in CAD patients.
Main Methods:
- A cohort of 2641 CAD patients was analyzed, with 214 participating in CR.
- Electronic medical records were used to extract demographic and clinical data.
- Cox proportional hazards models adjusted for confounders to compare 180-day survival between CR and non-CR groups.
Main Results:
- Patients attending CR had a 42.7% lower risk of readmission or death within 180 days (HR=0.57).
- CR group: 12.1% readmission, 0.5% mortality.
- Non-CR group: 18.7% readmission, 4.0% mortality.
Conclusions:
- CR participation markedly decreases the risk of 180-day all-cause readmission or death.
- The benefits of CR persist irrespective of demographic characteristics, comorbidities, or discharge criteria.
Purpose:
Cardiac rehabilitation (CR) is endorsed for coronary artery disease (CAD), but studies report inconsistent findings regarding efficacy. The objective of this study was to determine whether confounding factors, potentially contributing to these heterogeneous findings, impact the effect of CR on all-cause readmission and mortality.
Methods:
Patients (n = 2641) with CAD, CR eligible, and physically able were identified. Electronic medical records were inspected individually for each patient to extract demographic, clinical characteristic, readmission, and mortality information. Patients (n = 214) attended ≥1 CR session (CR group). Survival was considered free from: all-cause readmission; or composite outcome of all-cause readmission or death. Cox proportional hazards models, adjusting for demographics, comorbidities, and discharge criteria, were used to determine HR with 95% CI and to compare 180-d survival rates between the CR and no-CR groups.
Results:
During 180 d of follow-up, 12.1% and 18.7% of the CR and non-CR patients were readmitted to the hospital. There was one death (0.5%) in the CR group, while 98 deaths (4.0%) occurred in the non-CR group. After adjustment for age, sex, race, depression, anxiety, dyslipidemia, hypertension, obesity, smoking, type 2 diabetes, and discharge criteria, the final model revealed a significant 42.7% reduction in readmission or mortality risk for patients who attended CR (HR = 0.57: 95% CI, 0.33-0.98; P = .043).
Conclusions:
Regardless of demographic characteristics, comorbidities, and cardiovascular discharge criteria, the risk of 180-d all-cause readmission or death was markedly decreased in patients who attended CR compared with those who did not.
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