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Safety profile and utility of treadmill exercise in patients with high-gradient hypertrophic cardiomyopathy
Lars Lindholm Sorensen1, Hsin-Yueh Liang2, Aurelio Pinheiro3
1Division of Cardiology, Johns Hopkins Medical Institutions, Baltimore, MD; Department of Cardiology, Gentofte Hospital, Copenhagen, Denmark.
Insights
Exercise testing is safe for hypertrophic cardiomyopathy (HCM) patients, even with high left ventricular outflow tract gradients. This valuable diagnostic tool provides crucial information for risk stratification and treatment selection in HCM management.
Area of Science:
- Cardiology
- Exercise Physiology
Background:
- Exercise echocardiography is vital for hypertrophic cardiomyopathy (HCM) risk stratification and prognostication.
- Patients with high-gradient HCM (≥30 mm Hg outflow tract gradients) are often excluded from exercise testing due to safety concerns.
Purpose of the Study:
- To evaluate the safety and utility of exercise testing in patients with high-gradient HCM.
- To determine if exercise testing poses additional safety hazards in this specific patient cohort.
Main Methods:
- Evaluated 499 consecutive HCM patients undergoing 959 exercise tests.
- Categorized patients into obstructive, labile-obstructive, and nonobstructive groups based on peak left ventricular outflow tract gradients.
Main Results:
- No deaths occurred during exercise testing; overall complication rate was 2.1% (serious ventricular arrhythmias 0.3%), with no significant difference between groups.
- Obstructive HCM patients showed higher abnormal blood pressure response (53%) and lower work capacity (8.4±3.4 METs).
- Exercise testing provided incremental sudden cardiac death risk information in 19% of high-gradient HCM patients.
Conclusions:
- Exercise testing in HCM is safe with rare serious adverse events.
- Exercise testing in high-gradient HCM appears to have no significant additional safety hazard and offers valuable clinical information.
Background:
Exercise echocardiography in the evaluation of hypertrophic cardiomyopathy (HCM) provides valuable information for risk stratification, selection of optimal treatment, and prognostication. However, HCM patients with left ventricular outflow tract gradients ≥30mm Hg are often excluded from exercise testing because of safety considerations. We examined the safety and utility of exercise testing in patients with high-gradient HCM.
Methods:
We evaluated clinical characteristics, hemodynamics, and imaging variables in 499 consecutive patients with HCM who performed 959 exercise tests. Patients were divided based on peak left ventricular outflow tract gradients using a 30-mm Hg threshold into the following: obstructive (n=152), labile-obstructive (n=178), and nonobstructive (n=169) groups.
Results:
There were no deaths during exercise testing. We noted 20 complications (2.1% of tests) including 3 serious ventricular arrhythmias (0.3% of tests). There was no difference in complication rate between groups. Patients with obstructive HCM had a higher frequency of abnormal blood pressure response (obstructive: 53% vs labile: obstructive: 41% and nonobstructive: 37%; P=.008). Obstructive patients also displayed a lower work capacity (obstructive: 8.4±3.4 vs labile obstructive: 10.9±4.2 and nonobstructive: 10.2±4.0, metabolic equivalent; P<.001). Exercise testing provided incremental information regarding sudden cardiac death risk in 19% of patients with high-gradient HCM, and we found a poor correlation between patient-reported functional class and work capacity.
Conclusion:
Our results suggest that exercise testing in HCM is safe, and serious adverse events are rare. Although numbers are limited, exercise testing in high-gradient HCM appears to confer no significant additional safety hazard in our selected cohort and could potentially provide valuable information.
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