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Published on: June 28, 2019
Coronary flow reserve as a link between diastolic and systolic function and exercise capacity in heart failure
Martin Snoer1, Tea Monk-Hansen, Rasmus Huan Olsen
1Department of Cardiology, Bispebjerg University Hospital, Bispebjerg Bakke 23, Copenhagen, Denmark. snoer@dadlnet.dk
Insights
Coronary flow reserve (CFR) is linked to exercise capacity in heart failure patients, independent of systolic and diastolic function. This suggests CFR is a key factor limiting functional capacity in heart failure.
Area of Science:
- Cardiology
- Exercise Physiology
Background:
- Reduced exercise capacity is a primary symptom and prognostic indicator in heart failure.
- Understanding the factors limiting exercise capacity is crucial for managing heart failure patients.
Purpose of the Study:
- To investigate the relationship between coronary flow reserve (CFR) and both diastolic and systolic function in heart failure patients.
- To identify the primary determinants of reduced exercise capacity in this population.
Main Methods:
- Forty-seven heart failure patients with reduced ejection fraction (<35%) underwent cardiorespiratory exercise testing (VO2 peak), body composition analysis, and comprehensive echocardiography.
- Coronary flow velocity (CFV) was measured at rest and during adenosine stress to calculate CFR.
- Analysis included correlations between VO2 peak, CFR, E/e', and s' (tissue Doppler imaging).
Main Results:
- Fat-free-mass-adjusted VO2 peak significantly correlated with CFR, E/e' (diastolic function), and s' (systolic function), but not with left ventricular ejection fraction (LVEF).
- CFR showed significant correlations with E/e' and s', but not LVEF.
- Multivariable analysis revealed that s' remained independently associated with VO2 peak after adjusting for CFR, while E/e' did not.
Conclusions:
- In heart failure patients, exercise capacity (VO2 peak) is associated with CFR, E/e', and s', rather than traditional systolic measures like LVEF.
- Coronary flow reserve (CFR) is independently associated with exercise capacity, suggesting it is a critical limiting factor in the functional capacity of heart failure patients.
Aims:
In heart failure, a reduced exercise capacity is the prevailing symptom and an important prognostic marker of future outcome. The purpose of the study was to assess the relation of coronary flow reserve (CFR) to diastolic and systolic function in heart failure and to determine which are the limiting factors for exercise capacity.
Methods And Results:
Forty-seven patients with left ventricular ejection fraction (LVEF) <35 [median LVEF 31 (inter-quartile range 26-34)] underwent cardiorespiratory exercise test with measurement of VO2 peak, a dual X-ray absorptiometry scan for body composition, and a full echocardiography with measurement of LVEF using the biplane Simpson model, mitral inflow velocities, and pulsed wave tissue Doppler. Peak coronary flow velocity (CFV) was measured in the LAD, using pulsed-wave Doppler. CFR was calculated as the ratio between peak CFV at rest and during 2 min of adenosine stress. Fat-free-mass-adjusted VO2 peak correlated significantly with CFR (r = 0.48, P = 0.002), E/e' (r = -0.35, P = 0.02), and s' (r = 0.45, P = 0.001) but not with LVEF (r = 0.23, P = 0.11). CFR correlated significantly with E/e' (r = -0.46, P = 0.003) and s' (r = 0.36, P = 0.02), but not with LVEF (r = 0.18, P = 0.26). When adjusting for CFR in a multivariable linear model, s' but not E/e' remained independently associated with VO2 peak.
Conclusion:
In this group of heart failure patients, VO2 peak was correlated with CFR, E/e', and s' but not with traditional measures of systolic function. CFR remained associated with VO2 peak independently of diastolic and systolic function and is likely to be a limiting factor in functional capacity of heart failure patients.
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