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Relation of Doppler Tissue Imaging Parameters With Heart Failure Progression in Hypertrophic Cardiomyopathy
Ankur Kalra1, Kevin M Harris1, Bradley A Maron2
1The Hypertrophic Cardiomyopathy Center, Minneapolis Heart Institute Foundation, Minneapolis, Minnesota.
Insights
Diastolic dysfunction in hypertrophic cardiomyopathy (HC) can predict heart failure (HF) progression. Reduced lateral e
Area of Science:
- Cardiology
- Echocardiography
- Cardiovascular Imaging
Background:
- Refractory heart failure (HF) is a leading cause of mortality in nonobstructive hypertrophic cardiomyopathy (HC).
- Predicting HF progression in HC patients without resting outflow obstruction is clinically important but challenging.
Purpose of the Study:
- To determine if left ventricular diastolic dysfunction, assessed by echocardiographic Doppler parameters, can identify HC patients at risk for HF progression.
- To investigate the association between diastolic function and adverse cardiovascular outcomes, including HF, death, and sudden death.
Main Methods:
- 274 adult patients with HC without resting outflow obstruction underwent echocardiography (Doppler tissue imaging, mitral inflow, pulmonary venous flow) from 2003-2007.
- Diastolic function parameters, clinical data, and late gadolinium enhancement (cardiac MRI) were analyzed against composite endpoints of HF/death, heart transplantation, or advanced NYHA class.
- Sudden death (SD) and implantable defibrillator (ICD) interventions were also assessed as separate endpoints.
Main Results:
- 19 patients (7%) reached HF endpoints over a 4.0 ± 2.3-year follow-up.
- Reduced lateral e' mitral annular tissue velocity, assessed by Doppler tissue imaging, was independently associated with adverse HF outcomes (HR 0.77; p=0.003).
- Elevated pulmonary arterial systolic pressure and extensive late gadolinium enhancement were also linked to HF outcomes, but no Doppler or clinical variable predicted SD/ICD events.
Conclusions:
- In nonobstructive hypertrophic cardiomyopathy, diastolic dysfunction, specifically reduced lateral e' velocity, is an independent predictor of long-term heart failure progression.
- This echocardiographic marker offers a noninvasive strategy for identifying patients at risk for worsening heart failure.
- Diastolic dysfunction in this cohort was not associated with sudden death.
Abstract:
Refractory progressive heart failure (HF) is becoming the predominant cause of mortality in nonobstructive hypertrophic cardiomyopathy (HC). To anticipate development of this important and often unpredictable clinical course, we investigated whether left ventricular diastolic dysfunction, assessed by echocardiographic Doppler parameters, could identify a subset of patients with HC without obstruction at rest who would experience progression of HF. Diastolic function parameters, assessed by Doppler tissue imaging (DTI), mitral inflow, and pulmonary venous flow were measured in 274 consecutive adult patients with HC evaluated from 2003 to 2007. DTI and other diastolic and clinical/demographic parameters were measured against the composite end point of HF/death, heart transplantation, or progression to advanced New York Heart Association functional class III/IV symptoms and sudden death (SD)/implantable defibrillator (ICD) interventions. HF end points were reached in 19 of 274 patients (7%) over a follow-up period of 4.0 ± 2.3 years. Variables significantly associated with HF outcome by univariate analysis included male gender, initial New York Heart Association class II, lower ejection fraction, and reduced septal and lateral e' mitral annular tissue velocities. Multivariable analysis showed only a reduced lateral e' mitral annular tissue velocity to be independently associated with the composite HF end points (HR 0.77; 95% CI 0.65 to 0.91; p = 0.003). In addition, estimated pulmonary arterial systolic pressure and extensive late gadolinium enhancement by magnetic resonance were also associated with HF outcome (p = 0.04 and p <0.001, respectively). No Doppler (or clinical) variable was associated with SD/appropriate ICD interventions. In conclusion, in HC without outflow obstruction at rest, diastolic dysfunction, evidenced by DTI-reduced lateral e' mitral annular tissue velocity, was associated with adverse long-term HF outcome but was unrelated to SD. This echocardiographic marker provides a potential noninvasive strategy for anticipating progressive HF in this HC patient group.
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