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Published on: February 14, 2017
Assessment of ventricular diastolic function
1Rikshospitalet University Hospital, Oslo, Norway. o.a.smiseth@klinmed.uio.no
Insights
Diastolic heart failure, characterized by normal systolic function, requires objective evidence of diastolic dysfunction for diagnosis. Echocardiography, particularly Doppler assessments, is crucial for identifying diastolic dysfunction and guiding patient management.
Area of Science:
- Cardiology
- Medical Diagnostics
Background:
- Many patients with suspected heart failure exhibit normal left ventricular systolic function.
- This presentation suggests primary diastolic heart failure, but requires objective evidence of diastolic dysfunction.
Purpose of the Study:
- To outline diagnostic approaches for diastolic heart failure.
- To highlight the role of echocardiography in assessing diastolic dysfunction and patient prognosis.
Main Methods:
- Utilizing pulsed wave Doppler for transmitral and pulmonary venous flow velocities.
- Employing tissue Doppler echocardiography for mitral annulus velocities.
- Assessing intraventricular flow propagation with colour M-mode Doppler echocardiography.
Main Results:
- Doppler echocardiography is key for diagnosing diastolic dysfunction.
- Diastolic filling patterns predict patient prognosis.
- Echocardiography aids in estimating left ventricular diastolic pressure and diagnosing constrictive pericarditis.
Conclusions:
- Diastolic heart failure diagnosis necessitates objective evidence of diastolic dysfunction.
- Doppler echocardiography is vital for assessing diastolic function, guiding management, and predicting prognosis in selected patients.
- Etiological investigations for coronary artery disease, hypertension, or constrictive pericarditis are essential.
Abstract:
A large number of patients suspected of having congestive heart failure have normal left ventricular systolic function and may, therefore, have primary diastolic heart failure. This diagnosis, however, should not be made unless there is also objective evidence of diastolic dysfunction, ie, signs of abnormal left ventricular relaxation and/or diastolic distensibility. The most useful noninvasive diagnostic approaches are the measurement of transmitral and pulmonary venous flow velocities by pulsed wave Doppler, and mitral annulus velocities by tissue Doppler echocardiography. In some patients, the assessment of intraventricular flow propagation by colour M-mode Doppler echocardiography provides additional information. Diastolic heart failure is most often due to coronary artery disease and/or hypertension; therefore, other noninvasive or invasive tests are needed to define the etiology of myocardial dysfunction. However, in the few patients who have constrictive pericarditis, the Doppler echocardiographic assessment of diastolic filling provides the most important clues to the etiology of the disease. Doppler echocardiographic assessment of left ventricular filling may also be used to obtain semiquantitative estimates of left ventricular diastolic pressure. Furthermore, left ventricular filling patterns, in particular, the deceleration time of early transmitral filling, are powerful predictors of patient prognosis. It is probably not cost effective to perform a comprehensive assessment of diastolic filling in every patient undergoing an echocardiographic examination. However, in selected patients, the assessment of diastolic filling provides information that is important for patient management.
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