Velocity Vector Imaging (VVI) provided an angle-independent evaluation of short-axis mechanics and left ventricular dynamics in a heart failure patient who did not respond to CRT.
Case Report (n=1)
Can Velocity Vector Imaging (VVI) be used to assess left ventricular dynamics in a heart failure patient non-responsive to CRT?
Velocity Vector Imaging provides an angle-independent method to evaluate short-axis left ventricular mechanics, which may help assess patients who do not respond to cardiac resynchronization therapy.
Cardiac resynchronization therapy (CRT) has emerged as an important method to treat patient with symptomatic heart failure with evidence of intraventricular dyssynchrony. Tissue Doppler imaging by echocardiography has been shown to be an excellent tool for the assessment of mechanical left ventricular dyssynchrony and the selection of patients for CRT. However, there are some patients who do not show symptomatic improvement following CRT. One possible explanation for this is the need to optimize not only longitudinal synchrony, but also improve the circumferential and radial dynamics of the left ventricle. Doppler imaging does not allow reliable assessment of the latter because of the angle-dependency of the technique. Velocity Vector Imaging (VVI) is a newer technique which is angle-independent and thus provides an avenue to evaluate short-axis mechanics of the left ventricle. We describe a case in which VVI was used to assess the left ventricular dynamics in a patient with heart failure who did not respond to CRT.
Vannan et al. (Tue,) conducted a case report in Heart failure (n=1). Velocity Vector Imaging (VVI) was evaluated on Assessment of left ventricular dynamics. Velocity Vector Imaging (VVI) provided an angle-independent evaluation of short-axis mechanics and left ventricular dynamics in a heart failure patient who did not respond to CRT.
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