Key result
Color Doppler tissue velocity imaging detects LV asynchrony independent of QRS morphology in LBBB patients.
Why the study?
A QRS width greater than 120 ms is assumed to indicate LV asynchrony in severe HF, but the ability of c-TVI to detect systolic LV asynchrony independent of QRS morphology was unclear.
Can color Doppler tissue velocity imaging (c-TVI) detect systolic left ventricular asynchrony independent of QRS morphology in patients with severe heart failure?
Observational (n=35)
Can color Doppler tissue velocity imaging (c-TVI) detect systolic left ventricular asynchrony independent of QRS morphology in patients with severe heart failure?
p-value: p=0.075
Color Doppler tissue velocity imaging can detect significant left ventricular asynchrony in severe heart failure patients even when surface ECG shows a normal QRS width or RBBB.
c-TVI may detect LV asynchrony independent of QRS in severe HF; leaves open its role in refining CRT selection.
UNLABELLED: A QRS width greater than 120 ms is assumed to be a marker of inter- and intraventricular asynchrony in severe heart failure (HF) patients. Color Doppler tissue velocity imaging (c-TVI) with a time resolution of 10 ms was used to study regional left ventricular (LV) longitudinal systolic contraction pattern in HF patients with left and right bundle branch block (LBBB and RBBB) and in patients with normal QRS width. We studied 12 women and 23 men with severe HF, with a mean age of 66 +/- 11 years in New York Heart Association functional Class 2.9 +/- 0.6. Twenty patients had LBBB and 10 of those were accepted for cardiac resynchronization therapy by biventricular pacing (CRT). Ten patients had normal QRS width, and five had RBBB. In the echocardiographic apical four chamber view, regional peak LV tissue velocities and regional LV time differences of peak tissue velocities were compared at basal and mid-LV segments. There were no significant differences in regional mean peak tissue velocities among the patient groups. In patients with LBBB accepted for CRT, the LV lateral free-wall movement at basal LV was 29 ms delayed during main systole, almost significantly different from LBBB patients not accepted for CRT (P = 0.075). Even in HF patients with normal QRS width or RBBB, significant asynchronous longitudinal LV contraction was observed. CONCLUSIONS: For the detection of regional longitudinal LV contraction asynchrony in patients with severe HF, supplementary methods to the surface ECG, such as c-TVI, are strongly recommended.
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Schuster et al. (2004) conducted an observational in Severe heart failure (n=35). Color Doppler tissue velocity imaging (c-TVI) vs. Surface ECG was evaluated on Regional peak LV tissue velocities and regional LV time differences of peak tissue velocities (p=0.075). Color Doppler tissue velocity imaging detected LV asynchrony independent of QRS morphology, showing a 29 ms delay in basal LV lateral free-wall movement in LBBB patients accepted for CRT (P=0.075).
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