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October 29, 2007Journal of Magnetic Resonance Imaging34 citationsOpen Access

Mechanical dyssynchrony or myocardial shortening as MRI predictor of response to biventricular pacing?

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IRIris K. RüsselJZJaco J.M. ZwanenburgTGTjeerd Germans

Key Result

Regional heterogeneity in myocardial shortening correlated better with acute response to CRT (r=0.63, P<0.005) than mechanical dyssynchrony (r=0.47, P=0.01).

Study Design

Type

Observational (n=29)

Structured PICO

Does MRI-derived regional heterogeneity in myocardial shortening predict acute hemodynamic response to cardiac resynchronization therapy in patients with chronic heart failure?

P
Population
29 patients with chronic heart failure
I
Intervention
Cardiac resynchronization therapy (CRT) with baseline MRI assessment of regional heterogeneity in myocardial shortening
O
Outcome
Acute response to CRT quantified by relative increase in maximum rate of left ventricle pressure rise (dP/dt max)surrogate

MRI-derived regional heterogeneity in myocardial shortening, especially when combined with electrical dyssynchrony, is a strong predictor of acute hemodynamic response to CRT in heart failure patients.

Main Result

Effect estimate: r = 0.63

p-value: p=< 0.005

Abstract

PURPOSE: To investigate whether mechanical dyssynchrony (regional timing differences) or heterogeneity (regional strain differences) in myocardial function should be used to predict the response to cardiac resynchronization therapy (CRT). MATERIALS AND METHODS: Baseline mechanical function was studied with MRI in 29 patients with chronic heart failure. Using myocardial tagging, two mechanical dyssynchrony parameters were defined: the standard deviation (SD) in onset time (T onset) and in time to first peak (T peak,first) of circumferential shortening. Electrical dyssynchrony was described by QRS width. Further, two heterogeneity parameters were defined: the coefficient of variation (CV) in end-systolic strain and the difference between peak septal and lateral strain (DiffSLpeakCS). The relative increase in maximum rate of left ventricle pressure rise (dP/dt max) quantified the acute response to CRT. RESULTS: The heterogeneity parameters correlated better with acute response (CV: r = 0.58, DiffSLpeakCS: r = 0.63, P 0.70, P incr < 0.05). CONCLUSION: Regional heterogeneity in myocardial shortening correlates better with response to CRT than mechanical dyssynchrony, but should be combined with electrical dyssynchrony to improve prediction of response beyond the prediction from electrical dyssynchrony only.

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Cite This Study

Rüssel et al. (2007) conducted an observational in chronic heart failure (n=29). MRI heterogeneity parameters (CV and DiffSLpeakCS) vs. Mechanical dyssynchrony parameters and electrical dyssynchrony was evaluated on Relative increase in maximum rate of left ventricle pressure rise (dP/dt max) (r = 0.63, p=< 0.005). Regional heterogeneity in myocardial shortening correlated better with acute response to CRT (r=0.63, P<0.005) than mechanical dyssynchrony (r=0.47, P=0.01).

synapsesocial.com/papers/6a0f6ed09e54838161fcb6behttps://doi.org/10.1002/jmri.21133
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