Key result
In patients with prior anterior myocardial infarction, a synchronized pattern of integrated backscatter with cyclic variation ≥3.5 dB predicted significant recovery of left ventricular ejection fraction (from 35% to 50%) after coronary revascularization.
Why the study?
Does myocardial integrated backscatter (IBS) predict left ventricular functional recovery after coronary revascularization in patients with prior anterior myocardial infarction and LV dysfunction?
Observational (n=17)
Single-blind
No
Does myocardial integrated backscatter (IBS) predict left ventricular functional recovery after coronary revascularization in patients with prior anterior myocardial infarction and LV dysfunction?
Absolute Event Rate: 50% vs 40%
Myocardial integrated backscatter (IBS) is a valuable noninvasive tool for predicting left ventricular functional recovery after coronary revascularization in patients with chronic LV dysfunction from prior anterior MI.
May support IBS for identifying LVEF recovery candidates after revascularization; hypothesis-generating and needs prospective validation.
Cyclic variation (CV) of myocardial integrated backscatter (IBS), which reflects intrinsic contractile performance, can predict myocardial viability in patients with a reperfused acute myocardial infarction (MI), but the use of this method has not been validated for chronic left ventricular (LV) dysfunction. The aim of this study was to examine whether myocardial IBS was useful for predicting LV functional recovery after coronary revascularization in 17 patients with prior anterior MI and LV dysfunction (ejection fraction <50%). Within 24 h of the revascularization procedure (percutaneous transluminal coronary angioplasty or coronary stenting), IBS curves were obtained by placing the region of interest on the anterior wall on the short-axis IBS image. The patients had repeat left heart catheterization at 3 or 6 months after the revascularization procedure, and were grouped according to the patterns of the IBS curve within the anterior wall. In 8 patients (group A), the IBS curve had a synchronized pattern with the magnitude of CV > or = 3.5, and in the remaining 9 patients (group B), the curve had either an asynchronized pattern or the magnitude of CV was less than 3.5 dB even in the case of synchronized pattern, or both. At baseline, there were no significant differences in LV functional indices between the 2 groups. After the follow-up period, the LV end-systolic volume decreased (75 +/- 21 ml to 56 +/- 20ml, p = 0.05), LV ejection fraction increased (35 +/- 12% to 50 +/- 14%, p = 0.014), and LV end-diastolic pressure decreased (19 +/- 10 mmHg to 13 +/- 6 mmHg, p = 0.02) in group A, whereas only the LV ejection fraction increased (34 +/- 9% to 40 +/- 11%, p = 0.03) in group B; LV end-systolic volume (72 +/- 19 ml to 66 +/- 16 ml, p = 0.126) and LV end-diastolic pressure (18 +/- 12 mmHg to 14 +/- 8 mmHg, p = 0.184) showed no significant changes. In conclusion, IBS is valuable for predicting LV functional recovery after coronary revascularization in patients with LV dysfunction caused by a remote anterior MI. A large-scale study is be needed to establish these data.
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Ito et al. (2002) conducted an observational in Prior anterior myocardial infarction with persistent left ventricular dysfunction (n=17). Synchronized pattern of integrated backscatter with cyclic variation ≥3.5 dB vs. Asynchronized pattern or cyclic variation <3.5 dB was evaluated on Left ventricular ejection fraction at 3 or 6 months follow-up. In patients with prior anterior myocardial infarction, a synchronized pattern of integrated backscatter with cyclic variation ≥3.5 dB predicted significant recovery of left ventricular ejection fraction (from 35% to 50%) after coronary revascularization.
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