Comparison of low-mechanical index pulse sequence schemes for detecting myocardial perfusion abnormalities during
Jeane M Tsutsui1, Feng Xie, Anna C McGrain
1Department of Internal Medicine, Section of Cardiology, University of Nebraska Medical Center, Omaha, Nebraska, USA.
Insights
Myocardial contrast echocardiography using triggering replenishment imaging (TRI) and real-time imaging (RTI) accurately detects coronary artery disease. Both methods show similar effectiveness to SPECT in identifying perfusion defects during stress tests.
Area of Science:
- Cardiology
- Medical Imaging
- Diagnostic Techniques
Background:
- Myocardial contrast echocardiography (MCE) shows promise for detecting coronary artery disease (CAD) during pharmacologic stress.
- Low-mechanical index imaging modalities like triggering replenishment imaging (TRI) and real-time imaging (RTI) are used to identify myocardial perfusion defects.
Purpose of the Study:
- To compare the diagnostic capabilities of TRI and RTI for detecting and localizing myocardial perfusion abnormalities.
- To evaluate the accuracy of TRI and RTI against single-photon emission computed tomography (SPECT) and quantitative angiography (QCA).
Main Methods:
- Thirty-six patients underwent dipyridamole-induced stress testing with SPECT and MCE (TRI and RTI).
- MCE involved intravenous microbubble injections and contrast replenishment assessment after a high-mechanical index flash.
- Sixteen patients also underwent QCA for comparison.
Main Results:
- Agreement between SPECT and TRI for detecting perfusion defects was 72% (kappa = 0.46); between SPECT and RTI was 75% (kappa = 0.50).
- Localization agreement with SPECT was 81% for TRI (kappa = 0.43) and 85% for RTI (kappa = 0.61).
- RTI accuracy for detecting >50% stenoses was 79%, TRI was 71%, and SPECT was 65%.
Conclusions:
- Low-mechanical index MCE imaging schemes (TRI and RTI) are equivalent to radionuclide SPECT for detecting diseased coronary territories during vasodilator stress.
- RTI demonstrates slightly better agreement with SPECT for localization and higher accuracy for detecting significant stenoses compared to TRI and SPECT.
Abstract:
Myocardial contrast echocardiography has the potential to accurately detect functionally significant coronary artery disease during pharmacologic stress testing. Different low-mechanical index modalities, including triggering replenishment imaging (TRI) and real-time imaging (RTI), are currently used to identify myocardial perfusion defects. We compared the ability of TRI with that of RTI for detecting and localizing perfusion abnormalities. Thirty-six patients (62 +/- 14 years old, 15 men) underwent single-photon emission computed tomography (SPECT) with technetium-99m sestamibi and myocardial contrast echocardiography at baseline and after infusion of 0.56 mg/kg of dipyridamole. Sixteen of these patients also underwent quantitative angiography. Contrast-enhanced images were obtained in 4-, 3-, and 2-chamber views after intravenous bolus injections of lipid-encapsulated microbubbles (0.1 ml of Definity). A myocardial perfusion defect was defined by myocardial contrast echocardiography as a delay of >2 seconds in contrast replenishment after high-mechanical index flash impulse. The myocardial segments were divided into 3 major coronary territories. There was agreement in detecting perfusion defects between SPECT and TRI in 26 patients (72%, kappa = 0.46) and between SPECT and RTI in 27 patients (75%, kappa = 0.50). Agreements between myocardial contrast echocardiography and SPECT for localizing coronary territories with perfusion defects were 81% for TRI (kappa = 0.43) and 85% for RTI (kappa = 0.61). Accuracy of RTI for detecting >50% diameter stenoses by quantitative angiography was 79%, that of TRI was 71%, and that of SPECT was 65%. These data indicate that the different low-mechanical index imaging schemes are equivalent to radionuclide SPECT in accurately detecting diseased coronary artery territories during vasodilator stress.
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