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Published on: December 19, 2013
Accuracy of Myocardial Blood Flow Estimation From Dynamic Contrast-Enhanced Cardiac CT Compared With PET
Adam M Alessio1,2, Michael Bindschadler1, Janet M Busey1
1Department of Radiology (A.M.A., M.B., J.M.B., W.P.S., J.H.C.), University of Washington.
Insights
Dynamic contrast-enhanced cardiac CT provides accurate myocardial blood flow (MBF) estimates, comparable to rubidium-82 PET in high-risk patients. While MBF is unbiased, myocardial flow reserve estimation shows variance.
Area of Science:
- Cardiovascular imaging
- Radiology
- Medical diagnostics
Background:
- Assessing absolute myocardial blood flow (MBF) using dynamic contrast-enhanced cardiac computed tomography (CT) requires further characterization.
- Comparison with rubidium-82 positron emission tomography (PET) is crucial for validating CT accuracy.
Purpose of the Study:
- To evaluate the accuracy of absolute myocardial blood flow (MBF) estimates derived from dynamic contrast-enhanced cardiac CT.
- To compare CT-derived MBF with rubidium-82 PET MBF in a high-risk patient population.
Main Methods:
- A prospective trial involving 34 high-risk patients undergoing clinically indicated rubidium-82 PET scans.
- Dynamic contrast-enhanced cardiac CT scans were acquired during rest and stress phases.
- Global MBF was calculated from both PET and CT datasets for comparison.
Main Results:
- CT-derived global MBF showed high correlation with PET MBF (r=0.92, P<0.001).
- CT MBF estimates were within 20% of PET estimates (P<0.02).
- Myocardial flow reserve was underestimated by CT (-14±28%).
Conclusions:
- Clinically practical dynamic contrast-enhanced cardiac CT offers unbiased MBF estimates comparable to rubidium-82 PET in high-risk patients.
- CT MBF estimates exhibit significant variance, and myocardial flow reserve estimation is less accurate than individual MBF.
- The protocol's effective dose was approximately 8.4±1.1 mSv.
Abstract:
Background The accuracy of absolute myocardial blood flow (MBF) from dynamic contrast-enhanced cardiac computed tomography acquisitions has not been fully characterized. We evaluate computed tomography (CT) compared with rubidium-82 positron emission tomography (PET) MBF estimates in a high-risk population. Methods In a prospective trial, patients receiving clinically indicated rubidium-82 PET exams were recruited to receive a dynamic contrast-enhanced cardiac computed tomography exam. The CT protocol included a rest and stress dynamic portion each acquiring 12 to 18 cardiac-gated frames. The global MBF was estimated from the PET and CT exam. Results Thirty-four patients referred for cardiac rest-stress PET were recruited. Of the 68 dynamic contrast-enhanced cardiac computed tomography scans, 5 were excluded because of injection errors or mismatched hemodynamics. The CT-derived global MBF was highly correlated with the PET MBF (r=0.92; P<0.001) with a mean difference of 0.7±26.4%. The CT MBF estimates were within 20% of PET estimates ( P<0.02) with a mean of (1) MBF for resting flow of PET versus CT of 0.9±0.3 versus 1.0±0.2 mL/min per gram and (2) MBF for stress flow of 2.1±0.7 versus 2.0±0.8 mL/min per gram. Myocardial flow reserve was -14±28% underestimated with CT (PET versus CT myocardial flow reserve, 2.5±0.6 versus 2.2±0.6). The proposed rest+stress+computed tomography angiography protocol had a dose length product of 598±76 mGy×cm resulting in an approximate effective dose of 8.4±1.1 mSv. Conclusions In a high-risk clinical population, a clinically practical dynamic contrast-enhanced cardiac computed tomography provided unbiased MBF estimates within 20% of rubidium-82 PET. Although unbiased, the CT estimates contain substantial variance with an standard error of the estimate of 0.44 mL/min per gram. Myocardial flow reserve estimation was not as accurate as individual MBF estimates.
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