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Updated: Jun 26, 2025

In Vivo Quantitative Assessment of Myocardial Structure, Function, Perfusion and Viability Using Cardiac Micro-computed Tomography
Published on: February 16, 2016
Diagnostic performance of unenhanced electrocardiogram-gated cardiac CT for detecting myocardial edema
Takafumi Emoto1, Masafumi Kidoh2, Seitaro Oda2
1Department of Central Radiology, Kumamoto University Hospital, Chuo-ku, Kumamoto, Japan.
Insights
Unenhanced electrocardiogram (ECG)-gated cardiac computed tomography (CT) shows potential for detecting myocardial edema. This cardiac CT method achieved 63.2% sensitivity and 93.3% specificity, with excellent reproducibility.
Area of Science:
- Cardiovascular Imaging
- Radiology
- Medical Diagnostics
Background:
- Myocardial edema detection is crucial for diagnosing various cardiac conditions.
- Magnetic resonance imaging (MRI) T2 mapping is a standard for assessing myocardial edema.
- There is a need for alternative, accessible diagnostic methods for myocardial edema.
Purpose of the Study:
- To evaluate the diagnostic performance of unenhanced ECG-gated cardiac CT in detecting myocardial edema.
- To compare the diagnostic accuracy of cardiac CT against MRI T2 mapping as the reference standard.
- To determine the optimal CT value cutoff for identifying myocardial edema.
Main Methods:
- Retrospective analysis of patients who underwent both MRI T2 mapping and unenhanced ECG-gated cardiac CT.
- Regions of interest were drawn on the interventricular septum in CT images.
- Diagnostic performance was assessed using receiver operating characteristic (ROC) curve analysis, sensitivity, and specificity.
Main Results:
- A total of 34 patients were included in the final analysis.
- Unenhanced cardiac CT showed a moderate correlation between CT values and T2 mapping values (Rho = -0.41, P < .05).
- A CT value cutoff of ≤45.0 Hounsfield unit yielded a sensitivity of 63.2% and specificity of 93.3% (AUC = 0.77, P < .01).
- Excellent inter-observer reproducibility was observed for CT value measurements (ICC = 0.93).
Conclusions:
- Unenhanced ECG-gated cardiac CT can detect myocardial edema.
- Cardiac CT demonstrates good specificity for identifying myocardial edema, suggesting its potential as a complementary diagnostic tool.
- Further research with larger cohorts is warranted to validate these findings.
Abstract:
To assess the diagnostic performance of unenhanced electrocardiogram (ECG)-gated cardiac computed tomography (CT) for detecting myocardial edema, using MRI T2 mapping as the reference standard. This retrospective study protocol was approved by our institutional review board, which waived the requirement for written informed consent. Between December 2017 to February 2019, consecutive patients who had undergone T2 mapping for myocardial tissue characterization were identified. We excluded patients who did not undergo unenhanced ECG-gated cardiac CT within 3 months from MRI T2 mapping or who had poor CT image quality. All patients underwent unenhanced ECG-gated cardiac CT with an axial scan using a third-generation, 320 × 0.5 mm detector-row CT unit. Two radiologists together drew regions of interest (ROIs) in the interventricular septum on the unenhanced ECG-gated cardiac CT images. Using T2 mapping as the reference standard, the diagnostic performance of unenhanced cardiac CT for detecting myocardial edema was evaluated by using the area under the receiver operating characteristic curve with sensitivity and specificity. Youden index was used to find an optimal sensitivity-specificity cutoff point. A cardiovascular radiologist independently performed the measurements, and interobserver reliability was assessed using intraclass correlation coefficients for CT value measurements. A P value of <.05 was considered statistically significant. We included 257 patients who had undergone MRI T2 mapping. Of the 257 patients, 35 patients underwent unenhanced ECG-gated cardiac CT. One patient was excluded from the study because of poor CT image quality. Finally, 34 patients (23 men; age 64.7 ± 14.6 years) comprised our study group. Using T2 mapping, we identified myocardial edema in 19 patients. Mean CT and T2 values for 34 patients were 46.3 ± 2.7 Hounsfield unit and 49.0 ± 4.9 ms, respectively. Mean CT values moderately correlated with mean T2 values (Rho = -0.41; P < .05). Mean CT values provided a sensitivity of 63.2% and a specificity of 93.3% for detecting myocardial edema, with a cutoff value of ≤45.0 Hounsfield unit (area under the receiver operating characteristic curve = 0.77; P < .01). Inter-observer reproducibility in measuring mean CT values was excellent (intraclass correlation coefficient = 0.93; [95% confidence interval: 0.86, 0.96]). Myocardial edema could be detected by CT value of myocardium in unenhanced ECG-gated cardiac CT.
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