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Test-retest reproducibility of absolute myocardial blood flow obtained using stress dynamic CT myocardial perfusion
Daisuke Hasegawa1, Satoshi Nakamura2, Masafumi Takafuji1
1Department of Radiology, Mie University Hospital, Tsu, Japan.
Insights
Dynamic CT myocardial perfusion imaging (CTMPI) reliably reproduces myocardial blood flow (MBF) measurements and detects perfusion abnormalities. This makes CTMPI a promising tool for diagnosing coronary artery disease (CAD) and coronary microvascular disease (CMD).
Area of Science:
- Cardiovascular Imaging
- Radiology
- Diagnostic Techniques
Background:
- Coronary artery disease (CAD) and coronary microvascular disease (CMD) are leading causes of angina pectoris.
- Accurate diagnosis of these conditions requires reliable myocardial blood flow (MBF) quantification.
- Stress dynamic CT myocardial perfusion imaging (CTMPI) is an emerging non-invasive alternative to positron emission tomography for MBF assessment.
Purpose of the Study:
- To evaluate the test-retest reproducibility of MBF measurements using dynamic CTMPI.
- To assess the consistency of MBF quantification between two CTMPI examinations.
- To determine the reliability of visual detection and grading of perfusion abnormalities with CTMPI.
Main Methods:
- Retrospective analysis of MBF values from 30 patients undergoing two dynamic CTMPI examinations.
- Quantification of global MBF (mean) and remote MBF (maximum across segments).
- Visual assessment of CTMPI maps for perfusion abnormalities and inter-test agreement analysis.
Main Results:
- Strong linear correlations were observed between tests for global MBF (r=0.89) and remote MBF (r=0.88).
- High intraclass correlation coefficients indicated excellent agreement for global MBF (0.94) and remote MBF (0.93).
- Visual assessment of perfusion abnormalities showed good inter-test agreement (weighted kappa=0.80).
Conclusions:
- Dynamic CTMPI demonstrates consistent reproducibility of absolute MBF values.
- The technique reliably detects myocardial perfusion abnormalities indicative of CAD and CMD.
- CTMPI shows potential as a robust diagnostic tool for evaluating coronary artery and microvascular disease.
Background:
Coronary artery disease (CAD) and coronary microvascular disease (CMD) are significant contributors to angina pectoris, necessitating reliable diagnostic techniques for effective management. While positron emission tomography has been the non-invasive gold standard for myocardial blood flow (MBF) quantification, stress dynamic CT myocardial perfusion imaging (CTMPI) has emerged as a promising alternative. This study aimed to evaluate the test-retest reproducibility of MBF measurements obtained using dynamic CTMPI.
Methods:
The study retrospectively analyzed MBF values from two dynamic CTMPI examinations conducted in the same patient cohort (n = 30) to examine the consistency of MBF quantification and the ability to visually detect and grade abnormal perfusion suggesting ischemia between the tests. Global and remote MBF were defined as the mean MBF and the maximum MBF of all segments, respectively.
Results:
MBF quantification revealed strong linear correlations between the tests (r = 0.89 for global MBF, r = 0.88 for remote MBF, and r = 0.82 for all segments), and intraclass correlation coefficients reflected high agreement between the tests (0.94 for global MBF, 0.93 for remote MBF, and 0.90 for all segments). Bland-Altman plots indicated a negligible mean difference with acceptable limits of agreements between the tests for global MBF, remote MBF, and all segments. Visual assessment of the CTMPI maps for abnormal perfusion suggesting ischemia yielded a good inter-test agreement with a weighted kappa value of 0.80.
Conclusion:
Dynamic CTMPI can consistently reproduce absolute MBF values and reliably detect myocardial perfusion abnormalities, potentially making it a robust diagnostic tool for evaluating the presence and severity of CAD and CMD.
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