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[Evaluating radiation dose of 128-slice dual-source computed tomographic coronary angiography with different
Lei Zhang1, Hai-hong Pan, Nan Xu
1Department of Radiology, Shanghai East Hospital, Tongji University, Shanghai 200120, China. zhanglei4302@hotmail.com
Insights
Dual-source CT coronary angiography maintains excellent image quality regardless of heart rate. However, radiation exposure increases with higher heart rate variability, particularly in arrhythmic patients.
Area of Science:
- Cardiovascular Imaging
- Radiology
- Medical Physics
Context:
- Dual-source computed tomography (DSCT) coronary angiography is a key diagnostic tool.
- Optimizing radiation dose and image quality in DSCT is crucial for patient care.
- Understanding the impact of electrocardiogram (ECG) pulsing models on DSCT outcomes is essential.
Purpose:
- To evaluate the influence of heart rate frequency (HRF) and heart rate variability (HRV) on radiation exposure and image quality during DSCT coronary angiography.
- To compare image quality parameters and radiation dose estimates across three distinct ECG pulsing protocols.
- To investigate the effectiveness of different protocols in noninvasive coronary angiography.
Summary:
- A study of 253 patients undergoing DSCT coronary angiography analyzed image quality and radiation dose based on HRF and HRV.
- Three groups were defined by HRF and HRV levels, utilizing prospective and retrospective ECG-gated protocols.
- Excellent image quality was achieved in 87.7% of patients, with no significant differences across groups.
Impact:
- Radiation exposure was significantly higher in patients with low HRF compared to high HRF, and in those with severe HRV versus normal HRV.
- Effective doses varied significantly across groups: Group A (0.602 mSv), Group B (1.253 mSv), and Group C (9.039 mSv).
- DSCT coronary angiography with adaptive ECG pulsing preserves diagnostic image quality irrespective of HRF or HRV, though dose reduction is limited in arrhythmic patients.
Objective:
To determine the effects of heart rate frequency (HRF) and heart rate variability (HRV) on radiation exposure and image quality in a large cohort of patients undergoing DSCT (dual-source computed tomograph) coronary angiography with three different electrocardiogram (ECG) pulsing models, to prospectively investigate CT image quality parameters by using different protocols and to calculate the radiation dose estimates for noninvasive coronary angiography performed by DSCT.
Methods:
Over a 1-month period, 253 consecutive patients were recruited and categorized into 3 groups: Group A:low HRF (≤ 75 beats/min) with normal-minor heart rate variability (HRV) (mean interbeat difference (IBD), 0 - 3), coronary CT angiography proceeding with prospective ECG-triggered flash spiral scan; Group B: intermediate-high HRF (> 75 beats/min) with normal-minor HRV (IBD, 0 - 4), with prospective ECG-triggered sequence scan; Group C: intermediate-high HRF (> 75 beats/min) with moderate-severe HRV (IBD ≥ 5) with retrospective ECG-gated spiral scan.
Results:
CT coronary angiography yielded excellent image quality in 87.7% of patients (222/253). No significant differences were found among three groups with different HRF and HRV in image quality and diagnostic performance. Radiation exposure was significantly higher in patients with low versus high HRF and in patients with severe versus normal HRV. Significant difference (P < 0.001) was found among the effective doses of group A (mean ± standard deviation, 0.602 ± 0.363 mSv), group B (1.253 ± 0.804 mSv) and group C (9.039 ± 5.657 mSv).
Conclusion:
The higher temporal resolution of dual-source spiral CT coronary angiography performed with adaptive ECG pulsing results in preserved diagnostic image quality and performance independent of HRF or HRV at the cost of limited dose reduction in arrhythmic patients.
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