Related Experiment Video
Updated: Apr 28, 2026

Voluntary Breath-hold Technique for Reducing Heart Dose in Left Breast Radiotherapy
Published on: July 3, 2014
CT dose reduction using prospectively triggered or fast-pitch spiral technique employed in cardiothoracic imaging
Kavitha M Chinnaiyan1, Abhay N Bilolikar1, Edward Walsh2
1Department of Cardiovascular Medicine, William Beaumont Hospital, 3601 W. 13 Mile Road, Royal Oak, MI, USA.
Insights
New CT scanner technology significantly reduces radiation dose for cardiovascular imaging, including coronary artery disease and pulmonary embolism scans, without affecting image quality. This advancement supports updated dose recommendations for patient safety.
Area of Science:
- Radiology
- Medical Imaging
- Cardiovascular CT
Background:
- Previous studies suggest advanced CT scanners reduce radiation dose.
- Large-scale surveys are needed to establish diagnostic reference levels.
- Real-world data is crucial for evaluating new technologies.
Purpose of the Study:
- To compare radiation dose levels between contemporary and previous generation CT scanners.
- To evaluate dose reduction in patients undergoing cardiovascular CT scans.
- To assess image quality in relation to dose reduction.
Main Methods:
- Retrospective data collection from 64-slice scanners (control).
- Prospective data collection from 128-slice dual-source scanners with high-pitch capability (study).
- Analysis of dose and image quality parameters from 2085 patients across multiple cardiovascular indications.
Main Results:
- Significant 61% reduction in median dose-length product (DLP) from 669 to 260 mGy·cm.
- Dose reduction observed across all evaluated cardiovascular conditions.
- No significant difference in image quality between scanner types.
Conclusions:
- Advanced CT scanners (prospectively triggered/high-pitch) markedly reduce radiation dose for cardiovascular studies.
- Image quality is maintained despite dose reduction.
- Findings support new target dose recommendations in guidelines.
Objectives:
To establish current radiation dose levels with contemporary scanners capable of prospectively triggered or high-pitch spiral scan modes to previous generation scanners among patients evaluated for coronary artery disease, pulmonary embolism, aortic disease, and "triple rule out" in a large population of patients at multiple centers.
Background:
Previous small-scale studies with carefully controlled scan protocols report that CT scanners that facilitate prospectively triggered scanning and provide high-pitch spiral CT scan modes drastically lower radiation doses. However, diagnostic reference levels should be selected by medical bodies on the basis of large surveys of representative sites and reviewed at appropriate time intervals.
Methods:
Scan data including dose and image quality parameters were collected retrospectively from 64 slice scanners (control) and prospectively after sites installed 128-slice dual-source scanners with high-pitch capability (study). Protocol selection was purposely not specified to survey "real world" results. Blinded quantitative image analysis was performed on every fifth scan.
Results:
From April 2011 to March 2012, 2085 patients at 9 sites completed the study: 1051 coronary artery disease (509 control, 542 study), 528 pulmonary embolism (267 control, 261 study), 419 aortic disease (268 control, 151 study), and 87 triple rule out (53 control, 34 study). There was a significant reduction in median dose-length product (DLP) from 669 mGy ∙ cm (interquartile range [IQR]: 419-1026 mGy ∙ cm) in the control group to 260 mGy ∙ cm (IQR: 159-441 mGy ∙ cm) in the study group, a reduction by 61% (P < .0001) and was lower in all categories. No significant differences were noted in image quality.
Conclusion:
Use of advanced scanners facilitating prospectively triggered or high-pitch spiral scan modes results in marked dose reduction across a variety of cardiovascular studies, with no compromise in image quality. These findings may contribute to new target dose recommendations in societal guidelines.
Related Concept Videos
Imaging Studies for Cardiovascular System V: CT
Imaging Studies for Cardiovascular System III: X-Ray
Definition and Purpose
An X-ray, or radiograph, is a non-invasive method that uses ionizing radiation to take images of internal structures. It is mainly used in cardiac imaging to examine the heart, lungs, and major blood vessels, aiming to identify abnormalities in the heart's size, shape, and position, such as heart failure, congenital defects, and vascular...

