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Updated: Oct 31, 2025

3D Whole-heart Myocardial Tissue Analysis
Published on: April 12, 2017
2D high resolution vs. 3D whole heart myocardial perfusion cardiovascular magnetic resonance
Muhummad Sohaib Nazir1, Joy Shome1, Adriana D M Villa1
1School of Biomedical Engineering and Imaging Sciences, King's College London, St Thomas' Hospital, 4th Floor Lambeth Wing, St Thomas' Hospital, Westminster Bridge Road, London SW1 7EH, UK.
Insights
High-resolution 2D and whole-heart 3D stress cardiovascular magnetic resonance (CMR) imaging are comparable for detecting myocardial ischemia. The 2D high-resolution technique shows higher myocardial ischemic burden, indicating greater sensitivity.
Area of Science:
- Cardiovascular Imaging
- Medical Physics
- Radiology
Background:
- Advancements in cardiovascular magnetic resonance (CMR) imaging enhance spatial resolution and myocardial coverage.
- Whole-heart coverage offers comprehensive assessment of myocardial ischemic burden.
- High spatial resolution is crucial for detecting subendocardial ischemia.
Purpose of the Study:
- To compare the myocardial ischemic burden assessed by 2D high-resolution and 3D whole-heart stress CMR.
- To evaluate the diagnostic performance of different CMR techniques in patients with coronary artery disease.
Main Methods:
- Thirty-eight patients with coronary artery disease underwent randomized 3-T stress CMR using 2D high-resolution (1.2 mm² spatial resolution) and 3D whole-heart (2.3 mm² in-plane spatial resolution) techniques.
- Myocardial ischemic burden was quantified as the percentage of perfusion defect at peak stress, adjusted for scar tissue.
Main Results:
- Median myocardial ischemic burden was significantly higher with 2D high-resolution CMR (16.1%) compared to 3D whole-heart CMR (13.4%) (P=0.004).
- Excellent agreement was observed between the two methods for quantifying myocardial ischemic burden (ICC=0.81).
- Moderate agreement was found when classifying ischemia dichotomously using a 10% threshold (κ=0.58).
Conclusions:
- Both 2D high-resolution and 3D whole-heart stress CMR are comparable for detecting myocardial ischemia.
- The 2D high-resolution technique yields higher myocardial ischemic burden values, suggesting increased sensitivity for ischemia detection.
Aims:
Developments in myocardial perfusion cardiovascular magnetic resonance (CMR) allow improvements in spatial resolution and/or myocardial coverage. Whole heart coverage may provide the most accurate assessment of myocardial ischaemic burden, while high spatial resolution is expected to improve detection of subendocardial ischaemia. The objective of this study was to compare myocardial ischaemic burden as depicted by 2D high resolution and 3D whole heart stress myocardial perfusion in patients with coronary artery disease.
Methods And Results:
Thirty-eight patients [age 61 ± 8 (21% female)] underwent 2D high resolution (spatial resolution 1.2 mm2) and 3D whole heart (in-plane spatial resolution 2.3 mm2) stress CMR at 3-T in randomized order. Myocardial ischaemic burden (%) was visually quantified as perfusion defect at peak stress perfusion subtracted from subendocardial myocardial scar and expressed as a percentage of the myocardium. Median myocardial ischaemic burden was significantly higher with 2D high resolution compared with 3D whole heart [16.1 (2.0-30.6) vs. 13.4 (5.2-23.2), P = 0.004]. There was excellent agreement between myocardial ischaemic burden (intraclass correlation coefficient 0.81; P < 0.0001), with mean ratio difference between 2D high resolution vs. 3D whole heart 1.28 ± 0.67 (95% limits of agreement -0.03 to 2.59). When using a 10% threshold for a dichotomous result for presence or absence of significant ischaemia, there was moderate agreement between the methods (κ = 0.58, P < 0.0001).
Conclusion:
2D high resolution and 3D whole heart myocardial perfusion stress CMR are comparable for detection of ischaemia. 2D high resolution gives higher values for myocardial ischaemic burden compared with 3D whole heart, suggesting that 2D high resolution is more sensitive for detection of ischaemia.
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