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Updated: May 1, 2026

Identifying Coronary Artery Calcification on Non-gated Computed Tomography Scans
Published on: August 28, 2018
Noninvasive evaluation of coronary collateral arterial flow by coronary computed tomographic angiography
Jin-Ho Choi1, Eun Kyoung Kim2, Sung Mok Kim2
1From the Departments of Medicine (J.-H.C., E.K.K., Y.B.S., J-Y.H., S.H.C., H.-C.G., S.H.L., J.K.O.), Emergency Medicine (J.-H.C.), and Radiology (S.M.K., Y.H.C.), Cardiovascular Imaging Center, Samsung Medical Center, Sungkyunkwan University School of Medicine, Seoul, Korea; and Department of Internal Medicine, Mayo Clinic College of Medicine, Rochester, MN (J.K.O.). jhchoimd@gmail.com.
Insights
Transluminal attenuation gradient (TAG) using coronary computed tomographic angiography noninvasively assesses coronary collateral flow extent and direction. This method offers a promising alternative to invasive measurements for evaluating myocardial perfusion in occluded arteries.
Area of Science:
- Cardiovascular imaging
- Interventional cardiology
- Medical diagnostics
Background:
- Coronary collateral flow is crucial for myocardial perfusion in chronic total occlusions.
- Invasive methods limit clinical evaluation of collateral flow.
- Noninvasive assessment using coronary computed tomographic angiography (CCTA) is needed.
Purpose of the Study:
- To investigate CCTA's ability to evaluate the angiographic extent of coronary collateral flow.
- To assess the utility of Transluminal Attenuation Gradient (TAG) for collateral flow assessment.
Main Methods:
- 325 CCTA cases with chronic total occlusions were analyzed.
- Transluminal Attenuation Gradient (TAG) was calculated for entire and distal coronary arteries.
- TAG was validated against visual collateral assessment and Rentrop grading.
Main Results:
- TAG of the entire artery correlated with collateral flow extent (P<0.001).
- TAG predicted well-developed collaterals (cutoff ≥-7.6 HU/10 mm; c-statistic 0.72).
- TAG of the distal vessel discriminated antegrade vs. retrograde flow (cutoff 0.0 HU/10 mm; c-statistic 0.88).
Conclusions:
- TAG analysis of CCTA moderately reflects functional collateral flow extent.
- TAG also indicates the direction of collateral flow in distal arteries.
- TAG offers a noninvasive approach to evaluate coronary collateral function.
Background:
Coronary collateral flow is an alternative source of myocardial perfusion in patients with totally occluded coronary arteries. Clinical evaluation of collateral flow has been limited by the need of invasive measurements. We investigated whether noninvasive coronary computed tomographic angiography can evaluate the angiographic extent of coronary collateral flow.
Methods And Results:
We enrolled 325 coronary computed tomographic angiography cases with angiographically confirmed chronic total occlusion (median age, 63 years; men 83%). Transluminal attenuation gradient (TAG), which reflects the kinetics of contrast media in coronary artery, of an entire artery as well as of a distal vessel was assessed to evaluate the flow in entire vessel and distal vessel. TAGs were validated against visually assessed angiographic collateral connection and Rentrop grading. TAG of an entire artery increased consistently according to the angiographic extent of collateral flow (P<0.001). Well-developed collaterals, defined by highest collateral connection and Rentrop grades (n=103), could be predicted by TAG of an entire artery (cutoff, ≥-7.6 Hounsfield units/10 mm; c-statistics, 0.72; sensitivity, 65%; specificity, 73%; positive predictive value, 52%; negative predictive value, 82%). TAG of a distal vessel could discriminate the antegrade (n=143) and retrograde (n=182) flows in distal artery (cutoff, 0.0 Hounsfield unit/10 mm; c-statistics, 0.88; sensitivity, 78%; specificity, 85%; positive predictive value, 87%; negative predictive value, 75%).
Conclusions:
TAG, an intracoronary attenuation-based analysis of coronary computed tomographic angiography, moderately reflected the functional extent and direction of collateral flow.
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