Improving detection of coronary morphological features from digital angiograms: Effect of stenosis-stabilized display

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Abstract

Background: We have developed a digital display method that stabilizes the motion of a stenosis in sequential frames of a coronary angiogram, allowing it to be scrutinized at high display frame rates. The purpose of this study was to determine whether this technique improves visual detection of low- contrast luminal morphological features. Methods and Results: An observer detection study was conducted using computer-simulated arterial segments containing known target features, inserted into clinical digital coronary angiograms. Four observers performed a forced-choice detection of a simulated filling defect in each of 320 angiograms using the conventional and stenosis- stabilized dynamic displays (at 7.5, 15, and 32 frames per second) and a single-frame static display (total of 8960 detections). In a second simulated clinical task, three observers detected a bridging stenotic lumen in 600 angiograms using the two displays (3600 detections). In a third experiment, two angiographers rated the likelihood of intraluminal thrombus in 89 right coronary digital angiograms by consensus reading with both dynamic displays. Detectability of the simulated filling defect was similar for both dynamic display methods at 7.5 frames per second (averaging twice that for static images). As display rate was increased to 32 frames per second, detectability for the conventional display declined, whereas the stabilized display detectability increased for all observers (P

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Eigler, N. L., Eckstein, M. P., Mahrer, K. N., & Whiting, J. S. (1994). Improving detection of coronary morphological features from digital angiograms: Effect of stenosis-stabilized display. Circulation, 89(6), 2700–2709. https://doi.org/10.1161/01.CIR.89.6.2700

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