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Quantitative Dual-Energy Coronary Arteriography

机译:定量双能冠状动脉造影

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Subtraction techniques for digital cardiac imaging have been hampered by misregistration artifacts. The use of dual-energy imaging is being evaluated as a means for reducing these artifacts. Results reported previously indicate that the dual-energy technique may be useful for applications such as exercise ventriculography and general quantification tasks. The purpose of the current study is to investigate the use of dual-energy subtraction imaging for quantitative coronary arteriography. In vivo coronary vessel phantoms (0.2 to 7 mm2in cross-sectional area) were used to study the potential advantages of tissue suppressed energy subtracted images over unsubtracted images for quantification of absolute vessel cross-sectional area when cardiac motion is present. Estimates of lumen cross-sectional area (N = 20) were determined using videodensitometric analysis of selected energy subtracted and unsubtracted images. Linear regression analysis of measured and actual cross-sectional area showed energy subtracted image data (slope = 1.06, intercept = 0.48 mm2, r = 0.99) to have improved accuracy (P < .05) and precision (P < .05) over unsubtracted image data (slope = 1.24, intercept = 1.07 mm2, r = 0.95).
机译:数字心脏成像的减法技术一直受到错误配准伪影的阻碍。正在评估使用双能成像作为减少这些伪影的一种手段。先前报告的结果表明,双能技术可能可用于运动心室造影和一般量化任务等应用。本研究的目的是研究双能减影成像在定量冠状动脉造影中的应用。体内冠状动脉血管模型(0.2 至 7 mm2 英寸横截面积)用于研究组织抑制能量减去图像相对于未减去图像的潜在优势,用于量化存在心脏运动时的绝对血管横截面积。使用对选定的能量减去和未减去图像进行视频密度分析来确定流明横截面积(N = 20)的估计值。测量和实际横截面积的线性回归分析显示,与未减去的图像数据(斜率&等于;1.06,截距&等于;0.48 mm2,r=0.99)相比,能量减去图像数据(斜率&等于;1.06,截距&等于;0.99)具有更高的精度(P<.05)和精度(P<.05)。

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