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Accurate Analysis of Blood Vessel Sizes and Stenotic Lesions Using Stereoscopic DSA System

机译:使用立体DSA系统准确分析血管大小和狭窄病变

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Fencil LE, Doi K, Hoffman KR. Accurate analysis of blood vessel sizes and stenotic lesions using stereoscopic DSA system. Invest Radiol 1988;23:33ndash;41.We have developed a technique to determine accurately the magnification factor and three-dimensional orientation of a vessel segment from a stereoscopic pair of digital subtraction angiograms (DSA). Our DSA system includes a stereoscopic x-ray tube with a 25-mm focal spot shift. The magnification and orientation of a selected vessel segment are determined from the distance and direction of the focal spot shift and the stereoscopic discrepancy in image positions for that segment. Our results indicate that the accuracies of determining the magnification and orientation are less than 1percnt; and approximately 5deg;, respectively. After the magnification and orientation are determined accurately, an iterative deconvolution technique for the measurement of vessel image size is applied to the selected vessel segment. This iterative deconvolution technique provides the best estimate of vessel image size by taking into account the unsharpness of the digital system. With this technique, the vessel image size can be determined to an accuracy of approximately 1.0 mm, which corresponds to one third the pixel size of our DSA system. Information derived from stereoscopic analysis and iterative deconvolution thus allows accurate calculation of actual vascular dimensions from DSA images.
机译:使用立体DSA系统准确分析血管大小和狭窄病变。Invest Radiol 1988年;23:33–41.我们开发了一种技术,可以从一对立体数字减影血管造影(DSA)中准确确定血管段的放大倍数和三维方向。我们的 DSA 系统包括一个具有 25 毫米焦斑位移的立体 X 射线管。所选血管段的放大倍率和方向由焦点位移的距离和方向以及该段图像位置的立体差异确定。我们的结果表明,确定放大倍率和方向的精度分别小于1%和约5°。在准确确定放大倍率和方向后,将用于测量血管图像尺寸的迭代反卷积技术应用于选定的血管段。这种迭代反卷积技术通过考虑数字系统的不清晰度,提供了对容器图像尺寸的最佳估计。使用这种技术,可以确定容器图像尺寸的精度约为 1.0 毫米,相当于我们 DSA 系统像素尺寸的三分之一。因此,从立体分析和迭代反卷积中获得的信息允许从 DSA 图像中准确计算实际血管尺寸。

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