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使用血管造影首次通过分布技术测量冠状动脉血流:一项可行性研究。

Coronary blood flow measurement using an angiographic first pass distribution technique: a feasibility study.

作者信息

Hangiandreou N J, Folts J D, Peppler W W, Mistretta C A

机构信息

Department of Medical Physics, University of Wisconsin--Madison 53706.

出版信息

Med Phys. 1991 Sep-Oct;18(5):947-54. doi: 10.1118/1.596716.

Abstract

Due to the well-documented problems associated with visual interpretation of coronary angiograms, more physiologic means of assessing coronary artery stenosis are being investigated. One physiologic parameter that has been suggested is coronary flow reserve (CFR). A digital subtraction angiographic technique based on first pass distribution analysis (FPA) is proposed as a means of measuring CFR and absolute coronary flow. The theory of the FPA method is first outlined, and the implementation of a preliminary version of the FPA algorithm is described. Experiments verifying the utility of this algorithm for measuring absolute flow through a flow phantom, and through the canine circumflex artery are reported. It was determined that the preliminary FPA algorithm is capable of measuring canine coronary flow ratios (R) with accuracy and precision characteristics meeting or exceeding those reported for the parametric imaging technique (RFPA = 0.933.Rtrue, SEE = 0.16, r = 0.984). Accurate absolute flow (Q) measurements were obtained in all of the phantom experiments (QFPA = 1.054.Qtrue, r = 0.993), and in one of the three dogs that were studied (QFPA = 0.977.Qtrue, r = 0.935). The difficulty encountered in the other two dog experiments is attributed to the effects of system temporal lag, and would likely be corrected through the use of improved cameras. The feasibility of the general FPA method for measuring relative flow is established, and the potential for routine, absolute flow measurement is demonstrated.

摘要

由于冠状动脉造影的视觉解读存在诸多已被充分记录的问题,人们正在研究更多评估冠状动脉狭窄的生理学方法。一种被提出的生理学参数是冠状动脉血流储备(CFR)。本文提出一种基于首过分布分析(FPA)的数字减影血管造影技术,作为测量CFR和绝对冠状动脉血流的一种方法。首先概述了FPA方法的原理,并描述了FPA算法初步版本的实现。报告了通过血流模型以及犬类冠状动脉左旋支验证该算法测量绝对血流效用的实验。结果表明,初步的FPA算法能够准确测量犬类冠状动脉血流比率(R),其精度特征达到或超过参数成像技术报告的水平(RFPA = 0.933.Rtrue,SEE = 0.16,r = 0.984)。在所有模型实验中均获得了准确的绝对血流(Q)测量值(QFPA = 1.054.Qtrue,r = 0.993),并且在所研究的三只犬中的一只也获得了准确测量值(QFPA = 0.977.Qtrue,r = 0.935)。另外两只犬实验中遇到的困难归因于系统时间延迟的影响,通过使用改进的相机可能会得到纠正。确立了一般FPA方法测量相对血流的可行性,并证明了进行常规绝对血流测量的潜力。

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