首页> 外文会议>Society of Photo-Optical Instrumentation Engineers Conference on Medical Imaging :Physiology and Function From Multidimensional Images >In-vitro validation of a novel model-based approach to the measurement of arterial blood flow waveforms from dynamic digital x-ray images
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In-vitro validation of a novel model-based approach to the measurement of arterial blood flow waveforms from dynamic digital x-ray images

机译:从动态数字X射线图像测量动态数字X射线图像的新型模型方法的体外验证

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We have developed a waveform shape model-based algorithm for the extraction of blood flow from dynamic arterial x-ray angiographic images. We have carried out in-vitro validation of this technique. A pulsatie physiological blood flow circuit was constructed using an anthropomorphic cerebral vascular phantom to simulate the cerebral arterial circulation with whole blood as the fluid. Instantaneous recording of flow from an electromagnetic flow meter (EMF) provided the gold standard measurement. Biplane dynamic digital x-ray images of the vascular phantom with injection of contrast medium were acquired at 25 fps using a PC frame capture card with calibration using a Perspex cube. Principal component analysis was used to construct a shape model by collecting 434 flow waveforms from the EMF under varying flow conditions. Blood flow waveforms were calculated from the angiograhphic data by using our previous concentration-distance curve matching (ORG) algorithm and by using the new model-based (MB) algorithm. Both instantaneous and mean flow values calculated using the MB algorithm showed greater correlation, less bias, and lower variability than those calculated using the ORG algorithm when compared to the EMF values. We have successfully demonstrated that use of a priori waveform shape information can improve flow measurements from dynamic x-ray angiograms.
机译:我们开发了一种基于波形形状模型的算法,用于从动态动脉X射线血管造影图像提取血流。我们已经对这种技术进行了体外验证。使用拟蒽型脑血管幽灵构建脉冲生理血流电路,以模拟全血为流体的脑动脉循环。从电磁流量计(EMF)的瞬时记录流量提供了金标准测量。使用具有Perspex立方体的校准的PC帧捕获卡在25 FPS中获得血管模型的血管模型的双向动态数字X射线图像。使用主成分分析来通过在不同的流动条件下通过从EMF收集434流波形来构造形状模型。通过使用我们先前的浓度 - 距离曲线匹配(ORG)算法以及使用新的基于模型(MB)算法来计算血流波形。使用MB算法计算的瞬时和平均流量均比使用ORG算法在与EMF值相比时比计算的相关性,更少的偏置和降低的可变性更大。我们已成功证明使用先验波形形状信息可以从动态X射线血管造影中提高流量测量。

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