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目的 为包含多个小血管的感兴趣区域选择高频功率多普勒壁滤波器截止速度。

Objective selection of high-frequency power Doppler wall filter cutoff velocity for regions of interest containing multiple small vessels.

机构信息

Biomedical Engineering Graduate Program and Robarts Research Institute, University ofWestern Ontario, London, ON N6A 5K8, Canada.

出版信息

IEEE Trans Med Imaging. 2010 May;29(5):1124-39. doi: 10.1109/TMI.2010.2041246. Epub 2010 Mar 15.

Abstract

High-frequency (> 20 MHz) power Doppler ultrasound is frequently used to quantify vascularity in preclinical studies of small animal angiogenic models, but quantitative images can be difficult to obtain in the presence of flow artifacts. To improve flow quantification, color pixel density (CPD) can be plotted as a function of wall filter cutoff velocity to produce a wall-filter selection curve that can be used to estimate actual vascular volume fraction. A mathematical model based on receiver operating characteristic statistics is developed to study the behavior of wall-filter selection curves. The model is compared to experimental data acquired with a 30-MHz transducer and a custom-designed multiple-vessel flow phantom capable of mimicking a range of blood vessel sizes (200-300 microm), blood flow velocities (1-10 mm/s), and blood vessel orientations. At high flow rates, wall-filter selection curves for multiple-vessel regions include a plateau whose CPD corresponds with the total vascular volume fraction. Conversely, the vascular volume fraction of a subset of vessels is obtained at low flow rates. Detection of the volume fraction of all vessels is ensured when a plateau is > 0.5 mm/s in length and begins at a wall filter cutoff < 2 mm/s.

摘要

高频(>20MHz)功率多普勒超声常用于对小型动物血管生成模型的临床前研究进行血管量化,但在存在流动伪影的情况下,定量图像可能难以获得。为了提高流量量化的准确性,可以将彩色像素密度(CPD)绘制为壁滤波器截止速度的函数,以生成壁滤波器选择曲线,该曲线可用于估计实际的血管体积分数。本研究建立了一种基于接收者操作特征统计的数学模型,用于研究壁滤波器选择曲线的行为。该模型与使用 30MHz 换能器和定制设计的多血管流动体模获得的实验数据进行了比较,该体模能够模拟一系列血管大小(200-300μm)、血流速度(1-10mm/s)和血管方向。在高流速下,多血管区域的壁滤波器选择曲线包含一个平台,其 CPD 对应于总血管体积分数。相反,在低流速下获得部分血管的血管体积分数。当平台长度>0.5mm/s 且起始壁滤波器截止<2mm/s 时,确保可以检测到所有血管的体积分数。

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