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Effects of correlation window length and reflection amplitude on axial displacement measurements using cone phantoms

机译:相关窗口长度和反射幅度对使用圆锥体模测量轴向位移的影响

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Correlation based displacement estimation techniques are widely used in the field of ultrasound elastography. Changes in the underlying echo pattern due to mechanical excitation allow the detection of local displacements. In the presence of bright reflections due to an acoustic impedance mismatch, a displacement estimation bias may occur resulting in image blurring. The goal of this study was to measure the effects of correlation window length and boundary reflections on axial displacement measurements using a cone phantom. A 2D MATLAB simulation was developed to model this system. Displacements were estimated using windowed normalized cross-correlation. Windows ranged in length from 0.2 mm to 2.9 mm (1.3 ¿ to 20 ¿ given f = 5.33 MHz and c = 1540 m/s). A line of scatterers were located on the edge of the wedge and assigned a higher amplitude in order to simulate a bright reflection. The location on the wedge axis where the displacement was half the maximum displacement at the base of the wedge was identified. The axial wedge width at that location was reported as the resolution. Axial resolution measurements were linearly proportional to window length. Resolution was approximately 0.8 mm given a 0.6 mm window length with a reflection that was 5 times the amplitude of the surrounding speckle, and 0.4 mm without a reflection for our set of parameters. A preliminary experiment was also performed in which a tissue-mimicking cone phantom was imaged using an Acoustic Radiation Force Impulse (ARFI) Imaging system to measure the effects of the reflective boundary as a function of correlation window length.
机译:基于相关的位移估计技术被广泛应用于超声弹性成像领域。由于机械激励而引起的基础回波模式的变化允许检测局部位移。在存在由于声阻抗不匹配导致的明亮反射时,可能会发生位移估计偏差,从而导致图像模糊。这项研究的目的是使用锥形体模来测量相关窗口长度和边界反射对轴向位移测量的影响。开发了2D MATLAB仿真来对该系统进行建模。使用窗口归一化互相关估计位移。窗口的长度范围从0.2毫米到2.9毫米(在给定的f = 5.33 MHz和c = 1540 m / s的条件下,从1.3°C到20°C)。一排散射体位于楔形的边缘,并分配了较高的幅度,以模拟明亮的反射。确定了楔形轴上位移为楔形基部最大位移一半的位置。将该位置的轴向楔形宽度报告为分辨率。轴向分辨率测量与窗口长度成线性比例。在窗口长度为0.6毫米的情况下,分辨率约为0.8毫米,而反射率是周围散斑幅度的5倍;对于我们的一组参数,分辨率为0.4毫米,而没有反射率。还进行了初步实验,其中使用声辐射力脉冲(ARFI)成像系统对模仿组织的圆锥体模进行了成像,以测量反射边界的作用与相关窗口长度的关系。

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