旋转弹性图:一种显示准静态压缩下局部刚体旋转的新方法

S. C., AliArshad Kothawala, A. Thittai
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引用次数: 1

摘要

在手触诊乳房肿块时,其僵硬和滑溜的感觉是医生常用的两个信息。为了可靠和定量地获得这些信息,已经开发了几种非侵入性弹性成像技术,旨在提供潜在力学特性的图像,主要是与刚度相关的。很少有方法显示病变背景边界的“滑移”,这种情况只发生在连接松散的良性病变。研究表明,轴向剪切应变分布提供了下伏滑移的信息。其中一个特征,被称为“填充”,被解释为在准静态压缩下,不对称定向、松散结合、良性病变所经历的旋转的替代品。然而,旋转本身的成像和直接可视化尚未得到解决。为了实现这一目标,需要提高横向位移估计的质量。在模拟研究中,我们利用空间复合方法,并评估了获得高质量旋转弹性图的可行性。在不同消噪角度下,从包含45°取向的椭圆内含物的模体中获得角轴向和侧向位移估计,并受到1%的顶部压缩。采用多级二维块匹配算法进行位移跟踪,采用角、轴、侧向位移估计的二维最小二乘复合。通过改变最大转向角和增量角,评估了横向运动跟踪精度的提高及其对旋转弹性图质量的影响。结果表明,使用该技术可以显著改善旋转弹性图。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rotation elastogram: a novel method to visualize local rigid body rotation under quasi-static compression
During manual palpation of breast masses, the perception of its stiffness and slipperiness are the two commonly used information by the physician. In order to reliably and quantitatively obtain this information several non-invasive elastography techniques have been developed that seek to provide an image of the underlying mechanical properties, mostly stiffness-related. Very few approaches have visualized the "slip" at the lesion-background boundary that only occurs for a loosely-bonded benign lesion. It has been shown that axial-shear strain distribution provides information about underlying slip. One such feature, referred to as "fill-in" was interpreted as a surrogate of the rotation undergone by an asymmetrically-oriented-loosely bonded-benign-lesion under quasi-static compression. However, imaging and direct visualization of the rotation itself has not been addressed yet. In order to accomplish this, the quality of lateral displacement estimation needs to be improved. In this simulation study, we utilize spatial compounding approach and assess the feasibility to obtain good quality rotation elastogram. The angular axial and lateral displacement estimates were obtained at different insonification angles from a phantom containing an elliptical inclusion oriented at 45°, subjected to 1% compression from the top. A multilevel 2D-block matching algorithm was used for displacement tracking and 2D-least square compounding of angular axial and lateral displacement estimates was employed. By varying the maximum steering angle and incremental angle, the improvement in the lateral motion tracking accuracy and its effects on the quality of rotational elastogram were evaluated. Results demonstrate significantly-improved rotation elastogram using this technique.
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