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X 射线应变张量成像:微 CT 的有限元模拟与实验。

X-ray strain tensor imaging: FEM simulation and experiments with a micro-CT.

机构信息

Department of Biomedical Engineering, Kyung Hee University, Yongin-si, Korea.

出版信息

J Xray Sci Technol. 2014;22(1):63-75. doi: 10.3233/XST-130409.

Abstract

In tissue elasticity imaging, measuring the strain tensor components is necessary to solve the inverse problem. However, it is impractical to measure all the tensor components in ultrasound or MRI elastography because of their anisotropic spatial resolution. The objective of this study is to compute 3D strain tensor maps from the 3D CT images of a tissue-mimicking phantom. We took 3D micro-CT images of the phantom twice with applying two different mechanical compressions to it. Applying the 3D image correlation technique to the CT images under different compression, we computed 3D displacement vectors and strain tensors at every pixel. To evaluate the accuracy of the strain tensor maps, we made a 3D FEM model of the phantom, and we computed strain tensor maps through FEM simulation. Experimentally obtained strain tensor maps showed similar patterns to the FEM-simulated ones in visual inspection. The correlation between the strain tensor maps obtained from the experiment and the FEM simulation ranges from 0.03 to 0.93. Even though the strain tensor maps suffer from high level noise, we expect the x-ray strain tensor imaging may find some biomedical applications such as malignant tissue characterization and stress analysis inside the tissues.

摘要

在组织弹性成像中,测量应变张量分量对于解决逆问题是必要的。然而,由于超声或 MRI 弹性成像的各向异性空间分辨率,实际中不可能测量所有张量分量。本研究的目的是从组织模拟体模的 3D CT 图像中计算 3D 应变张量图。我们对该体模进行了两次 3D 微 CT 扫描,对其施加了两种不同的机械压缩。对不同压缩下的 CT 图像应用 3D 图像相关技术,我们在每个像素处计算了 3D 位移向量和应变张量。为了评估应变张量图的准确性,我们对体模建立了一个 3D FEM 模型,并通过 FEM 模拟计算了应变张量图。实验得到的应变张量图在视觉检查上与 FEM 模拟的应变张量图具有相似的模式。从实验和 FEM 模拟中获得的应变张量图之间的相关性在 0.03 到 0.93 之间。即使应变张量图受到高水平噪声的影响,我们也期望 X 射线应变张量成像可能会在一些生物医学应用中找到应用,如恶性组织特征化和组织内部的应力分析。

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