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使用基于生物力学模型的二维/三维配准技术,将超声计算机断层扫描体积与乳腺X线摄影图像进行图像融合。

Image fusion of Ultrasound Computer Tomography volumes with X-ray mammograms using a biomechanical model based 2D/3D registration.

作者信息

Hopp T, Duric N, Ruiter N V

机构信息

Karlsruhe Institute of Technology, Institute for Data Processing and Electronics, Postbox 3640, 76021 Karlsruhe, Germany.

Barbara Ann Karmanos Cancer Institute, Department of Oncology, 4100 John R, Detroit, MI 48201, USA.

出版信息

Comput Med Imaging Graph. 2015 Mar;40:170-81. doi: 10.1016/j.compmedimag.2014.10.005. Epub 2014 Oct 18.

Abstract

Ultrasound Computer Tomography (USCT) is a promising breast imaging modality under development. Comparison to a standard method like mammography is essential for further development. Due to significant differences in image dimensionality and compression state of the breast, correlating USCT images and X-ray mammograms is challenging. In this paper we present a 2D/3D registration method to improve the spatial correspondence and allow direct comparison of the images. It is based on biomechanical modeling of the breast and simulation of the mammographic compression. We investigate the effect of including patient-specific material parameters estimated automatically from USCT images. The method was systematically evaluated using numerical phantoms and in-vivo data. The average registration accuracy using the automated registration was 11.9mm. Based on the registered images a method for analysis of the diagnostic value of the USCT images was developed and initially applied to analyze sound speed and attenuation images based on X-ray mammograms as ground truth. Combining sound speed and attenuation allows differentiating lesions from surrounding tissue. Overlaying this information on mammograms, combines quantitative and morphological information for multimodal diagnosis.

摘要

超声计算机断层扫描(USCT)是一种正在开发的很有前景的乳腺成像模态。与乳腺X线摄影等标准方法进行比较对于其进一步发展至关重要。由于乳腺图像维度和压缩状态存在显著差异,将USCT图像与乳腺X线摄影图像进行关联具有挑战性。在本文中,我们提出了一种二维/三维配准方法,以改善空间对应关系并允许对图像进行直接比较。它基于乳腺的生物力学建模和乳腺X线摄影压缩模拟。我们研究了纳入从USCT图像自动估计的患者特定材料参数的效果。使用数值体模和体内数据对该方法进行了系统评估。使用自动配准的平均配准精度为11.9毫米。基于配准后的图像,开发了一种分析USCT图像诊断价值的方法,并最初应用于以乳腺X线摄影图像为基准真值来分析声速和衰减图像。结合声速和衰减可以区分病变与周围组织。将此信息叠加在乳腺X线摄影图像上,可将定量和形态学信息结合用于多模态诊断。

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