Breast shape estimation and correction in CESM biopsy

Rubèn Sanchez De la Rosa, C. Jailin, A. Carton, Pablo Milioni, Laurence Casteignau, S. Muller
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Abstract

Description of purpose Contrast-enhanced spectral mammography can be used to guide needle biopsies. However, in vertical approach the compressed breast is deformed generating a so-called bump in the paddle aperture, which may interfere with the visibility of contrast-uptakes. Local thickness estimation would provide an enhanced image quality of the recombined image, increasing the visibility of the contrast-uptakes to be targeted during the biopsy procedure. In this work we propose a method to estimate the shape of the breast bump in biopsy vertical approach. Materials and Methods Our method consists on two steps: first, we compute a raw thickness which does not take into account the presence of contrast-uptakes; second, we use a physical model to separate the sparse iodine texture from the breast shape. This physical model is composed by a sum of Fourier components, describing the main shape of the bump, a series of low-order polynomials, describing the main compressed thickness, paddle tilt and deflection, and non-linear components describing the translation and rotation of the paddle aperture. A 3D object mimicking a bump was fabricated to test the pertinence of our shape model. Also, clinical images of 21 patients which followed CESM-guided biopsy were visually assessed. Results Comparison between raw and final estimated thickness of our 3D test object shows an error standard deviation of 0.37 mm similar to the noise standard deviation equals to 0.32 mm. The visual assessment of clinical cases showed that the thickness correction removes the superimposed low-frequency pattern due to non-uniform thickness of the bump, improving the identification of the lesion to be targeted. Conclusion The proposed method for thickness estimation is adapted to CESM-guided biopsies in vertical approach and it improves the identification of the contrast-uptakes that need to be targeted during the procedure.
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CESM活检中乳房形状的估计和校正
目的描述对比增强光谱乳房x线摄影可用于指导针活检。然而,在垂直接近中,压缩的乳房会变形,在桨孔中产生所谓的凸起,这可能会干扰对比度摄取的可见性。局部厚度估计将提高重组图像的图像质量,增加活检过程中目标对比度的可见性。在这项工作中,我们提出了一种方法来估计乳房肿块的形状活检垂直途径。材料和方法我们的方法包括两个步骤:首先,我们计算不考虑对比吸收存在的原始厚度;其次,我们使用物理模型将稀疏碘纹理从乳房形状中分离出来。该物理模型由描述凸起主要形状的傅里叶分量、描述主要压缩厚度、桨叶倾斜和偏转的一系列低阶多项式和描述桨叶孔径平移和旋转的非线性分量组成。我们制作了一个模拟凹凸的3D物体来测试我们的形状模型的相关性。同时,对21例接受cesm引导活检的患者的临床图像进行了视觉评估。结果3D测试对象的原始厚度与最终估计厚度的误差标准差为0.37 mm,与噪声标准差为0.32 mm相似。临床病例的视觉评估表明,厚度校正消除了由于肿块厚度不均匀而叠加的低频模式,提高了对目标病变的识别。结论所提出的厚度估计方法适用于垂直入路cesm引导下的活检,提高了对手术过程中需要靶向的对比吸收物的识别。
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