Wu Xiangyi, Duan Xiaoyu, Huang Hailiang, Zhao Wei
Stony Brook Medicine, Department of Radiology, Stony Brook, New York, United States.
J Med Imaging (Bellingham). 2025 Jan;12(Suppl 1):S13008. doi: 10.1117/1.JMI.12.S1.S13008. Epub 2024 Dec 4.
Contrast-enhanced digital breast tomosynthesis (CEDBT) highlights breast tumors with neo-angiogenesis. A recently proposed CEDBT system with a dual-layer (DL) flat-panel detector enables simultaneous acquisition of high-energy (HE) and low-energy (LE) projection images with a single exposure, which reduces acquisition time and eliminates motion artifacts. However, x-ray scatter degrades image quality and lesion detectability. We propose a practical method for accurate and robust scatter correction (SC) for DL-CEDBT.
The proposed hybrid SC method combines the advantages of a two-kernel iterative convolution method and an empirical interpolation strategy, which accounts for the reduced scatter from the peripheral breast region due to thickness roll-off and the scatter contribution from the region outside the breast. Scatter point spread functions were generated using Monte Carlo simulations with different breast glandular fractions, compressed thicknesses, and projection angles. Projection images and ground truth scatter maps of anthropomorphic digital breast phantoms were simulated to evaluate the performance of the proposed SC method and three other kernel- and interpolation-based methods. The mean absolute relative error (MARE) between scatter estimates and ground truth was used as the metric for SC accuracy.
DL-CEDBT shows scatter characteristics different from dual-shot, primarily due to the two energy peaks of the incident spectrum and the structure of the DL detector. Compared with the other methods investigated, the proposed hybrid SC method showed superior accuracy and robustness, with MARE of for all LE and HE projection images of different phantoms in both cranial-caudal and mediolateral-oblique views. After SC, cupping artifacts in the dual-energy image were removed, and the signal difference-to-noise ratio was improved by 82.0% for 8 mm iodine objects.
A practical SC method was developed, which provided accurate and robust scatter estimates to improve image quality and lesion detectability for DL-CEDBT.
对比增强数字乳腺断层合成(CEDBT)可突出显示具有新生血管生成的乳腺肿瘤。最近提出的一种采用双层(DL)平板探测器的CEDBT系统能够在一次曝光下同时采集高能(HE)和低能(LE)投影图像,这减少了采集时间并消除了运动伪影。然而,X射线散射会降低图像质量和病变可检测性。我们提出了一种实用的方法,用于对DL-CEDBT进行准确且稳健的散射校正(SC)。
所提出的混合SC方法结合了双内核迭代卷积方法和经验插值策略的优点,该策略考虑了由于厚度衰减导致的乳腺周边区域散射减少以及乳腺外部区域的散射贡献。使用具有不同乳腺腺体分数、压缩厚度和投影角度的蒙特卡罗模拟生成散射点扩散函数。模拟了拟人化数字乳腺体模的投影图像和真实散射图,以评估所提出的SC方法以及其他三种基于内核和插值的方法的性能。散射估计值与真实值之间的平均绝对相对误差(MARE)用作SC准确性的指标。
DL-CEDBT显示出与双能成像不同的散射特性,这主要归因于入射光谱的两个能量峰和DL探测器的结构。与所研究的其他方法相比,所提出的混合SC方法显示出更高的准确性和稳健性,在头足位和内外斜位视图中,不同体模的所有LE和HE投影图像的MARE均为 。进行SC后,双能图像中的杯状伪影被消除,对于8毫米碘物体,信号差噪比提高了82.0%。
开发了一种实用的SC方法,该方法提供了准确且稳健的散射估计,以提高DL-CEDBT的图像质量和病变可检测性。