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Phantom Study for Volume-of-Interest Breast Imaging using Differential Phase Contrast Cone Beam CT (DPC-CBCT)

机译:利用差分相衬锥形束CT(DPC-CBCT)进行乳房体积成像的幻像研究

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Differential phase contrast (DPC) imaging is reported to be able to deliver higher contrast-to-noise ratio (CNR) compared to attenuation-based x-ray imaging technologies. Due to the nature of attenuation contrast, the conventional cone beam CT (CBCT) technology has limitations in characterizing breast lesions with sufficiently high contrast and spatial resolution. As an alternative, the grating-based DPC-CBCT technology is potentially a powerful tool for breast imaging. However, limited by current grating fabrication techniques, a full field-of-view (FOV) that covers the whole breast is not practical at present. Previously by our group, a volume-of-interest (VOI) imaging method, which incorporates DPC-CBCT into a dedicated attenuation-based CBCT imaging system, was presented. In the method, the CBCT scan was performed to localize the suspicious volume and then a VOI scan by DPC-CBCT characterized the suspicious volume with higher contrast and resolution. In this work, we investigated the performance of DPC-CBCT VOI imaging by performing a phantom study using our bench-top DPC-CBCT system with a hospital-grade X-ray tube. A cylinder water phantom with a size of over twice of the FOV of our DPC-CBCT system was designed. The phantom contains four different materials and it was scanned at four different dose levels. In thick object scanning, phase wrapping errors cause artifacts for DPC-CBCT VOI imaging. A low-pass filter was designed to reduce the artifacts. In order to compare the DPC-CBCT VOI with attenuation-based CBCT, the scanning data were used to reconstruct both phase coefficient image and attenuation coefficient image. The reconstructed images will be quantitatively and visually evaluated with regards to contrast, noise level and artifacts.
机译:据报道,与基于衰减的X射线成像技术相比,差分相位对比(DPC)成像能够提供更高的对比噪声比(CNR)。由于衰减对比的性质,常规的锥形束CT(CBCT)技术在以足够高的对比和空间分辨率表征乳腺病变方面存在局限性。作为替代方案,基于光栅的DPC-CBCT技术可能是进行乳房成像的强大工具。但是,受当前光栅制造技术的限制,目前无法覆盖整个乳房的全视场(FOV)。我们小组先前提出了一种将感兴趣的体积(VOI)成像方法,该方法将DPC-CBCT集成到了基于衰减的专用CBCT成像系统中。在该方法中,执行CBCT扫描以定位可疑体积,然后通过DPC-CBCT进行的VOI扫描以较高的对比度和分辨率对可疑体积进行了表征。在这项工作中,我们通过使用带有医院级X射线管的台式DPC-CBCT系统进行幻像研究,研究了DPC-CBCT VOI成像的性能。设计了一种圆柱水体模,其尺寸是我们DPC-CBCT系统FOV的两倍以上。体模包含四种不同的材料,并以四种不同的剂量水平对其进行了扫描。在厚物体扫描中,相位包裹错误会导致DPC-CBCT VOI成像的伪影。设计低通滤波器以减少伪像。为了将DPC-CBCT VOI与基于衰减的CBCT进行比较,使用扫描数据来重建相位系数图像和衰减系数图像。将对对比度,噪声水平和伪影进行定量和视觉评估。

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