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Optimization of Dual Energy Contrast Enhanced Breast Tomosynthesis for Improved Mammographic Lesion Detection and Diagnosis

机译:优化双能对比增强乳房乳腺素的乳房XUMPORION检测和诊断

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Dual-energy contrast-enhanced breast tomosynthesis has been proposed as a technique to improve the detection of early-stage cancer in young, high-risk women. This study focused on optimizing this technique using computer simulations. The computer simulation used analytical calculations to optimize the signal difference to noise ratio (SdNR) of resulting images from such a technique at constant dose. The optimization included the optimal radiographic technique, optimal distribution of dose between the two single-energy projection images, and the optimal weighting factor for the dual energy subtraction. Importantly, the SdNR included both anatomical and quantum noise sources, as dual energy imaging reduces anatomical noise at the expense of increases in quantum noise. Assuming a tungsten anode, the maximum SdNR at constant dose was achieved for a high energy beam at 49 kVp with 92.5 μm copper filtration and a low energy beam at 49 kVp with 95 μrn tin filtration. These analytical calculations were followed by Monte Carlo simulations that included the effects of scattered radiation and detector properties. Finally, the feasibility of this technique was tested in a small animal imaging experiment using a novel iodinated liposomal contrast agent. The results illustrated the utility of dual energy imaging and determined the optimal acquisition parameters for this technique. This work was supported in part by grants from the Komen Foundation (PDF55806), the Cancer Research and Prevention Foundation, and the NIH (NCI R21 CA124584-01). CIVM is a NCRR/NCI National Resource under P41-05959/U24-CA092656.
机译:已经提出了双能对比度增强的乳房分层作为改善年轻高危女性早期癌症检测的技术。本研究专注于使用计算机仿真优化该技术。计算机仿真使用分析计算以优化与恒定剂量的这种技术产生的图像噪声比(SDNR)的信号差。优化包括最佳放射线技术,两个单能投影图像之间的剂量的最佳分布,以及双能量减法的最佳加权因子。重要的是,SDNR包括解剖学和量子噪声源,因为双能成像在量子噪声增加时减少了牺牲的解剖噪声。假设钨阳极,在49kVP的高能束以92.5μm铜过滤的高能束和具有95μr锡过滤的49 kVp的低能量束以恒定剂量的最大SDNR。这些分析计算术后,蒙特卡罗模拟包括散射辐射和检测器性能的影响。最后,使用新型碘化脂质体造影剂在小型动物成像实验中测试了该技术的可行性。结果说明了双能成像的效用,并确定了该技术的最佳采集参数。这项工作是由科门基金会(PDF55806),癌症研究和预防基础以及NIH(NCI R21CA124584-01)的补助金。 CIVM是P41-05959 / U24-CA092656下的NCRR / NCI国家资源。

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