首页> 外文期刊>Medical Physics >Optimization of a dual-energy contrast-enhanced technique for a photon-counting digital breast tomosynthesis system: I. A theoretical model.
【24h】

Optimization of a dual-energy contrast-enhanced technique for a photon-counting digital breast tomosynthesis system: I. A theoretical model.

机译:用于光子计数数字乳房断层合成系统的双能量对比增强技术的优化:I.理论模型。

获取原文
获取原文并翻译 | 示例
       

摘要

PURPOSE: Dual-energy (DE) iodine contrast-enhanced x-ray imaging of the breast has been shown to identify cancers that would otherwise be mammographically occult. In this article, theoretical modeling was performed to obtain optimally enhanced iodine images for a photon-counting digital breast tomosynthesis (DBT) system using a DE acquisition technique. METHODS: In the system examined, the breast is scanned with a multislit prepatient collimator aligned with a multidetector camera. Each detector collects a projection image at a unique angle during the scan. Low-energy (LE) and high-energy (HE) projection images are acquired simultaneously in a single scan by covering alternate collimator slits with Sn and Cu filters, respectively. Sn filters ranging from 0.08 to 0.22 mm thickness and Cu filters from 0.11 to 0.27 mm thickness were investigated. A tube voltage of 49 kV was selected. Tomographic images, hereafter referred to as DBT images, were reconstructed using a shift-and-add algorithm. Iodine-enhanced DBT images were acquired by performing a weighted logarithmic subtraction of the HE and LE DBT images, The DE technique was evaluated for 20-80 mm thick breasts. Weighting factors, w(t) that optimally cancel breast tissue were computed. Signal-difference-to-noise ratios (SDNRs) between iodine-enhanced and nonenhanced breast tissue normalized to the square root of the mean glandular dose (MGD) were computed as a function of the fraction of the MGD allocated to the HE images. Peak SDNR/ mean square root of MGD and optimal dose allocations were identified. SDNR/ mean square root of MGD and dose allocations were computed for several practical feasible system configurations (i.e., determined by the number of collimator slits covered by Sn and Cu). A practicalsystem configuration an d Sn-Cu filterpair that accounts for the trade-off between SDNR, tube-output, and MGD were selected. RESULTS: w(t) depends on the Sn-Cu filter combination used, as well as on the breast thickness; to optimally cancel 0% with 50% glandular breast tissue, w(t) values were found to range from 0.46 to 0.72 for all breast thicknesses and Sn-Cu filter pairs studied. The optimal w(t) values needed to cancel all possible breast tissue glandularites vary by less than 1% for 20 mm thick breasts and 18% for 80 mm breasts. The system configuration where one collimator slit covered by Sn is alternated with two collimator slits covered by Cu delivers SDNR/ mean square root of MGD nearest to the peak value. A reasonable compromise is a 0.16 mm Sn-0.23 mm Cu filter pair, resulting in SDNR values between 1.64 and 0.61 and MGD between 0.70 and 0.53 mGy for 20-80 mm thick breasts at the maximum tube current. CONCLUSIONS: A DE acquisition technique for a photon-counting DBT imaging system has been developed and optimized.
机译:目的:乳房的双能(碘)碘造影剂增强X射线成像已经显示出可以识别乳房X线照片上无法发现的癌症。在本文中,进行了理论建模,以使用DE采集技术为光子计数数字乳房断层合成(DBT)系统获得最佳增强的碘图像。方法:在所检查的系统中,使用多缝术前准直仪和多探测器摄像头对乳房进行扫描。在扫描期间,每个检测器都以唯一的角度收集投影图像。通过分别用Sn和Cu滤镜覆盖交替的准直仪狭缝,可以在单次扫描中同时获取低能(LE)和高能(HE)投影图像。研究了0.08至0.22 mm厚度的Sn过滤器和0.11至0.27 mm厚度的Cu过滤器。选择了49 kV的管电压。使用移位和相加算法重建断层图像,以下称为DBT图像。通过对HE和LE DBT图像进行加权对数减法获取碘增强的DBT图像。对20-80 mm厚的乳房评估DE技术。计算出最佳消除乳房组织的加权因子w(t)。根据分配给HE图像的MGD的分数,计算出碘增强和未增强的乳腺组织之间的信号差噪声比(SDNR),这些信号标准化为平均腺体剂量(MGD)的平方根。确定了SDGD峰/ MGD的均方根和最佳剂量分配。 SDNR / MGD的均方根和剂量分配是针对几种实际可行的系统配置计算的(即由Sn和Cu覆盖的准直器狭缝的数量确定)。选择了一个实用的系统配置和考虑了SDNR,电子管输出和MGD之间权衡的d Sn-Cu滤波器对。结果:w(t)取决于所用的Sn-Cu过滤器组合以及乳房的厚度;为了用50%的腺乳腺组织最佳地消除0%,发现所有乳房厚度和研究的Sn-Cu过滤器对的w(t)值在0.46至0.72之间。消除所有可能的乳腺组织腺体所需的最佳w(t)值,对于20毫米厚的乳房和80毫米乳房的变化小于1%。由锡覆盖的一个准直器狭缝与铜覆盖的两个准直器狭缝交替的系统配置可提供最接近峰值的SDNR / MGD均方根。一个合理的折衷方案是使用0.16 mm Sn-0.23 mm Cu过滤器对,在最大管电流下,对于20-80 mm厚的乳房,SDNR值在1.64和0.61之间,MGD在0.70和0.53 mGy之间。结论:开发和优化了一种用于光子计数DBT成像系统的DE采集技术。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号