【24h】

Dual-energy subtraction for contrast-enhanced digital breast tomosynthesis

机译:双重能量减影法增强造影剂的数字乳房断层合成

获取原文
获取原文并翻译 | 示例

摘要

We have developed a dual-energy subtraction technique for contrast-enhanced breast tomosynthesis. The imaging system consists of 48 photon-counting linear detectors which are precisely aligned with the focal spot of the x-ray source. The x-ray source and the digital detectors are translated across the breast in a continuous linear motion; each linear detector collects an image at a distinct angle. A pre-collimator is positioned above the breast and defines 48 fan-shaped beams, each aligned with a detector. Low- and high-energy images are acquired in a single scan; half of the detectors capture a low-energy beam and half capture a high-energy beam, as alternating fan-beams are filtered to emphasize low and high energies. Imaging was performed with a W-target at 45 and 49 kV. Phantom experiments and theoretical modeling were conducted. Iodine images were produced with weighted logarithmic subtraction. The optimal tissue cancellation factor, w_t ,was determined based on simultaneous preservation of the iodine signal and suppression of simulated anatomic background. Optimal dose allocation between low- and high-energy images was investigated. Mean glandular doses were restricted to ensure clinical relevance. Unlike other dual-energy approaches, both spectra must have the same peak energy in this system design. We have observed that w_t is mainly dependent on filter combination and varies only slightly with kV and breast thickness, thus ensuring a robust clinical implementation. Optimal performance is obtained when the dose fraction allocated to the high energy images ranges from 0.55 to 0.65. Using elemental filters, we have been able to effectively suppress the anatomic background.
机译:我们已经开发了一种双能量减法技术,用于增强对比的乳房断层合成。成像系统由48个光子计数线性检测器组成,这些检测器与X射线源的焦点精确对准。 X射线源和数字检测器以连续的线性运动在整个乳房上移动;每个线性检测器以不同的角度收集图像。预准直仪位于乳房上方,并限定48个扇形光束,每个光束与探测器对准。低能量和高能量图像通过一次扫描获得;一半的探测器捕获低能光束,一半的探测器捕获高能光束,因为对交替的扇形光束进行滤波以强调低能和高能。成像是在45和49 kV的W目标下进行的。进行了幻影实验和理论建模。用加权对数减法产生碘图像。最佳组织消除因子w_t是基于碘信号的同时保存和模拟解剖背景的抑制来确定的。研究了低能量和高能量图像之间的最佳剂量分配。限制平均腺体剂量以确保临床相关性。与其他双能量方法不同,在此系统设计中,两个光谱必须具有相同的峰值能量。我们已经观察到w_t主要取决于滤波器的组合,并且仅随kV和乳房厚度的不同而略有变化,从而确保了可靠的临床实施。当分配给高能图像的剂量分数在0.55至0.65范围内时,可获得最佳性能。使用元素过滤器,我们已经能够有效地抑制解剖背景。

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