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带有机载千伏成像设备的数字断层合成技术。

Digital tomosynthesis with an on-board kilovoltage imaging device.

作者信息

Godfrey Devon J, Yin Fang-Fang, Oldham Mark, Yoo Sua, Willett Christopher

机构信息

Department of Radiation Oncology, Duke University Medical Center, Durham, NC 27710, USA.

出版信息

Int J Radiat Oncol Biol Phys. 2006 May 1;65(1):8-15. doi: 10.1016/j.ijrobp.2006.01.025.

Abstract

PURPOSE

To generate on-board digital tomosynthesis (DTS) and reference DTS images for three-dimensional image-guided radiation therapy (IGRT) as an alternative to conventional portal imaging or on-board cone-beam computed tomography (CBCT).

METHODS AND MATERIALS

Three clinical cases (prostate, head-and-neck, and liver) were selected to illustrate the capabilities of on-board DTS for IGRT. Corresponding reference DTS images were reconstructed from digitally reconstructed radiographs computed from planning CT image sets. The effect of scan angle on DTS slice thickness was examined by computing the mutual information between coincident CBCT and DTS images, as the DTS scan angle was varied from 0 degrees to 165 degrees . A breath-hold DTS acquisition strategy was implemented to remove respiratory motion artifacts.

RESULTS

Digital tomosynthesis slices appeared similar to coincident CBCT planes and yielded substantially more anatomic information than either kilovoltage or megavoltage radiographs. Breath-hold DTS acquisition improved soft-tissue visibility by suppressing respiratory motion.

CONCLUSIONS

Improved bony and soft-tissue visibility in DTS images is likely to improve target localization compared with radiographic verification techniques and might allow for daily localization of a soft-tissue target. Breath-hold DTS is a potential alternative to on-board CBCT for sites prone to respiratory motion.

摘要

目的

生成用于三维图像引导放射治疗(IGRT)的机载数字断层合成(DTS)和参考DTS图像,以替代传统的射野成像或机载锥形束计算机断层扫描(CBCT)。

方法与材料

选取三个临床病例(前列腺、头颈和肝脏)来说明机载DTS用于IGRT的能力。从根据计划CT图像集计算得到的数字重建射线照片重建相应的参考DTS图像。当DTS扫描角度从0度变化到165度时,通过计算重合的CBCT和DTS图像之间的互信息来检查扫描角度对DTS切片厚度的影响。实施屏气DTS采集策略以消除呼吸运动伪影。

结果

数字断层合成切片看起来与重合的CBCT平面相似,并且比千伏或兆伏射线照片产生的解剖信息要多得多。屏气DTS采集通过抑制呼吸运动提高了软组织的可见性。

结论

与射线照相验证技术相比,DTS图像中骨和软组织可见性的改善可能会提高靶区定位的准确性,并且可能允许对软组织靶区进行每日定位。对于容易出现呼吸运动的部位,屏气DTS是机载CBCT的一种潜在替代方法。

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