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新型直立 CT 扫描仪等剂量曲线的计算方法。

Calculation method for novel upright CT scanner isodose curves.

机构信息

Leo Cancer Care, Ltd., Middleton, Wisconsin, USA.

Department of Medical Physics, University of Wisconsin - Madison, Madison, Wisconsin, USA.

出版信息

J Appl Clin Med Phys. 2024 Jul;25(7):e14377. doi: 10.1002/acm2.14377. Epub 2024 May 2.

Abstract

PURPOSE

A computational method based on Monte-Carlo calculations is presented and used to calculate isodose curves for a new upright and tilting CT scanner useful for radiation protection purposes.

METHODS

The TOPAS code platform with imported CAD files for key components was used to construct a calculation space for the scanner. A sphere of water acts as the patient would by creating scatter out of the bore. Maximum intensity dose maps are calculated for various possible tilt angles to make sure radiation protection for site planning uses the maximum possible dose everywhere.

RESULTS

The resulting maximum intensity isodose lines are more rounded than ones for just a single tilt angle and so closer to isotropic. These maximum intensity curves are closer to the isotropic assumption used in CTDI or DLP based methods of site planning and radiation protection. The isodose lines are similar to those of a standard CT scanner, just tilted upwards. There is more metal above the beam that lessens the dose above versus below isocenter.

CONCLUSION

Aside from the orientation, this upright scanner is very similar to a typical CT scanner, and nothing different for shielding needs to be done for this new upright tilting CT scanner, because an isotropic scatter source is often assumed for any CT scanner.

摘要

目的

提出并使用一种基于蒙特卡罗计算的计算方法,为一种新的直立和倾斜 CT 扫描仪计算等剂量曲线,该扫描仪可用于辐射防护目的。

方法

使用 TOPAS 代码平台和导入的关键组件 CAD 文件,为扫描仪构建计算空间。一个水球充当患者,通过在孔中产生散射来模拟。为各种可能的倾斜角度计算最大强度剂量图,以确保在进行场地规划时,最大可能的剂量可用于所有部位的辐射防护。

结果

所得最大强度等剂量线比仅单个倾斜角度的更圆,因此更接近各向同性。这些最大强度曲线更接近基于 CTDI 或 DLP 的场地规划和辐射防护方法中使用的各向同性假设。等剂量线与标准 CT 扫描仪的相似,只是向上倾斜。光束上方有更多的金属,因此在等中心上方和下方的剂量会减少。

结论

除了方向外,这种直立式扫描仪与典型的 CT 扫描仪非常相似,因此不需要为这种新的直立倾斜 CT 扫描仪进行屏蔽,因为通常假设任何 CT 扫描仪的散射源都是各向同性的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e97f/11244660/7109ccb53722/ACM2-25-e14377-g004.jpg

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