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分析治疗床和固定设备对兆伏光子射束表面剂量影响的研究。

A Study to Analyze Impact of Treatment Couch and Immobilization Devices on Surface Dose for Megavoltage Photon Beams.

机构信息

Department of Physical Sciences, School of Sciences, Arts and Media, Karunya Institute of Technology and Sciences, Coimbatore, Tamilnadu, India.

Department of Radiation Oncology, Fortis Cancer Institute, Fortis Hospital, Mohali, Punjab, India.

出版信息

Asian Pac J Cancer Prev. 2023 Dec 1;24(12):4133-4138. doi: 10.31557/APJCP.2023.24.12.4133.

Abstract

PURPOSE/OBJECTIVE: The purpose of this study is to investigate the effect of treatment couch and immobilization devices on surface dose for megavoltage photon beams.

MATERIAL/METHODS: Percentage surface dose (PSD) measurement was carried out in Elekta Synergy™ Linear accelerator using PTW Markus® Parallel plate ionization chamber of volume 0.05cm3 with water equivalent RW3 Slab phantom (PTW, Germany). The measurement depth was considered at 0.07mm. The reference PSD was measured at 0° gantry angle with 10×10cm2, 20×20cm2 and 30×30cm2 field sizes and 100cm SSD for 4MV, 6MV and 15MV photon beams. For comparison, PSD measurement was carried out at 180° gantry angle inclusion of treatment couch (TC), All in One positioning system (AIO - PS) and Vac lok Cushions (VLC).

RESULTS

Beam angle at 0°, for field sizes 10×10cm2, 20×20cm2 and 30×30cm2, the PSD was observed as 30.9%, 40.5%, 48.7% for 4MV; 23.7%, 33.8%, 42.2% for 6MV; and 17.0%, 29.6%, 38.6% for 15MV respectively. Beam angle at 180° with TC, an increase in PSD by maximum of 65.0% for 4MV, 64.9% for 6MV and 55.9% for 15MV as compared to 0° angle. The PSD increased when beam angle was 180° with TC and AIO - PS were 65.0% for 4MV, 67.4% for 6MV, and 60.9% for 15MV than 0° angle. Similarly, increased PSD for beam angle at 180° with TC and VLC were 66.8% for 4MV, 66.8% for 6MV and 61.3% for 15MV as compared to 0° angle.

CONCLUSION

For all three-photon energies, at 180° gantry angle, the PSD increased significantly in case of TC, VLC, and AIO - PS for all the field sizes as compared to gantry angle at 0°. It is necessary to consider TC, AIO - PS and VLC during dose calculation to ensure accuracy of patient treatment delivery.

摘要

目的

本研究旨在探讨治疗床和固定装置对兆伏光子束表面剂量的影响。

材料/方法:使用 PTW Markus®平行板电离室(体积 0.05cm3)和水当量 RW3 平板体模(PTW,德国),在 Elekta Synergy™直线加速器中进行了百分比表面剂量(PSD)测量。测量深度考虑为 0.07mm。在 0°机架角度下,用 10×10cm2、20×20cm2 和 30×30cm2 射野大小和 100cm SSD 对 4MV、6MV 和 15MV 光子束进行了参考 PSD 测量。为了进行比较,在包括治疗床(TC)、全一体定位系统(AIO-PS)和 Vac lok 垫(VLC)的 180°机架角度下进行了 PSD 测量。

结果

在 0°机架角度下,对于 10×10cm2、20×20cm2 和 30×30cm2 射野大小,4MV 的 PSD 分别为 30.9%、40.5%、48.7%;6MV 的 PSD 分别为 23.7%、33.8%、42.2%;15MV 的 PSD 分别为 17.0%、29.6%、38.6%。在 180°机架角度下,与 0°角度相比,TC 使 PSD 最大增加 65.0%(4MV)、64.9%(6MV)和 55.9%(15MV)。当 180°机架角度下存在 TC 和 AIO-PS 时,与 0°角度相比,PSD 分别增加 65.0%(4MV)、67.4%(6MV)和 60.9%(15MV)。同样,在 180°机架角度下,TC 和 VLC 存在时,PSD 分别增加 66.8%(4MV)、66.8%(6MV)和 61.3%(15MV)。

结论

对于所有三种光子能量,在 180°机架角度下,与 0°机架角度相比,TC、VLC 和 AIO-PS 对所有射野大小的 PSD 均显著增加。在剂量计算过程中需要考虑 TC、AIO-PS 和 VLC,以确保患者治疗的准确性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a935/10909093/21fbd5dd0b37/APJCP-24-4133-g001.jpg

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