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螺旋断层放疗作为一种强大的低剂量治疗选择,用于全皮肤照射。

A Helical tomotherapy as a robust low-dose treatment alternative for total skin irradiation.

机构信息

Department of Hematology, Oncology and Radiation Physics, Skåne University Hospital, Lund, Sweden.

Medical Radiation Physics, Department of clinical sciences, Lund University, Lund, Sweden.

出版信息

J Appl Clin Med Phys. 2019 May;20(5):44-54. doi: 10.1002/acm2.12579. Epub 2019 Apr 29.

Abstract

Mycosis fungoides is a disease with manifestation of the skin that has traditionally been treated with electron therapy. In this paper, we present a method of treating the entire skin with megavoltage photons using helical tomotherapy (HT), verified through a phantom study and clinical dosimetric data from our first two treated patients. A whole body phantom was fitted with a wetsuit as bolus, and scanned with computer tomography. We accounted for variations in daily setup using virtual bolus in the treatment plan optimization. Positioning robustness was tested by moving the phantom, and recalculating the dose at different positions. Patient treatments were verified with in vivo film dosimetry and dose reconstruction from daily imaging. Reconstruction of the actual delivered dose to the patients showed similar target dose as the robustness test of the phantom shifted 10 mm in all directions, indicating an appropriate approximation of the anticipated setup variation. In vivo film measurements agreed well with the calculated dose confirming the choice of both virtual and physical bolus parameters. Despite the complexity of the treatment, HT was shown to be a robust and feasible technique for total skin irradiation. We believe that this technique can provide a viable option for Tomotherapy centers without electron beam capability.

摘要

蕈样肉芽肿是一种以皮肤表现为特征的疾病,传统上采用电子疗法进行治疗。本文介绍了一种使用螺旋断层放疗(HT)对整个皮肤进行大剂量光子治疗的方法,通过体模研究和前两名治疗患者的临床剂量学数据进行了验证。全身体模配有用水袋作为填充物的湿式泳衣,并进行计算机断层扫描。我们在治疗计划优化中考虑了每日设置的变化,使用虚拟填充物来进行计算。通过移动体模并在不同位置重新计算剂量,测试了定位的稳健性。通过体内胶片剂量测定和日常成像的剂量重建来验证患者的治疗情况。对患者实际给予的剂量进行重建表明,与体模的稳健性测试结果相似,在所有方向上平移 10 毫米,表明对预期设置变化的近似程度恰当。体内胶片测量与计算剂量吻合良好,证实了虚拟和物理填充物参数的选择是正确的。尽管治疗复杂,但 HT 被证明是一种用于全皮肤照射的稳健且可行的技术。我们相信,对于没有电子束能力的 Tomotherapy 中心来说,这种技术是一种可行的选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82a7/6522990/933a53f8b2b7/ACM2-20-44-g001.jpg

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