Use of 3D printing technology for custom bolus fabrication in the management of palmar or plantar fibromatosis with radiotherapy: A retrospective case series

IF 1.3 Q3 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING Journal of Medical Imaging and Radiation Sciences Pub Date : 2024-09-05 DOI:10.1016/j.jmir.2024.101747
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Abstract

Purpose

Palmar or plantar fibromatosis is a benign fibroproliferative disorder affecting the fascia of the hands or feet. Management involves surgery, typically reserved for cases where progression limits function. Retrospective series demonstrate that radiation therapy (RT) can stabilize the disease course in many patients and improve symptoms in some cases. RT techniques vary between the use of electrons and superficial or orthovoltage photons and often require lead cutouts or custom boluses. We present a new approach demonstrating the implementation and effectiveness of three-dimensional (3D)-printed bolus material in patients receiving RT for fibromatosis.

Materials and methods

A total of 3 patients, one with plantar and two with palmar fibromatosis, were treated with radiation using 3D-printed boluses over the past year. Bolus's design was based on computed tomography (CT) imaging data. Palmar patients were treated with a single en-face electron field, with a two-part accessory as a bolus and an immobilization device encasing the hand. The plantar case required 6MV photons delivered with a Volumetric Modulated Arc Therapy (VMAT) technique to cover the deeper target volume adequately. Dose and fractionation were based on guidelines from the Royal College of Radiologists in the United Kingdom. CT was used to assess printed shape and density accuracy.

Results

The mean deviations in shape between the printed bolus pieces and their designs were all less than 0.4 mm. The differences in mean Hounsefield units (HU) between the printed boluses and their expected values were between 7 and 44 HU. No significant issues were encountered when applying the bolus to patients. The thermoluminescent dosimeters (TLD) used demonstrated dose accuracy to within TLD precision (5 %).

Conclusions

3D printing bolus technology represents a novel approach to treating fibromatosis with radiation. It offers superior dosimetry through the reduction of air gaps and by permitting custom bolus thickness. Also, it simplifies clinical set-up by acting as an immobilization device and a visual aid for daily field placement.

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在放疗治疗掌跖纤维瘤中使用 3D 打印技术定制栓剂:回顾性病例系列。
目的:掌跖纤维瘤病是一种影响手部或足部筋膜的良性纤维增生性疾病。治疗方法包括手术,通常用于病情发展限制功能的病例。回顾性系列研究表明,放射治疗(RT)可以稳定许多患者的病程,并改善某些病例的症状。放射治疗技术因使用电子、表层或正电压光子而异,通常需要剪切导联或定制栓剂。我们介绍了一种新方法,展示了三维(3D)打印栓剂材料在接受纤维瘤病 RT 治疗的患者中的应用和有效性:在过去一年中,共有 3 名患者(1 名足底纤维瘤患者和 2 名掌底纤维瘤患者)接受了三维打印栓剂放射治疗。注射器的设计基于计算机断层扫描(CT)成像数据。掌部患者使用单个面阵电子场进行治疗,该电子场由两部分组成,分别是栓剂和包裹手部的固定装置。跖部病例需要使用体积调制弧治疗(VMAT)技术发射6MV光子,以充分覆盖较深的靶区。剂量和分次是根据英国皇家放射学院的指导原则确定的。CT用于评估打印形状和密度的准确性:结果:打印出的栓剂碎片与其设计之间的平均形状偏差均小于 0.4 毫米。打印出的栓剂与其预期值之间的平均 Hounsefield 单位 (HU) 差异在 7 到 44 HU 之间。给患者使用栓剂时没有遇到重大问题。使用的热释光剂量计(TLD)显示剂量精确度在 TLD 精确度(5%)范围内:三维打印栓剂技术是放射治疗纤维瘤病的一种新方法。结论:三维打印栓剂技术是用放射治疗纤维瘤病的新方法,它通过减少气隙和允许定制栓剂厚度来提供出色的剂量测定。此外,它还可以作为固定装置和日常野放置的视觉辅助工具,从而简化临床设置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Medical Imaging and Radiation Sciences
Journal of Medical Imaging and Radiation Sciences RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING-
CiteScore
2.30
自引率
11.10%
发文量
231
审稿时长
53 days
期刊介绍: Journal of Medical Imaging and Radiation Sciences is the official peer-reviewed journal of the Canadian Association of Medical Radiation Technologists. This journal is published four times a year and is circulated to approximately 11,000 medical radiation technologists, libraries and radiology departments throughout Canada, the United States and overseas. The Journal publishes articles on recent research, new technology and techniques, professional practices, technologists viewpoints as well as relevant book reviews.
期刊最新文献
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