Department of Dentistry, Unichristus, Fortaleza, Ceará, Brazil.
Hospital da Liga Mossoroense de Estudos e Combate ao Câncer, Mossoró, Rio Grande do Norte, Brazil.
Int J Radiat Biol. 2023;99(5):875-878. doi: 10.1080/09553002.2023.2146229. Epub 2022 Nov 14.
Immobilization protocols for head and neck radiotherapy (HNR) are needed to reduce radiation dispersion in non-tumoral tissues and to reduce damage to noble structures; however, involuntary mandibular movements require additional adaptations of thermoplastic masks.
Our objective was to describe an easy and low-cost disposition to help thermoplastic masks immobilize the mandible during HNR.
We created Styrofoam models to stabilize the mandible which was used to make adaptation to the thermoplastic masks. The Styrofoam model was inserted into alginate to construct a mold and a self-curing acrylic resin was added into the mold. After the acrylic resin hardened, the dispositive mandibular immobilizer was removed from the alginate mold and adjusted with Maxicut and Minicut or other drills and sandpaper. The alginate mold can be used on the same day to create backup devices.
Our device was made in a simple way, has a low cost, and helps the thermoplastic masks to immobilize the mandible, leading to a more precise individualization of head and neck immobilization that can reduce unanticipated radiation scatter and improve radiation distribution.
目的:本研究旨在介绍一种简单且经济的方法,以帮助热塑面具在头颈部放疗(HNR)中固定下颌。
材料与方法:我们制作了稳定下颌的泡沫聚苯乙烯模型,用于适配热塑面具。将泡沫聚苯乙烯模型插入藻酸盐中以构建模具,然后加入自固化丙烯酸树脂。丙烯酸树脂固化后,从藻酸盐模具中取出下颌固定器,并使用 Maxicut 和 Minicut 或其他钻头和砂纸进行调整。当天可以使用藻酸盐模具来制作备用设备。
结果:我们的设备制作简单,成本低廉,可帮助热塑面具固定下颌,对头颈部固定进行更精确的个体化,减少意外的辐射散射,并改善辐射分布。