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Perturbation effects of the carbon fiber‐PEEK screws on radiotherapy dose distribution

机译:碳纤维-PEEK螺钉对放疗剂量分布的干扰作用

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摘要

Radiation therapy, in conjunction with surgical implant fixation, is a common combined treatment in cases of bone metastases. However, metal implants generally used in orthopedic implants perturb radiation dose distributions. Carbon‐Fiber Reinforced Polyetheretherketone (CFR‐PEEK) material has been recently introduced for production of intramedullary nails and plates. The purpose of this work was to investigate the perturbation effects of the new CFR‐PEEK screws on radiotherapy dose distributions and to evaluate these effects in comparison with traditional titanium screws. The investigation was performed by means of Monte Carlo (MC) simulations for a 6 MV photon beam. The project consisted of two main stages. First, a comparison of measured and MC calculated doses was performed to verify the validity of the MC simulation results for different materials. For this purpose, stainless steel, titanium, and CFR‐PEEK plates of various thicknesses were used for attenuation and backscatter measurements in a solid water phantom. For the same setup, MC dose calculations were performed. Next, MC dose calculations for titanium, CFR‐PEEK screws, and CFR‐PEEK screws with ultrathin titanium coating were performed. For the plates, the results of our MC calculations for all materials were found to be in good agreement with the measurements. This indicates that the MC model can be used for calculation of dose perturbation effects caused by the screws. For the CFR‐PEEK screws, the maximum dose perturbation was less than 5%, compared to more than 30% perturbation for the titanium screws. Ultrathin titanium coating had a negligible effect on the dose distribution. CFR‐PEEK implants have good prospects for use in radiotherapy because of minimal dose alteration and the potential for more accurate treatment planning. This could favorably influence treatment efficiency and decrease possible over‐ and underdose of adjacent tissues. The use of such implants has potential clinical advantages in the treatment of bone metastases.
机译:在骨转移的情况下,放射治疗与外科植入物固定结合是一种常见的联合治疗。但是,通常在整形外科植入物中使用的金属植入物会扰乱辐射剂量分布。碳纤维增强聚醚醚酮(CFR-PEEK)材料最近被引入生产髓内钉和板。这项工作的目的是研究新型CFR-PEEK螺钉对放射治疗剂量分布的干扰作用,并与传统的钛螺钉相比,评估这些作用。通过蒙特卡罗(MC)模拟对6 MV光子束进行了研究。该项目包括两个主要阶段。首先,对测量的剂量和MC计算的剂量进行比较,以验证MC模拟结果对于不同材料的有效性。为此,在固体水体模中使用各种厚度的不锈钢,钛和CFR-PEEK板进行衰减和反向散射测量。对于相同的设置,执行MC剂量计算。接下来,对钛,CFR-PEEK螺钉和超薄钛涂层的CFR-PEEK螺钉进行MC剂量计算。对于平板,我们对所有材料的MC计算结果与测量值非常吻合。这表明,MC模型可用于计算螺钉引起的剂量微扰效应。对于CFR-PEEK螺钉,最大剂量扰动小于5%,而钛螺钉的扰动大于30%。超薄钛涂层对剂量分布的影响可忽略不计。 CFR‐PEEK植入物因剂量变化最小且有可能制定更准确的治疗方案而在放射治疗中具有良好的应用前景。这可以有利地影响治疗效率并减少相邻组织的过量和不足剂量。此类植入物的使用在治疗骨转移方面具有潜在的临床优势。

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