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计划稳健性评估在比较质子和光子计划中的作用——对头颈部脊索瘤的调强质子治疗(IMPT)和调强放疗(IMRT)计划的应用

The Role of Plan Robustness Evaluation in Comparing Protons and Photons Plans - An Application on IMPT and IMRT Plans in Skull Base Chordomas.

作者信息

Noufal Manthala Padannayil, Widesott Lamberto, Sharma Shamurailatpam Dayananda, Righetto Roberto, Cianchetti Marco, Schwarz Marco

机构信息

Department of Medical Physics, Apollo Proton Cancer Centre, Chennai, Tamil Nadu, India.

Department of Proton Therapy, Azienda Provinciale Per I Servizi Sanitari, Trento, Italy.

出版信息

J Med Phys. 2020 Oct-Dec;45(4):206-214. doi: 10.4103/jmp.JMP_45_20. Epub 2021 Feb 2.

Abstract

PURPOSE

To analyze robustness of treatment plans optimized using different approaches in intensity modulated proton therapy (IMPT) and investigate the necessity of robust optimization and evaluation in intensity modulated radiotherapy (IMRT) plans for skull base chordomas.

MATERIALS AND METHODS

Two photon plans, standard IMRT and robustly optimized IMRT (RB-IMRT), and two IMPT plans, robustly optimized multi field optimization (MFO) and hybrid-MFO (HB-MFO), were created in RayStation TPS for five patients previously treated using single field uniform optimization (SFO). Both set-up and range uncertainties were incorporated during robust optimization of IMPT plans whereas only set-up uncertainty was used in RB-IMRT. The dosimetric outcomes from the five planning techniques were compared for every patient using standard dose volume indices and integral dose (ID) estimated for target and organs at risk (OARs). Robustness of each treatment plan was assessed by introducing set-up uncertainties of ±3 mm along the three translational axes and, only in protons, an additional range uncertainty of ±3.5%.

RESULTS

All the five nominal plans provided comparable and clinically acceptable target coverage. In comparison to nominal plans, worst case decrease in D of clinical target volume-high risk (CTV-HR) were 11.1%, 13.5%, and 13.6% for SFO, MFO, and HB-MFO plans respectively. The corresponding values were 13.7% for standard IMRT which improved to 11.5% for RB-IMRT. The worst case increased in high dose (D) to CTV-HR was highest in IMRT (2.1%) and lowest in SFO (0.7%) plans. Moreover, IMRT showed worst case increases in D for all neurological OARs and were lowest for SFO plans. The worst case D for brainstem, chiasm, spinal cord, optic nerves, and temporal lobes were increased by 29%, 41%, 30%, 41% and 14% for IMRT and 18%, 21%, 21%, 24%, and 7% for SFO plans, respectively. In comparison to IMRT, RB-IMRT improved D of all neurological OARs ranging from 5% to 14% in worst case scenarios.

CONCLUSION

Based on the five cases presented in the current study, all proton planning techniques (SFO, MFO and HB-MFO) were robust both for target coverage and OARs sparing. Standard IMRT plans were less robust than proton plans in regards to high doses to neurological OARs. However, robust optimization applied to IMRT resulted in improved robustness in both target coverage and high doses to OARs. Robustness evaluation may be considered as a part of plan evaluation procedure even in IMRT.

摘要

目的

分析在调强质子治疗(IMPT)中使用不同方法优化的治疗计划的稳健性,并研究颅底脊索瘤调强放疗(IMRT)计划中稳健优化和评估的必要性。

材料与方法

在RayStation治疗计划系统中,为5例先前采用单野均匀优化(SFO)治疗的患者创建了两个光子计划,即标准IMRT和稳健优化IMRT(RB - IMRT),以及两个IMPT计划,即稳健优化多野优化(MFO)和混合MFO(HB - MFO)。在IMPT计划的稳健优化过程中纳入了摆位和射程不确定性,而在RB - IMRT中仅使用了摆位不确定性。使用标准剂量体积指数和为靶区及危及器官(OARs)估计的积分剂量(ID),对每位患者的五种计划技术的剂量学结果进行比较。通过沿三个平移轴引入±3 mm的摆位不确定性来评估每个治疗计划的稳健性,并且仅在质子治疗中,额外引入±3.5%的射程不确定性。

结果

所有五个标称计划都提供了相当且临床可接受的靶区覆盖。与标称计划相比,临床靶区高风险(CTV - HR)的D值在最差情况下,SFO、MFO和HB - MFO计划分别降低了11.1%、13.5%和13.6%。标准IMRT的相应值为13.7%,而RB - IMRT提高到了11.5%。CTV - HR高剂量(D)在最差情况下增加最多的是IMRT(2.1%),最低的是SFO(0.7%)计划。此外,IMRT显示所有神经OARs的D值在最差情况下增加,而SFO计划最低。IMRT和SFO计划中,脑干、视交叉、脊髓、视神经和颞叶的最差情况D值分别增加了29%、41%、30%、41%和14%以及18%、21%、21%、24%和7%。与IMRT相比,在最差情况下,RB - IMRT使所有神经OARs的D值提高了5%至14%。

结论

基于本研究中呈现的5个病例,所有质子计划技术(SFO、MFO和HB - MFO)在靶区覆盖和保护OARs方面都具有稳健性。标准IMRT计划在对神经OARs的高剂量方面不如质子计划稳健。然而,应用于IMRT的稳健优化在靶区覆盖和对OARs的高剂量方面都提高了稳健性。即使在IMRT中,稳健性评估也可被视为计划评估程序的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4ca/8074721/b5c027ad3626/JMP-45-206-g003.jpg

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