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用于解码实时位置管理™门控生成的呼吸轨迹中治疗误差的MATLAB软件程序的开发与验证

Development and Validation of a MATLAB Software Program for Decoding the Treatment Errors in Real-time Position Management™ Gating-generated Breathing Trace.

作者信息

Kumawat Naveen, Shrotriya Anil Kumar, Heigrujam Malhotra Singh, Patro Kartikeswar, Kumar Satendra, Bansal Anil Kumar, Munjal Ram Kishan, Anand Anil Kumar

机构信息

Deparment of Radiation Oncology, Max Super Speciality Hospital, New Delhi, India.

Department of Physics, SPSB Government College, Shahpura, Rajasthan, India.

出版信息

J Med Phys. 2020 Jan-Mar;45(1):16-23. doi: 10.4103/jmp.JMP_30_19. Epub 2020 Mar 13.

Abstract

INTRODUCTION

The Real-time Position Management™ (RPM) is used as a motion management tool to reduce normal tissue complication. However, no commercial software is available to quantify the "beam-on" errors in RPM-generated breathing traces. This study aimed to develop and validate an in-house-coded MATLAB program to quantify the "beam-on" errors in the breathing trace.

MATERIALS AND METHODS

A graphical user interface (GUI) was developed using MATLAB (Matrix Laboratory Ra2016) software. The GUI was validated using two phantoms (Varian-gated phantom and Brainlab ET gating phantom) with three regular motion profiles. Treatment time delay was calculated using regular sinusoidal motion profile. Ten patient's irregular breathing profiles were also analyzed using this GUI.

RESULTS

The beam-on comparison between the recorded reference trace and irradiated trace profile was done in two ways: (1) beam-on time error and (2) beam-on displacement error. These errors were ≤1.5% with no statistical difference for phase- and amplitude-based treatments. The predicated amplitude levels of reference phase-based profiles, and the actual amplitude levels of amplitude-based irradiated profiles were almost equal. The average treatment time delay was 47 ± 0.003 ms. The irregular breathing profile analysis showed that the amplitude-based gating treatment was more accurate than phase based.

CONCLUSION

The developed GUI gave the same and acceptable results for all regular profiles. These errors were due to the lag time of the linear accelerator with gating treatment. This program can be used as to quantifying the intrafraction "beam-on" errors in breathing trace with both mode of gating techniques for irregular breathing trace, and in addition, it is capable to convert phase-based gating parameters to amplitude-based gating parameters for treatment.

摘要

引言

实时位置管理™(RPM)用作运动管理工具以减少正常组织并发症。然而,尚无商业软件可用于量化RPM生成的呼吸轨迹中的“射束开启”误差。本研究旨在开发并验证一个用MATLAB内部编码的程序,以量化呼吸轨迹中的“射束开启”误差。

材料与方法

使用MATLAB(矩阵实验室Ra2016)软件开发了一个图形用户界面(GUI)。使用具有三种规则运动轮廓的两个体模(瓦里安门控体模和Brainlab ET门控体模)对GUI进行了验证。使用规则正弦运动轮廓计算治疗时间延迟。还使用此GUI分析了10名患者的不规则呼吸轮廓。

结果

记录的参考轨迹与照射轨迹轮廓之间的射束开启比较通过两种方式进行:(1)射束开启时间误差和(2)射束开启位移误差。对于基于相位和幅度的治疗,这些误差≤1.5%,无统计学差异。基于参考相位的轮廓的预测幅度水平与基于幅度的照射轮廓的实际幅度水平几乎相等。平均治疗时间延迟为47±0.003毫秒。不规则呼吸轮廓分析表明,基于幅度的门控治疗比基于相位的更准确。

结论

所开发的GUI对所有规则轮廓都给出了相同且可接受的结果。这些误差是由于直线加速器进行门控治疗时的延迟时间所致。该程序可用于量化呼吸轨迹中分次内的“射束开启”误差,适用于不规则呼吸轨迹的两种门控技术模式,此外,它还能够将基于相位的门控参数转换为基于幅度的门控参数用于治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2bd5/7185710/e47fbcdcb4f1/JMP-45-16-g001.jpg

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