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机器人放射外科系统中射束形状的长期稳定性分析

Long-term stability analysis of beam shape in a robotic radiosurgery system.

作者信息

Hinoto Ryoichi, Kashiyama Shiho, Eriguchi Takahisa, Tsukamoto Nobuhiro, Sakae Takeji

机构信息

Department of Radiation Oncology, Saitama Red Cross Hospital, Saitama, Japan.

Department of Radiation Oncology, Saitama Municipal Hospital, Saitama, Japan.

出版信息

J Appl Clin Med Phys. 2025 Jul;26(7):e70123. doi: 10.1002/acm2.70123. Epub 2025 Jun 23.

Abstract

PURPOSE

This study aimed to investigate the long-term stability of CyberKnife beam profile parameters and assess their compliance with existing quality assurance (QA) guidelines. We evaluated beam profiles in both standard and diagonal planes over 3.5 years post-installation to detect potential issues and ensure consistent beam quality. The findings will contribute to validating and refining current QA practices for CyberKnife systems.

METHODS

Beam profile measurements were performed monthly using an Octavius 1000SRS detector array. The profiles were evaluated in terms of the beam shape constancy within 2%, and the penumbra, symmetry, and flatness were analyzed using statistical process control methods. Temporal changes in the dose profiles were visualized using dose difference heat maps. The relationship between the beam parameters and accumulated monitor units was also investigated.

RESULTS

The 2% profile constancy check accurately detected magnetron deterioration 2 months before failure, confirming its high sensitivity for beam stability monitoring. While symmetry and flatness remained within 0.7% throughout over 100 × 10 monitor units of operation, penumbra exhibited greater responsiveness to magnetron-induced changes but did not consistently flag all orientations. Additionally, statistical analyses and heat maps revealed gradual profile shifts independent of acute component failures, highlighting the importance of multifaceted QA strategies.

CONCLUSIONS

These findings reinforce the effectiveness of the 2% profile constancy check for early detection of magnetron failure and support its adoption in current CyberKnife guidelines. At the same time, symmetry, flatness, and penumbra parameters remain valuable for characterizing gradual profile variations. Collectively, this study underscores the need for comprehensive beam monitoring and regular maintenance to sustain optimal CyberKnife system performance.

摘要

目的

本研究旨在调查赛博刀射束轮廓参数的长期稳定性,并评估其是否符合现有质量保证(QA)指南。我们在安装后3.5年内评估了标准平面和对角平面内的射束轮廓,以检测潜在问题并确保射束质量的一致性。这些发现将有助于验证和完善当前赛博刀系统的QA实践。

方法

每月使用Octavius 1000SRS探测器阵列进行射束轮廓测量。根据2%以内的射束形状恒定性评估轮廓,并使用统计过程控制方法分析半值层、对称性和平坦度。使用剂量差异热图可视化剂量轮廓的时间变化。还研究了射束参数与累积监测单位之间的关系。

结果

2%轮廓恒定性检查在磁控管故障前2个月准确检测到其性能下降,证实了其对射束稳定性监测的高灵敏度。在超过100×10个监测单位的运行过程中,对称性和平坦度始终保持在0.7%以内,而半值层对磁控管引起的变化表现出更大的响应性,但并非在所有方向上都能持续发出警示信号。此外,统计分析和热图显示,轮廓逐渐偏移,与急性部件故障无关,突出了多方面QA策略的重要性。

结论

这些发现强化了2%轮廓恒定性检查对早期检测磁控管故障的有效性,并支持将其纳入当前赛博刀指南。同时,对称性、平坦度和半值层参数对于表征轮廓的逐渐变化仍然很有价值。总体而言,本研究强调了全面射束监测和定期维护对于维持赛博刀系统最佳性能的必要性。

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