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一种用于超小型C波段直线加速器波导的新概念自动频率控制器的研发。

Development of a new concept automatic frequency controller for an ultrasmall C-band linear accelerator guide.

作者信息

Kamino Yuichiro, Tsukuda Kazuhiro, Kokubo Masaki, Miura Sadao, Hirai Etsuro, Hiraoka Masahiro, Ishikawa Junzo

机构信息

Medical Systems Administration Office, Mitsubishi Heavy Industries, Ltd., 10, Oye-cho Minato-ku, Nagoya, Aichi 455-8515, Japan.

出版信息

Med Phys. 2007 Aug;34(8):3243-8. doi: 10.1118/1.2752581.

Abstract

We are developing a four-dimensional, image-guided radiotherapy system with a gimbaled x-ray head. The system has pursuing irradiation capability in addition to precise irradiation capability, owing to its agile x-ray head. The moving x-ray head requires a very small C-band accelerator guide. The heat intensity of the accelerator guide is much higher than that of conventional S-band medical linear accelerators. The resonance frequency varies over almost 1.0 MHz with a thermal time constant of about 30 s. An automatic frequency controller (AFC) is employed to compensate for this variation in resonance frequency. Furthermore, we noted that fast AFC response is important for step-and-shoot intensity modulation radiotherapy (IMRT), in which the beam is turned on and off frequently. Therefore, we invented a digital AFC, based on a new concept, to provide effective compensation for the thermal characteristics of the accelerator guide and to ensure stable and optimized x-ray treatment. An important aspect of the performance of the AFC is the capture-frequency range over which the AFC can seek, lock on to, and track the resonance frequency. The conventional, analog AFC used in S-band medical linear accelerators would have a capture-frequency range of about 0.9 MHz, if applied to our accelerator guide, and would be inappropriate. Conversely, our new AFC has a capture-frequency range of 24 MHz, which is well suited to our accelerator guide. The design concept behind this new AFC has been developed and verified. A full prototype system was constructed and tested on an existing accelerator guide at the rated x-ray output (500 cGy/min) of our radiotherapy system, with a pulse-repetition frequency of 300 Hz. The AFC acquired the resonance frequency of the accelerator guide within 0.15 s after beam-on, and provided stable tracking and adjustment of the frequency of the microwave source to the resonance frequency of the accelerator guide. With a planned improvement of the initialization of the AFC it should be able to acquire the resonance frequency within 33 ms.

摘要

我们正在研发一种带有万向节X射线管头的四维图像引导放射治疗系统。由于其灵活的X射线管头,该系统除了具备精确照射能力外,还拥有逐点照射能力。移动的X射线管头需要一个非常小的C波段加速器波导。该加速器波导的热强度远高于传统的S波段医用直线加速器。其共振频率在近1.0 MHz范围内变化,热时间常数约为30秒。采用自动频率控制器(AFC)来补偿这种共振频率变化。此外,我们注意到快速的AFC响应对于调强适形放射治疗(IMRT)很重要,在IMRT中光束频繁开启和关闭。因此,我们基于一个新概念发明了一种数字AFC,以有效补偿加速器波导的热特性,并确保稳定且优化的X射线治疗。AFC性能的一个重要方面是捕获频率范围,即AFC能够搜索、锁定并跟踪共振频率的范围。如果将S波段医用直线加速器中使用的传统模拟AFC应用于我们的加速器波导,其捕获频率范围约为0.9 MHz,这是不合适的。相反,我们的新型AFC捕获频率范围为24 MHz,非常适合我们的加速器波导。这种新型AFC背后的设计概念已经得到开发和验证。构建了一个完整的原型系统,并在我们放射治疗系统的额定X射线输出(500 cGy/分钟)、脉冲重复频率为300 Hz的现有加速器波导上进行了测试。AFC在束流开启后0.15秒内获取了加速器波导的共振频率,并对微波源的频率提供了稳定的跟踪和调整,使其与加速器波导的共振频率保持一致。随着对AFC初始化的计划改进,它应该能够在33毫秒内获取共振频率。

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