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小动物放射治疗中呼吸门控的实施与评估。

Implementation and evaluation of respiratory gating in small animal radiotherapy.

机构信息

Grand Accélérateur National d'Ions Lourds (GANIL), CEA/DRF-CNRS/IN2P3, Boulevard Henri Becquerel, 14076 Caen, France. Advanced Resource Centre for Hadrontherapy in Europe (ARCHADE) Program, Caen, France.

出版信息

Phys Med Biol. 2018 Oct 30;63(21):215024. doi: 10.1088/1361-6560/aae760.

Abstract

Major advance was done in preclinical radiotherapy thanks to the development of image guided micro-irradiator. Nevertheless, some applications still can benefit of improvements, such as the irradiation of mobile tumors. This preclinical radiotherapy case presents increased difficulties compared to clinical practice because of the waveform of small animals breathing cycle, its frequency and amplitude. To answer this issue, we developed a specific beam shutter and implemented respiratory gating on the X-RAD 225Cx preclinical irradiator. In the first step of this study, the shutter was accurately characterized. Opening and closing speed of 1.28 and 0.33 mm ms were respectively measured, and a transmission of 0.7% of the beam was measured with the shutter fully closed. Beam-on times were also determined for various gating parameters and highlighted a difference of 57 ms between the beam delivery duration and the gate width. This discrepancy was compensated during the respiratory monitoring adjustment. In a second step, a respiratory protocol was evaluated with two vertical beams of 2.5 and 5 mm diameters, for motion amplitudes ranging from 0.5 to 4 mm. This evaluation demonstrated the effectiveness of our set up to perform motion compensation for amplitude as small as 0.5 mm despite a dose gradient of 1.47 cGy mm observed with the 5 mm irradiation field, due to the shutter opening and closing durations. We also investigated the efficiency of a scintillating fiber dosimeter, adapted to small beams and providing real-time dose rate measurements. This detector showed very good performances to detect motion in small irradiation fields and would be very suitable to monitor the number of delivered gates until the planned delivered dose is achieved. This study presented a new respiratory gating set up and showed that very efficient motion compensation could be achieved in small animal radiotherapy.

摘要

得益于图像引导微辐照器的发展,临床前放射治疗取得了重大进展。然而,一些应用仍然可以受益于改进,例如移动肿瘤的照射。与临床实践相比,这种临床前放射治疗案例增加了困难,因为小动物呼吸周期的波形、频率和幅度。为了解决这个问题,我们开发了一种特殊的光束快门,并在 X-RAD 225Cx 临床前辐照器上实现了呼吸门控。在这项研究的第一步中,快门得到了准确的描述。测量到的打开和关闭速度分别为 1.28 和 0.33mmms,当快门完全关闭时,测量到光束的传输率为 0.7%。还确定了各种门控参数的光束开启时间,并突出显示了束流输送持续时间和门宽之间的差异为 57ms。在呼吸监测调整期间,补偿了这种差异。在第二步中,使用直径为 2.5 和 5mm 的两个垂直光束,评估了一个呼吸协议,运动幅度范围为 0.5 至 4mm。尽管在 5mm 照射场中观察到 1.47cGymm 的剂量梯度,但由于快门的开启和关闭持续时间,该评估证明了我们的设置能够有效地进行运动补偿,补偿幅度小至 0.5mm。我们还研究了适用于小光束并提供实时剂量率测量的闪烁光纤剂量计的效率。该探测器在检测小照射场中的运动方面表现出非常好的性能,非常适合监测达到计划剂量所需要的门数。这项研究提出了一种新的呼吸门控设置,并表明在小动物放射治疗中可以实现非常有效的运动补偿。

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