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A compensating system of respiratory motion for tumor tracking: Design and verification.

机译:用于肿瘤追踪的呼吸运动补偿系统:设计和验证。

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Using the reverse motion of the treatment couch, this study offset the organ displacement generated by respiratory motion to solve the current clinical problem of increasing field sizes and safety margin expansions. This study used the self-designed simulated respiratory system (SRS) coupled with radiochromic EBT film to verify the self-developed respiratory compensation system. Pressure signals were generated from SRS to simulate abdomen movements during respiratory motion. The respiratory compensation system takes the phase of the pressure signals as the respiratory motion phase and adjusts the pressure signal gain to make the compensation signal amplitude close to the displacement of the target region. A linear accelerator is used to irradiate a 300 cGy dose on the EBT film. The experimental results suggested that the average dose percentage in the target region for the sine-wave amplitudes of 5, 10 and 15 mm with compensation improved by 6.9 ~ 20.3% over the cases without compensation. The 80% isodose area with compensation improved by 22.8 ~ 77.2% over the cases without compensation. The average dose percentage in the target region with compensation for respiratory motion distances of 5, 10 and 15 mm improved by 10.3 ~ 18.7%. The 80% isodose area improved by 22.4 ~ 55.1% after compensation. The average dose percentage of the compensated target region indicates that the proposed respiratory compensation system could improve the issue of the inability to constantly irradiate the target region caused by respiratory motion. [ABSTRACT FROM AUTHOR]
机译:利用治疗床的反向运动,本研究抵消了呼吸运动产生的器官移位,以解决当前临床领域增大,安全范围扩大的问题。这项研究使用自行设计的模拟呼吸系统(SRS)结合放射致变色EBT胶片来验证自行开发的呼吸补偿系统。从SRS生成压力信号以模拟呼吸运动期间的腹部运动。呼吸补偿系统将压力信号的相位作为呼吸运动相位,并调整压力信号增益以使补偿信号幅度接近目标区域的位移。线性加速器用于在EBT膜上辐照300 cGy剂量。实验结果表明,有补偿的正弦波振幅分别为5、10和15 mm时,目标区域的平均剂量百分比比无补偿的情况提高了6.9〜20.3%。与没有补偿的情况相比,有补偿的80%的等剂量面积增加了22.8〜77.2%。补偿呼吸距离为5、10和15 mm的目标区域的平均剂量百分比提高了10.3〜18.7%。补偿后80%的等剂量面积增加了22.4〜55.1%。补偿后的目标区域的平均剂量百分比表明,所提出的呼吸补偿系统可以改善由于呼吸运动导致无法持续照射目标区域的问题。 [作者的摘要]

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