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Evaluation of performance of portable respiratory monitoring system based on micro-electro-mechanical-system for respiratory gated radiotherapy

机译:基于微机电系统的门控放疗便携式呼吸监测系统性能评估

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In respiratory-gated radiotherapy of patients with lung or liver cancer, the patient's respiratory pattern and repeatability are important factors affecting therapy accuracy; it has been reported that these factors can be controlled if patients undergo respiration training. As such, this study evaluates the feasibility of micro-electro-mechanical-system (MEMS) in radiotherapy by investigating the effect of radiation on a miniature portable respiratory monitoring system based on the MEMS system, which is currently under development. Using a patient respiration simulation phantom, the time-acceleration graph measured by a normal sensor according to the phantom's respiratory movement before irradiation and the change in this graph with accumulated dose were compared using the baseline slope and the change in amplitude and period of the sine wave. The results showed that with a 400Gy accumulated dose in the sensor, a baseline shift occurred and both the amplitude and period changed. As a result, if the MEMS is applied in respiratory-gated radiotherapy, the sensor should be replaced after use with roughly 6.10 patients so as to ensure continued therapy accuracy, based on the characteristics of the sensor itself. In the future, a more diverse range of sensors should be similarly evaluated.
机译:在肺癌或肝癌患者的门控放疗中,患者的呼吸方式和重复性是影响治疗准确性的重要因素。据报道,如果患者接受呼吸训练,则可以控制这些因素。因此,本研究通过研究辐射对基于MEMS系统的微型便携式呼吸监测系统的影响,评估了微机电系统(MEMS)在放射治疗中的可行性,该系统目前正在开发中。使用患者的呼吸模拟体模,使用基线斜率以及正弦波幅值和周期的变化,比较正常传感器根据体模在辐照前的呼吸运动测得的时间加速度图以及该图随累积剂量的变化。波。结果表明,在传感器中累积剂量为400Gy时,会发生基线偏移,并且振幅和周期都会改变。因此,如果将MEMS用于呼吸门控放射治疗,则应在使用后将传感器替换为大约6.10名患者,以根据传感器本身的特性确保持续的治疗精度。将来,应类似地评估更多种类的传感器。

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