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A carbon fiber-based radiation sensor for dosimetric measurement in radiotherapy

机译:一种基于碳纤维的辐射传感器,用于放射治疗中的剂量学测量

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摘要

A prototype sensor was designed and fabricated to explore the application of carbon fibers for absorbed dose measurements in the ionizing radiation field used for therapeutic radiology. The carbon fiber-based sensor has a 1.8 x 1.8 cm~2 sensing area. Both 6 and 15 MV X-ray beams produced by a Varian Clinac 21 EX medical linear accelerator were used to test the sensor. Radiation dosimetric measurements were performed by varying the dose rates, total dose, and field sizes to characterize various properties of the sensor. For the given dose range from 0 to 600 monitor units, the sensor displayed an excellent linear response. This sensor can be used for dosimetric measurements and real-time dose rate monitoring. Compared to existing MV X-ray measurement technologies in radiotherapy, this prototype sensor provides many advantages over commercially available dosimeters: (i) ease of operation; (ii) low noise at room temperature; (iii) light in mass; (iv) low voltage requirements; (v) potential for miniaturization; and (vi) real-time signal measurement. A higher spatial resolution can be achieved by miniaturizing the physical size of the current sensor design.
机译:设计并制造了一个原型传感器,以探索碳纤维在用于治疗放射学的电离辐射场中吸收剂量测量的应用。基于碳纤维的传感器具有 1.8 x 1.8 cm~2 的感应区域。瓦里安Clinac 21 EX医用直线加速器产生的6和15 MV X射线束均用于测试传感器。通过改变剂量率、总剂量和场大小来进行辐射剂量测量,以表征传感器的各种特性。对于 0 至 600 个监测单位的给定剂量范围,传感器显示出出色的线性响应。该传感器可用于剂量测量和实时剂量率监测。与放射治疗中现有的中压 X 射线测量技术相比,该原型传感器与市售剂量计相比具有许多优势:(i) 易于操作;(ii)室温下噪音低;(iii) 质量轻;(iv) 低电压要求;(v) 小型化的潜力;(vi)实时信号测量。通过小型化当前传感器设计的物理尺寸,可以实现更高的空间分辨率。

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