...
首页> 外文期刊>Journal of applied clinical medical physics / >Low‐cost flexible thin‐film detector for medical dosimetry applications
【24h】

Low‐cost flexible thin‐film detector for medical dosimetry applications

机译:用于医疗剂量仪应用的低成本柔性薄膜探测器

获取原文
   

获取外文期刊封面封底 >>

       

摘要

The purpose of this study is to characterize dosimetric properties of thin film photovoltaic sensors as a platform for development of prototype dose verification equipment in radiotherapy. Towards this goal, flexible thin-film sensors of dose with embedded data acquisition electronics and wireless data transmission are prototyped and tested in kV and MV photon beams. Fundamental dosimetric properties are determined in view of a specific application to dose verification in multiple planes or curved surfaces inside a phantom. Uniqueness of the new thin-film sensors consists in their mechanical properties, low-power operation, and low-cost. They are thinner and more flexible than dosimetric films. In principle, each thin-film sensor can be fabricated in any size (mm2 – cm2 areas) and shape. Individual sensors can be put together in an array of sensors spreading over large areas and yet being light. Photovoltaic mode of charge collection (of electrons and holes) does not require external electric field applied to the sensor, and this implies simplicity of data acquisition electronics and low power operation. The prototype device use for testing consists of several thin film dose sensors, each of about 1.5 cm × 5 cm area, connected to simple readout electronics. Sensitivity of the sensors is determined per unit area and compared to EPID sensitivity, as well as other standard photodiodes. Each sensor independently measures dose and is based on commercially available flexible thin-film aSi photodiodes. Readout electronics consists of an ultra low-power microcontroller, radio frequency transmitter, and a low-noise amplification circuit implemented on a flexible printed circuit board. Detector output is digitized and transmitted wirelessly to an external host computer where it is integrated and processed. A megavoltage medical linear accelerator (Varian Tx) equipped with kilovoltage online imaging system and a Cobalt source are use to irradiate different thin-film detector sensors in a Solid Water phantom under various irradiation conditions. Different factors are considered in characterization of the device attributes: energies (80 kVp, 130 kVp, 6 MV, 15 MV), dose rates (different ms × mA, 100–600 MU/min), total doses (0.1 cGy-500 cGy), depths (0.5 cm–20 cm), irradiation angles with respect to the detector surface (0°-180°), and IMRT tests (closed MLC, sweeping gap). The detector response to MV radiation is both linear with total dose (~1-400 cGy) and independent of dose rate (100-600 Mu/min). The sensitivity per unit area of thin-film sensors is lower than for aSi flat-panel detectors, but sufficient to acquire stable and accurate signals during irradiations. The proposed thin-film photodiode system has properties which make it promising for clinical dosimetry. Due to the mechanical flexibility of each sensor and readout electronics, low-cost, and wireless data acquisition, it could be considered for quality assurance (e.g., IMRT, mechanical linac QA), as well as real-time dose monitoring in challenging setup configurations, including large area and 3D detection (multiple planes or curved surfaces).PACS number: 87.56.Fc
机译:本研究的目的是将薄膜光伏传感器的剂量性能表征为放射疗法中原型剂量验证设备的平台。朝向该目标,具有嵌入式数据采集电子和无线数据传输的柔性薄膜传感器是在KV和MV光子束中进行原型的和测试。考虑到特定应用以在幻影内的多个平面或弯曲表面中验证来确定基本剂量性质。新型薄膜传感器的唯一性包括其机械性能,低功耗操作和低成本。它们比剂量薄膜更薄,更柔韧。原则上,每个薄膜传感器可以以任何尺寸(mm 2 - cm 2 区域)制造。各个传感器可以放在一系列传感器中,传感器蔓延到大区域,但却是光线。光伏电荷集合(电子和孔)不需要施加到传感器的外部电场,这意味着数据采集电子设备的简单性和低功率操作。用于测试的原型设备使用包括几种薄膜剂量传感器,每个薄膜剂量传感器约为1.5cm×5cm区域,连接到简单的读出电子设备。每单位面积确定传感器的灵敏度,并与EPID灵敏度以及其他标准光电二极管相比。每个传感器独立地测量剂量,基于市售的柔性薄膜ASI光电二极管。读数电子器件包括超低功耗微控制器,射频发射器和在柔性印刷电路板上实现的低噪声放大电路。探测器输出数字化并无线传输到集成和处理的外部主机。配备千伏电压在线成像系统和钴源的MegaVoLTAGE医用线性加速器(Varian TX)用于在各种辐照条件下在固体水体模具中照射不同的薄膜探测器传感器。在设备属性的表征中考虑了不同的因素:能量(80 kVp,130 kVp,6mV,15 mV),剂量率(不同MS×MA,100-600 mu / min),总剂量(0.1 CGY-500 CGY ),深度(0.5cm-20cm),相对于探测器表面(0°-180°)的照射角度(0°-180°),和IMRT测试(闭合MLC,扫描间隙)。对MV辐射的检测器响应是线性的,总剂量(〜1-400cgy)和无剂量率(100-600μm/ min)。薄膜传感器的每单位面积的灵敏度低于ASI平板探测器,但足以在照射期间获得稳定和准确的信号。所提出的薄膜光电二极管系统具有使其对临床剂量测定有前途的性质。由于每个传感器和读出电子设备的机械灵活性,低成本和无线数据采集,可以考虑用于质量保证(例如,IMRT,机械LINAC QA),以及在具有挑战性的设置配置中的实时剂量监测,包括大面积和3D检测(多个平面或曲面).pacs编号:87.56.fc

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号