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首页> 外文期刊>Medical Physics >The DOSIMAP, a high spatial resolution tissue equivalent 2D dosimeter for LINAC QA and IMRT verification.
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The DOSIMAP, a high spatial resolution tissue equivalent 2D dosimeter for LINAC QA and IMRT verification.

机译:DOSIMAP是用于LINAC QA和IMRT验证的高空间分辨率组织等效2D剂量计。

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摘要

The continual need for more accurate and effective techniques in radiation therapy makes it necessary to devise new control means combining high spatial resolution as well as high dose accuracy. Intensity modulated radio therapy (IMRT) allows highly conformed fields with high spatial gradient and therefore requires a precise monitoring of all the multileaf positions. In response to this need, the authors have developed a new 2D tissue equivalent dosimeter with high spatial resolution. A plastic scintillator sheet is sandwiched between two polystyrene blocks and the emitted light is captured by a high resolution camera. A newly developed procedure described herein allows efficient discrimination of the scintillation from the parasitic Cerenkov radiation. This processing is applied on the cumulated image from a sequence of images taken during an irradiation field at a rate of 10 images/s. It provides a high resolution mapping of the cumulated dose in quasireal time. The dosimeter is tissue equivalent (ICRU-44) and works both for electrons and photons without complex parameter adjustment since phantom and detector materials are identical. Instrument calibration is simple and independent of the irradiation conditions (energy, fluence, quality, ...). In this article, the authors present the principle of the dosimeter and its calibration procedure. They compare the results obtained for photons and electron beams with ionization chamber measurements in polystyrene. Technical specifications such as accuracy and repeatability are precisely evaluated and discussed. Finally, they present different IMRT field measurements and compare DOSIMAP measurements to TPS simulations and dosimetric film profiles. The results confirm the excellent spatial resolution of the instrument and its capacity to inspect the leaf positions for each segment of a given field.
机译:放射治疗中对更准确和有效技术的不断需求使得有必要设计一种结合了高空间分辨率和高剂量精度的新控制手段。强度调制放射疗法(IMRT)允许具有高空间梯度的高度一致的场,因此需要对所有多叶位置进行精确监控。为了满足这一需求,作者开发了一种具有高空间分辨率的新型2D组织等效剂量计。将塑料闪烁体片夹在两个聚苯乙烯块之间,并通过高分辨率相机捕获发出的光。本文所述的新开发的程序允许从寄生切伦科夫辐射有效地识别闪烁。从辐照场期间以10幅图像/秒的速率对一系列图像进行累积图像处理。它提供了准实时累积剂量的高分辨率映射。剂量计等效于组织(ICRU-44),并且由于幻像和检测器材料相同,因此无需复杂的参数调整即可用于电子和光子。仪器校准很简单,并且与辐照条件(能量,通量,质量等)无关。在本文中,作者介绍了剂量计的原理及其校准程序。他们将获得的光子和电子束结果与聚苯乙烯中的电离室测量结果进行了比较。准确评估和讨论了诸如准确性和可重复性之类的技术规范。最后,他们提出了不同的IMRT现场测量结果,并将DOSIMAP测量结果与TPS模拟和剂量膜轮廓进行了比较。结果证实了该仪器出色的空间分辨率及其检查给定田地每个部分叶片位置的能力。

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