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Design and development of a silicon-segmented detector for 2D dose measurements in radiotherapy

机译:硅分段检测器的设计和开发,用于放射治疗中的二维剂量测量

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Modern radiotherapy treatment techniques, such as intensity Modulated Radiation Therapy (IMRT) and protontherapy, require detectors with specific features, usually not available in conventional dosimeters. IMRT dose measurements, for instance, must face non-uniform beam fluences as well as a time-varying dose rate. Two-dimensional detectors present a great interest for dosimetry in beams with steep dose gradients, but they must satisfy a number of requirements and, in particular, they must exhibit high spatial resolution. With the aim of developing a dosimetric system adequate for 2D pre-treatment dose verifications, we designed a modular dosimetric device based on a monolithic silicon-segmented module. State and results of this work in progress are described in this article. The first 441 pixels, 6.29 × 6.29 cm~2 silicon module has been produced by ion implantation on a 50 μm thick p-type epitaxial layer. This sensor has been connected to a discrete readout electronics performing current integration, and has been tested with satisfactory results. In the final configuration, nine silicon modules will be assembled together to cover an area close to 20 × 20 cm~2 with 3969 channels. In this case, the readout electronics will be based on an ASIC capable to read 64 channels by performing current-to-frequency conversion.
机译:诸如调强放射疗法(IMRT)和质子疗法之类的现代放射疗法治疗技术需要具有特定功能的检测器,通常在常规剂量计中是不可用的。例如,IMRT剂量测量必须面对不均匀的光束注量以及随时间变化的剂量率。二维检测器对剂量梯度陡峭的射线束中的剂量学表现出极大的兴趣,但它们必须满足许多要求,尤其是必须显示出高空间分辨率。为了开发适合2D预处理剂量验证的剂量学系统,我们设计了基于单片硅分段模块的模块化剂量学设备。本文介绍了这项工作的状态和结果。通过在50μm厚的p型外延层上进行离子注入,制造了第一个441像素,6.29×6.29 cm〜2的硅模块。该传感器已连接至执行电流积分的离散读出电子设备,并经过测试,结果令人满意。在最终配置中,将有9个硅模块组装在一起,以3969个通道覆盖接近20×20 cm〜2的面积。在这种情况下,读出电子设备将基于能够通过执行电流到频率转换来读取64个通道的ASIC。

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