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Novel detectors for silicon based microdosimetry, their concepts and applications

机译:基于硅的微剂量测定的新型检测器,其概念和应用

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This paper presents an overview of the development of semiconductor microdosimetry and the most current (state-of-the-art) Silicon on Insulator (SOI) detectors for microdosimetry based mainly on research and development carried out at the Centre for Medical Radiation Physics (CMRP) at the University of Wollongong with collaborators over the last 18 years. In this paper every generation of CMRP SOI microdosimeters, including their fabrication, design, and electrical and charge collection characterisation are presented. A study of SOI microdosimeters in various radiation fields has demonstrated that under appropriate geometrical scaling, the response of SOI detectors with the well-known geometry of microscopically sensitive volumes will record the energy deposition spectra representative of tissue cells of an equivalent shape. This development of SOI detectors for microdosimetry with increased complexity has improved the definition of microscopic sensitive volume (SV), which is modelling the deposition of ionising energy in a biological cell, that are led from planar to 3D SOI detectors with an array of segmented microscopic 3D SVs. The monolithic ΔE-E silicon telescope, which is an alternative to the SOI silicon microdosimeter, is presented, and as an example, applications of SOI detectors and ΔE-E monolithic telescope for microdosimetery in proton therapy field and equivalent neutron dose measurements out of field are also presented. An SOI microdosimeter "bridge" with 3D SVs can derive the relative biological effectiveness (RBE) in ~(12)C ion radiation therapy that matches the tissue equivalent proportional counter (TEPC) quite well, but with outstanding spatial resolution. The use of SOI technology in experimental microdosimetry offers simplicity (no gas system or HV supply), high spatial resolution, low cost, high count rates, and the possibility of integrating the system onto a single device with other types of detectors.
机译:本文主要基于在医学辐射物理中心(CMRP)进行的研究和开发,概述了半导体微剂量学的发展以及最新的(最先进的)绝缘体上硅(SOI)检测器用于微剂量学。 ),在过去的18年中一直与伍拉贡大学合作。本文介绍了每一代CMRP SOI微剂量计,包括其制造,设计以及电和电荷收集特性。对各种辐射场中SOI微量剂量计的研究表明,在适当的几何比例缩放下,具有众所周知的显微敏感体积的SOI检测器的响应将记录代表同等形状的组织细胞的能量沉积谱。用于微剂量学的SOI检测器的这种发展具有更高的复杂性,改善了微观敏感体积(SV)的定义,该模型正在对生物细胞中电离能的沉积进行建模,并通过一系列分段显微镜从平面到3D SOI检测器进行引导3D SV。介绍了可替代SOI硅微剂量计的整体式ΔE-E硅望远镜,并举例说明了SOI检测器和ΔE-E整体式望远镜在质子治疗领域和等效中子剂量外测量中在微剂量学中的应用。还介绍了。具有3D SV的SOI微剂量计“桥”可以在〜(12)C离子放射治疗中得出相对生物有效性(RBE),与组织等效比例计数器(TEPC)相当好,但具有出色的空间分辨率。在实验微剂量法中使用SOI技术可提供简便性(无气体系统或高压电源),高空间分辨率,低成本,高计数率,并可以将系统与其他类型的检测器集成到单个设备中。

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