超高电压光子光束中的二维单片硅二极管阵列探测器:制造技术重要吗?医学物理学家的观点。

Q3 Biochemistry, Genetics and Molecular Biology Australasian Physical & Engineering Sciences in Medicine Pub Date : 2019-06-01 Epub Date: 2019-02-21 DOI:10.1007/s13246-019-00736-7
N Stansook, G Biasi, K Utitsarn, M Petasecca, P Metcalfe, M Carolan, M L F Lerch, V L Perevertaylo, T Kron, A B Rosenfeld
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引用次数: 5

摘要

澳大利亚卧龙岗大学医学辐射物理中心提出了一种2D单片硅二极管阵列探测器(MP512、Duo、Octa)的原型系列,用于小电压光子光束的相对剂量测定。这些探测器的512个敏感体积的拓扑结构不同,最初是在大块p型衬底上制造的。最近,它们也被制造在外延p型衬底上。在文献中,它们的性能被单独描述为质量保证(QA)应用。本研究从辐射硬度、长期稳定性、剂量响应线性、每脉冲剂量和角度依赖性等方面直接评价和比较了mp512 -体和mp512 -外延的辐射硬度。他们测量的输出系数,离轴比和深度剂量百分比,在6 MV和10 MV的扁平光子光束产生的方形辐射场中,由颚准直,然后与商用探测器的基准进行比较。从医学物理学家的角度来看,本研究旨在建立体和外延制造技术如何影响MP512s进入QA协议的实现。结果表明,mp512外延具有优异的辐射硬度、长期稳定性以及可实现的均匀性和可重复性。
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2D monolithic silicon-diode array detectors in megavoltage photon beams: does the fabrication technology matter? A medical physicist's perspective.

A family of prototype 2D monolithic silicon-diode array detectors (MP512, Duo, Octa) has been proposed by the Centre for Medical Radiation Physics, University of Wollongong (Australia) for relative dosimetry in small megavoltage photon beams. These detectors, which differ in the topology of their 512 sensitive volumes, were originally fabricated on bulk p-type substrates. More recently, they have also been fabricated on epitaxial p-type substrates. In the literature, their performance has been individually characterized for quality assurance (QA) applications. The present study directly assessed and compared that of a MP512-bulk and that of a MP512-epitaxial in terms of radiation hardness, long-term stability, response linearity with dose, dose per pulse and angular dependence. Their measurements of output factors, off-axis ratios and percentage depth doses in square radiation fields collimated by the jaws and produced by 6 MV and 10 MV flattened photon beams were then benchmarked against those by commercially available detectors. The present investigation was aimed at establishing, from a medical physicist's perspective, how the bulk and epitaxial fabrication technologies would affect the implementation of the MP512s into a QA protocol. Based on results, the MP512-epitaxial would offer superior radiation hardness, long-term stability and achievable uniformity and reproducibility of the response across the 2D active area.

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来源期刊
CiteScore
2.00
自引率
0.00%
发文量
0
审稿时长
6-12 weeks
期刊介绍: Australasian Physical & Engineering Sciences in Medicine (APESM) is a multidisciplinary forum for information and research on the application of physics and engineering to medicine and human physiology. APESM covers a broad range of topics that include but is not limited to: - Medical physics in radiotherapy - Medical physics in diagnostic radiology - Medical physics in nuclear medicine - Mathematical modelling applied to medicine and human biology - Clinical biomedical engineering - Feature extraction, classification of EEG, ECG, EMG, EOG, and other biomedical signals; - Medical imaging - contributions to new and improved methods; - Modelling of physiological systems - Image processing to extract information from images, e.g. fMRI, CT, etc.; - Biomechanics, especially with applications to orthopaedics. - Nanotechnology in medicine APESM offers original reviews, scientific papers, scientific notes, technical papers, educational notes, book reviews and letters to the editor. APESM is the journal of the Australasian College of Physical Scientists and Engineers in Medicine, and also the official journal of the College of Biomedical Engineers, Engineers Australia and the Asia-Oceania Federation of Organizations for Medical Physics.
期刊最新文献
Acknowledgment of Reviewers for Volume 35 Acknowledgment of Reviewers for Volume 34 A comparison between EPSON V700 and EPSON V800 scanners for film dosimetry. Nanodosimetric understanding to the dependence of the relationship between dose-averaged lineal energy on nanoscale and LET on ion species. EPSM 2019, Engineering and Physical Sciences in Medicine : 28-30 October 2019, Perth, Australia.
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