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Absolute calorimetric calibration of low energy brachytherapy sources.

机译:低能量近距离放射治疗源的绝对量热校准。

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摘要

In the past decade there has been a dramatic increase in the use of permanent radioactive source implants in the treatment of prostate cancer. A small radioactive source encapsulated in a titanium shell is used in this type of treatment. The radioisotopes used are generally 125I or 103Pd. Both of these isotopes have relatively short half-lives, 59.4 days and 16.99 days, respectively, and have low-energy emissions and a low dose rate. These factors make these sources well suited for this application, but the calibration of these sources poses significant metrological challenges.;The current standard calibration technique involves the measurement of ionization in air to determine the source air-kerma strength. While this has proved to be an improvement over previous techniques, the method has been shown to be metrologically impure and may not be the ideal means of calbrating these sources. Calorimetric methods have long been viewed to be the most fundamental means of determining source strength for a radiation source. This is because calorimetry provides a direct measurement of source energy. However, due to the low energy and low power of the sources described above, current calorimetric methods are inadequate.;This thesis presents work oriented toward developing novel methods to provide direct and absolute measurements of source power for low-energy low dose rate brachytherapy sources. The method is the first use of an actively temperature-controlled radiation absorber using the electrical substitution method to determine total contained source power of these sources. The instrument described operates at cryogenic temperatures. The method employed provides a direct measurement of source power.;The work presented here is focused upon building a metrological foundation upon which to establish power-based calibrations of clinical-strength sources. To that end instrument performance has been assessed for these source strengths. The intent is to establish the limits of the current instrument to direct further work in this field. It has been found that for sources with powers above approximately 2 μW the instrument is able to determine the source power in agreement to within less than 7% of what is expected based upon the current source strength standard. For lower power sources, the agreement is still within the uncertainty of the power measurement, but the calorimeter noise dominates. Thus, to provide absolute calibration of lower power sources additional measures must be taken. The conclusion of this thesis describes these measures and how they will improve the factors that limit the current instrument.;The results of the work presented in this thesis establish the methodology of active radiometric calorimetey for the absolute calibration of radioactive sources. The method is an improvement over previous techniques in that there is no reliance upon the thermal properties of the materials used or the heat flow pathways on the source measurements. The initial work presented here will help to shape future refinements of this technique to allow lower power sources to be calibrated with high precision and high accuracy.
机译:在过去的十年中,永久性放射源植入物在前列腺癌治疗中的使用已大大增加。在这种类型的处理中使用封装在钛壳中的小型放射源。所使用的放射性同位素通常为125 I或103 Pd。这两种同位素的半衰期分别相对较短,分别为59.4天和16.99天,并且具有低能量排放和低剂量率的特点。这些因素使这些源非常适合此应用,但是这些源的校准带来了重大的计量挑战。;当前的标准校准技术涉及测量空气中的电离,以确定源的空气比释动能强度。尽管已证明这是对先前技术的改进,但已证明该方法在计量上是不纯的,可能不是校准这些源的理想方法。长期以来,量热法一直被认为是确定辐射源强度的最基本手段。这是因为量热法可直接测量源能量。然而,由于上述能量源的低能量和低功率,目前的量热方法是不足够的。本论文的工作方向是开发新颖的方法,以提供直接和绝对的测量低能量低剂量率近距离放射治疗源的能量。该方法是首次使用主动温度控制的辐射吸收器,该吸收器使用电替代方法来确定这些源的总包含源功率。所述仪器在低温下运行。所采用的方法可直接测量源功率。此处提出的工作着重于建立计量基础,在此基础上建立基于功率的临床强度源校准。为此,已针对这些光源强度评估了仪器性能。目的是确定当前仪器的极限,以指导该领域的进一步工作。已经发现,对于功率高于约2μW的光源,仪器能够将光源功率一致地确定为小于基于当前光源强度标准所期望的功率的7%。对于较低功率的电源,该协议仍在功率测量的不确定性之内,但量热仪噪声占主导地位。因此,为了提供较低电源的绝对校准,必须采取其他措施。本文的结论描述了这些措施,以及它们将如何改善限制当前仪器的因素。本论文的工作结果建立了用于放射源绝对校准的有源放射量热法。该方法是对现有技术的改进,因为它不依赖所使用材料的热特性或源测量中的热流路径。此处介绍的初始工作将有助于确定该技术的未来改进,以允许以高精度和高精度校准较低的电源。

著录项

  • 作者

    Stump, Kurt E.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Health Sciences Radiology.;Physics Radiation.;Biophysics Medical.;Health Sciences Oncology.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 203 p.
  • 总页数 203
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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