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3D dosimetry by optical-CT scanning

机译:3D DoseMetry通过光学CT扫描

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摘要

The need for an accurate, practical, low-cost 3D dosimetry system is becoming ever more critical as modern dose delivery techniques increase in complexity and sophistication. A recent report from the Radiological Physics Center (RPC) (1), revealed that 38percent of institutions failed the head-and-neck IMRT phantom credentialing test at the first attempt. This was despite generous passing criteria (within 7percent dose-difference or 4mm distance-to-agreement) evaluated at a half-dozen points and a single axial plane. The question that arises from this disturbing finding is - what percentage of institutions would have failed if a comprehensive 3D measurement had been feasible, rather than measurements restricted to the central film-plane and TLD points? This question can only be adequately answered by a comprehensive 3D-dosimetry system, which presents a compelling argument for its development as a clinically viable low cost dosimetry solution. Optical-CT dosimetry is perhaps the closest system to providing such a comprehensive solution. In this article, we review the origins and recent developments of optical-CT dosimetry systems. The principle focus is on first generation systems known to have highest accuracy but longer scan times.
机译:随着现代剂量递送技术的复杂性和复杂性增加,需要准确,实用的低成本3D剂量系统变得更加重要。最近从放射性物理中心(RPC)(RPC)(1)的报告显示,第一次尝试,机构38人失败了头部和颈部IMRT幻像凭证测试。尽管在六个点和单个轴向平面下评估了慷慨的通过标准(在7毫米的剂量差异或4mm距离 - 与协议内)。从这个令人不安的发现产生的问题是 - 如果一个全面的3D测量是可行的,而不是限制在中央胶片平面和TLD点的测量,那么百分比将失败?该问题只能通过全面的3D - 剂量系统充分回答,这对其开发具有令人信服的论点,作为临床可行的低成本剂量测定溶液。光学CT剂量测定法可能是提供这种综合解决方案的最接近的系统。在本文中,我们审查了光学CT剂量测定系统的起源和最新发展。原则上焦点在已知的第一代系统上具有最高的精度,但扫描时间更长。

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