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首页> 外文期刊>Medical Physics >An improved analytical model for CT dose simulation with a new look at the theory of CT dose.
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An improved analytical model for CT dose simulation with a new look at the theory of CT dose.

机译:一种改进的用于CT剂量模拟的分析模型,对CT剂量的理论有了新的认识。

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摘要

Gagne [Med. Phys. 16, 29-37 (1989)] has previously described a model for predicting the sensitivity and dose profiles in the slice-width (z) direction for CT scanners. The model, developed prior to the advent of multidetector CT scanners, is still widely used; however, it does not account for the effect of anode tilt on the penumbra or include the heel effect, both of which are increasingly important for the wider beams (up to 40 mm) of contemporary, multidetector scanners. Additionally, it applied only on (or near) the axis of rotation, and did not incorporate the photon energy spectrum. The improved model described herein transcends all of the aforementioned limitations of the Gagne model, including extension to the peripheral phantom axes. Comparison of simulated and measured dose data provides experimental validation of the model, including verification of the superior match to the penumbra provided by the tilted-anode model, as well as the observable effects on the cumulative dose distribution. The initial motivation for the model was to simulate the quasiperiodic dose distribution on the peripheral, phantom axes resulting from a helical scan series in order to facilitate the implementation of an improved method of CT dose measurement utilizing a short ion chamber, as proposed by Dixon [Med. Phys. 30, 1272-1280 (2003)]. A more detailed set of guidelines for implementing such measurements is also presented in this paper. In addition, some fundamental principles governing CT dose which have not previously been clearly enunciated follow from the model, and a fundamental (energy-based) quantity dubbed CTDI-aperture
机译:加涅[医学博士。物理[J.Med.Chem.Soc.16,29-37(1989)]先前已经描述了用于预测CT扫描器在切片宽度(z)方向上的灵敏度和剂量分布的模型。该模型是在多探测器CT扫描仪问世之前开发的,至今仍在广泛使用。但是,它不能解决阳极倾斜对半影的影响或包括后跟效应,这两者对于当代的多探测器扫描仪的较宽光束(最大40毫米)越来越重要。此外,它仅应用在旋转轴上(或附近),而没有合并光子能谱。本文描述的改进模型超越了Gagne模型的所有上述限制,包括对外围幻像轴的扩展。模拟和测量剂量数据的比较提供了模型的实验验证,包括验证与倾斜阳极模型提供的半影的优异匹配以及对累积剂量分布的可观察效果。该模型的最初动机是模拟螺旋扫描系列在外围幻影轴上的准周期性剂量分布,以便于实施使用Dixon提出的使用短离子室的CT剂量测量的改进方法。中物理30,1272-1280(2003)]。本文还介绍了用于执行此类测量的一组更详细的指南。此外,该模型遵循了一些以前尚未明确阐明的控制CT剂量的基本原理,并且将一个基本的(基于能量的)量称为CTDI孔径

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