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CT 射束剂量学特性描述程序用于个体化剂量学。

CT beam dosimetric characterization procedure for personalized dosimetry.

机构信息

Physikalisch-Technische Bundesanstalt, Bundesallee 100, 38116 Braunschweig, Germany.

出版信息

Phys Med Biol. 2019 Mar 29;64(7):075009. doi: 10.1088/1361-6560/ab0e97.

Abstract

Personalized dosimetry in computed tomography (CT) can be realized by a full Monte Carlo (MC) simulation of the scan procedure. Essential input data needed for the simulation are appropriate CT x-ray source models and a model of the patient's body which is based on the CT image. The purpose of this work is to develop comprehensive procedures for the determination of CT x-ray source models and their verification by comparison of calculated and measured dose distributions in physical phantoms. Mobile equipment together with customized software was developed and used for non-invasive determination of equivalent source models of CT scanners under clinical conditions. Standard and physical anthropomorphic CT dose phantoms equipped with real-time CT dose probes at five representative positions were scanned. The accumulated dose was measured during the scan at the five positions. ImpactMC, an MC-based CT dose software program, was used to simulate the scan. The necessary inputs were obtained from the scan parameters, from the equivalent source models and from the material-segmented CT images of the phantoms. 3D dose distributions in the phantoms were simulated and the dose values calculated at the five positions inside the phantom were compared to measured dose values. Initial results were obtained by means of a General Electric Optima CT 660 and a Toshiba (Canon) Aquilion ONE. In general, the measured and calculated dose values were within relative uncertainties that had been estimated to be less than 10%. The procedures developed were found to be viable and rapid. The procedures are applicable to any scanner type under clinical conditions without making use of the service mode with stationary x-ray tube position. Results show that the procedures are well suited for determining and verifying the equivalent source models needed for personalized CT dosimetry based on post-scan MC calculations.

摘要

在计算机断层扫描(CT)中可以通过完整的蒙特卡罗(MC)模拟扫描过程来实现个体化剂量测定。模拟所需的基本输入数据是适当的 CT X 射线源模型和基于 CT 图像的患者身体模型。本工作的目的是开发综合程序,以确定 CT X 射线源模型,并通过比较物理体模中的计算和测量剂量分布来验证其准确性。开发并使用了移动设备和定制软件,以便在临床条件下非侵入性地确定 CT 扫描仪的等效源模型及其验证。使用标准和物理人体模型 CT 剂量体模,这些体模配备了五个代表性位置的实时 CT 剂量探头,在五个位置扫描时测量累积剂量。使用基于 MC 的 CT 剂量软件程序 ImpactMC 模拟扫描。必要的输入是从扫描参数、等效源模型和体模的材料分割 CT 图像中获得的。模拟体模中的三维剂量分布,并将体模内部五个位置的计算剂量值与测量剂量值进行比较。使用通用电气 Optima CT 660 和东芝(佳能)Aquilion ONE 获得了初始结果。总的来说,测量值和计算值的剂量值在相对不确定度范围内,相对不确定度估计小于 10%。所开发的程序被证明是可行且快速的。这些程序适用于任何临床条件下的扫描仪类型,无需使用固定 X 射线管位置的服务模式。结果表明,这些程序非常适合确定和验证基于后扫描 MC 计算的个体化 CT 剂量测定所需的等效源模型。

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