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锥形束计算机断层成像中运动目标伸长的测量和建模的定量评估。

Quantitative assessment by measurement and modeling of mobile target elongation in cone-beam computed tomographic imaging.

机构信息

University of Oklahoma Health Sciences Center.

出版信息

J Appl Clin Med Phys. 2014 May 8;15(3):4634. doi: 10.1120/jacmp.v15i3.4634.

Abstract

The purpose of this study was to assess quantitatively elongation of mobile targets in cone-beam CT (CBCT) imaging by measurement and modeling. A mathematical model was derived that predicts the measured lengths of mobile targets and its dependence on target size and motion patterns in CBCT imaging. Three tissue-equivalent targets of differing sizes were inserted in an artificial thorax phantom to simulate lung lesions. Respiratory motion was mimicked with a mobile phantom that moves in one-dimension along the superior-inferior direction at a respiration frequency of 0.24 Hz for eight different amplitudes in the range 0-40 mm. A mathematical model was derived to quantify the variations in target lengths and its dependence on phantom motion parameters in CBCT. Predictions of the model were verified by measurement of the lengths of mobile targets in CBCT images. The model predicts that target lengths increased linearly with increase in speed and amplitude of phantom motion in CBCT. The measured lengths of mobile targets imaged with CBCT agreed with the calculated lengths within half-slice thickness spatial resolution. The maximal length of a mobile target was independent of the frequency and phase of motion. Elongation of mobile targets was similar in half-fan and full-fan CBCT for similar motion patterns, as long as the targets remained within the imaging view. Mobile targets elongated linearly with phantom speed and motion amplitude in CBCT imaging. The model introduced in this work assessed quantitatively the variation in target lengths induced by motion, which may be a useful tool to consider elongations of mobile targets in CBCT applications in diagnostic imaging and radiotherapy.

摘要

本研究旨在通过测量和建模定量评估锥形束 CT(CBCT)成像中移动目标的伸长。推导了一个数学模型,预测了移动目标的测量长度及其在 CBCT 成像中对目标大小和运动模式的依赖性。三个不同大小的组织等效目标被插入人工胸腔体模中,以模拟肺病变。使用移动体模模拟呼吸运动,该体模以 0.24 Hz 的呼吸频率沿上下方向在一维上移动,在 0-40 mm 的范围内模拟了 8 种不同幅度的运动。推导了一个数学模型来量化目标长度的变化及其对 CBCT 中体模运动参数的依赖性。通过测量 CBCT 图像中移动目标的长度来验证模型的预测。该模型预测目标长度随体模运动速度和幅度的增加呈线性增加。CBCT 成像中移动目标的测量长度与计算长度在半切片厚度空间分辨率内一致。移动目标的最大长度与运动的频率和相位无关。在相似的运动模式下,半扇形和全扇形 CBCT 中移动目标的伸长相似,只要目标仍在成像视野内。移动目标在 CBCT 成像中随体模速度和运动幅度线性伸长。本工作中引入的模型定量评估了运动引起的目标长度变化,这可能是在诊断成像和放射治疗中考虑 CBCT 应用中移动目标伸长的有用工具。

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