首页> 外文期刊>British Journal of Radiology >A method to produce and validate a digitally reconstructed radiograph-based computer simulation for optimisation of chest radiographs acquired with a computed radiography imaging system.
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A method to produce and validate a digitally reconstructed radiograph-based computer simulation for optimisation of chest radiographs acquired with a computed radiography imaging system.

机译:一种产生和验证基于数字重建射线照相的计算机仿真的方法,用于优化通过计算机射线照相成像系统获取的胸部射线照相。

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OBJECTIVES: The purpose of this study was to develop and validate a computer model to produce realistic simulated computed radiography (CR) chest images using CT data sets of real patients. METHODS: Anatomical noise, which is the limiting factor in determining pathology in chest radiography, is realistically simulated by the CT data, and frequency-dependent noise has been added post-digitally reconstructed radiograph (DRR) generation to simulate exposure reduction. Realistic scatter and scatter fractions were measured in images of a chest phantom acquired on the CR system simulated by the computer model and added post-DRR calculation. RESULTS: The model has been validated with a phantom and patients and shown to provide predictions of signal-to-noise ratios (SNRs), tissue-to-rib ratios (TRRs: a measure of soft tissue pixel value to that of rib) and pixel value histograms that lie within the range of values measured with patients and the phantom. The maximum difference in measured SNR to that calculated was 10%. TRR values differed by a maximum of 1.3%. CONCLUSION: Experienced image evaluators have responded positively to the DRR images, are satisfied they contain adequate anatomical features and have deemed them clinically acceptable. Therefore, the computer model can be used by image evaluators to grade chest images presented at different tube potentials and doses in order to optimise image quality and patient dose for clinical CR chest radiographs without the need for repeat patient exposures.
机译:目的:本研究的目的是开发和验证计算机模型,以使用真实患者的CT数据集生成逼真的模拟X射线摄影(CR)胸部图像。方法:通过CT数据现实地模拟解剖噪声,这是确定胸部X线摄影病理的限制因素,并且在数字重建X射线照片(DRR)生成后添加了频率相关的噪声,以模拟暴露减少。在计算机模型模拟的CR系统上采集的胸部幻影图像中测量了实际的散射和散射分数,并添加了DRR后计算。结果:该模型已通过幻影模型和患者验证,显示可提供信噪比(SNR),组织与肋骨比率(TRR:软组织像素值与肋骨值的度量)和像素值直方图位于患者和体模测量的值的范围内。测得的SNR与计算得出的SNR的最大差值为10%。 TRR值最大相差1.3%。结论:经验丰富的图像评估者对DRR图像做出了积极的反应,对它们具有足够的解剖特征感到满意,并认为它们在临床上是可以接受的。因此,图像评估人员可以使用计算机模型对在不同管电位和剂量下呈现的胸部图像进行分级,以优化临床CR胸片的图像质量和患者剂量,而无需重复患者暴露。

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