首页> 外文会议>Bioinformatics and Biomedical Engineering , 2009. ICBBE 2009 >The Influence of X-Ray Spectra Filtration on Image Quality and Patient Dose in the GE VCT 64-Slice Cardiac CT Scanner
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The Influence of X-Ray Spectra Filtration on Image Quality and Patient Dose in the GE VCT 64-Slice Cardiac CT Scanner

机译:GE VCT 64层心脏CT扫描仪中X射线光谱过滤对图像质量和患者剂量的影响

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The polyenergetic X-ray spectra used during CT imaging makes it subject to beam hardening artefacts caused by the absorption of low energy X-rays as they pass through the patient. The direct consequence is that the linear attenuation coefficient calculated for thick body regions is lower than in thin regions. This effect generates cupping and streak artefacts in the reconstructed CT images thus compromising their use in clinical diagnosis. A possible solution for reduction of beam hardening artefact and furthermore minimizing patient dose is, to use suitable X-ray spectra filtration of aluminium (Al) or cupper (Cu) before penetration of the X-ray photons into the patient's body. In this study, we quantified the effect of using different x-ray spectra filtration on image quality, patient dose and modulation transfer function (MTF) in the GE LightSpeed VCT 64-slice cardiac CT scanner using experimental measurements. Different thicknesses of Cu filters ranging from 0.13 to 1.6 mm were installed on the collimator aperture. A cylindrical phantom comprising 16 different materials for modelling of different tissues and the GE performance phantom were scanned at different tube voltages and thicknesses of Cu filters. The absorbed dose in the centre of the phantom was measured using a pencil dosimeter placed in the central part of the phantom. Then the images acquired using different filters were analyzed through comparison of the CT numbers (contrast) and standard deviation (noise) of different ROIs in the phantom with the values obtained using the default filtration of the scanner fixed in the factory. To assess the influence of X-ray spectra filtration on MTF, the GE performance phantom was used. The additional filtration of 0.6 mm Cu was considered as the optimal filter resulting in acceptable image quality with minimum dose (50% reduction). This study is being continued by employing different filter thicknesses to accurately find the optimum filtration required for the -GE VCT scanner to achieve the best image quality with the least possible patient absorbed dose.
机译:CT成像过程中使用的多能X射线光谱使其受到束硬化伪影的影响,这些伪影是由于低能X射线在穿过患者时被吸收而引起的。直接的结果是,为厚体区域计算的线性衰减系数低于在薄区域中的线性衰减系数。这种效果会在重建的CT图像中产生拔罐和条纹伪影,从而损害了它们在临床诊断中的使用。减少束硬化伪像并进一步最小化患者剂量的一种可能的解决方案是,在X射线光子渗透到患者体内之前使用铝(Al)或铜(Cu)的合适X射线光谱过滤。在这项研究中,我们使用实验测量结果量化了在GE LightSpeed VCT 64层心脏CT扫描仪中使用不同的X射线光谱过滤对图像质量,患者剂量和调制传递函数(MTF)的影响。在准直仪孔径上安装了厚度范围从0.13到1.6 mm的Cu过滤器。在不同的管电压和铜过滤器的厚度下扫描包含16种不同材料的圆柱体模型,以用于不同组织的建模。使用放置在体模中央部分的铅笔剂量计测量体模中央的吸收剂量。然后,通过比较体模中不同ROI的CT数(对比度)和标准偏差(噪声)与使用工厂固定的扫描仪默认过滤器获得的值进行比较,来分析使用不同滤镜获得的图像。为了评估X射线光谱过滤对MTF的影响,使用了GE性能体模。 0.6 mm Cu的额外过滤被认为是最佳过滤器,可在最小剂量(减少50%)的情况下获得可接受的图像质量。通过采用不同的过滤器厚度来准确地找到以下各项所需的最佳过滤条件,这项研究正在继续进行: GE VCT扫描仪以最小的患者吸收剂量获得最佳图像质量。

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