首页> 外文期刊>Investigative radiology >Flat panel detector-based volumetric computed tomography (fpVCT): performance evaluation of volumetric methods by using different phantoms in comparison to 64-multislice computed tomography.
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Flat panel detector-based volumetric computed tomography (fpVCT): performance evaluation of volumetric methods by using different phantoms in comparison to 64-multislice computed tomography.

机译:基于平板检测器的体积计算机断层扫描(fpVCT):与64多层计算机断层扫描相比,通过使用不同的体模对体积方法进行性能评估。

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OBJECTIVES: Evaluation of a silicon-based flat panel volumetric computed tomography (fpVCT) and multislice CT in terms of volumetry of phantoms with different algorithms. Furthermore, to compare the different volumetric analysis methods themselves. MATERIALS AND METHODS: Four phantoms of different materials have been scanned with fpVCT (GE prototype with circular gantry with 2 aSi/CsI flat panel detector) and a 64-slice spiral CT (MSCT: LightSpeed VCT). Three spherical phantoms of different materials and 1 phantom with an irregular shape were evaluated. True volumes were calculated in dependence from the diameter or by water displacement method. Imaging parameters (80 kVp, 100 mA) and the position of the phantoms were identical in both techniques. After reconstruction of the images different algorithms have been used 4 times for each phantom. These analysis methods have been performed: Region growing, threshold method, planimetry, 3-dimensional volumetry measurement by using the equation of an ellipsoid (ellipse) and an advanced lung analysis modus [single advanced lung analysis (ALA)]. The mean values and the standard deviations have been evaluated and compared with the true volumes. RESULTS: In all phantoms fpVCT showed better results with lower deviations from the true values than in MSCT, especially for small volumes of the phantoms. However, the results of the ALA single method demonstrated no significant difference between the fpVCT and MSCT. The comparison of the different analysis methods revealed that 3-dimensional measurement with the ellipse method was the worst method for volume estimation, especially for the irregularly formed phantom. CONCLUSION: fpVCT was superior to MSCT in the volumetry of small objects. The ellipse method has been shown to be the worst for volumetry with the highest relative deviations from the true volume value. The single ALA method shows the lowest standard deviation thereby revealing a reproducible volumetric method for small nodules. However, further future developments of volumetric analysis methods are necessary to use them accurately in daily routine. Due to the truly isotropic volume data set with high spatial resolution fpVCT is a powerful tool for the volumetry of small nodules.
机译:目的:用不同的算法评估幻影的体积,基于硅的平板体积计算机断层扫描(fpVCT)和多层CT。此外,比较不同的体积分析方法本身。材料与方法:用fpVCT(带有2个aSi / CsI平板探测器的圆形龙门的GE原型)和64层螺旋CT(MSCT:LightSpeed VCT)扫描了四种不同材料的体模。评估了三种不同材料的球形体模和1种不规则形状的体模。根据直径或通过水置换法计算真实体积。两种技术中的成像参数(80 kVp,100 mA)和体模的位置均相同。重建图像后,每个体模已使用4次不同的算法。已经执行了以下分析方法:区域增长,阈值法,平面测量,通过使用椭圆体(椭圆)和高级肺部分析方法[单项高级肺部分析(ALA)]的等式3维体积测量。对平均值和标准偏差进行了评估,并与真实体积进行了比较。结果:与MSCT相比,在所有体模中,fpVCT均显示出更好的结果,与真实值的偏差较小,特别是对于小体积的体模。但是,ALA单一方法的结果表明fpVCT和MSCT之间没有显着差异。对不同分析方法的比较表明,用椭圆法进行3维测量是评估体积的最差方法,尤其是对于不规则形成的体模。结论:fpVCT在小物体体积方面优于MSCT。椭圆法已被证明是体积测量中最差的方法,与真实体积值的相对偏差最大。单一ALA方法显示出最低的标准偏差,从而揭示了小结节的可重现的体积方法。但是,为了在日常工作中准确使用它们,有必要对体积分析方法进行进一步的开发。由于具有高空间分辨率的真正各向同性的体积数据集,fpVCT是用于小结节体积测量的强大工具。

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