GE eXplore CT 120微型CT在不同扫描方案下的性能评估

M. Bahri, Florian Bretin, G. Warnock, A. Luxen, E. Salmon, A. Plenevaux, A. Seret
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引用次数: 4

摘要

本研究的目的是评估通用电气(GE) eXplore CT 120微型CT的性能,使用为GE eXplore Ultra开发的方法和图像质量保证vmCT幻影。此外,质量保证在放射学和医学(QRM)低对比度和条形模式的幻影被使用。使用我们实验室常用的六种成像方案(快速扫描220 (PI)或360 (P2): 70 kV, 32 rnA, 220或360视图;软组织快速扫描(P3): 70 kV, 50 rnA, 220视图;软组织步进和拍摄(P4): 80 kV, 32 rnA, 220视图;低噪音(P5): 100 kV, 50 rnA, 720视图;和体内骨扫描(P6): 100千伏,50 rnA, 360视图)。重建数据的各向同性体素尺寸分别为100 μm和50 μm,用于检测器绑定4×4和2×2。用斜边法和线圈法得到的调制传递函数(MTF)吻合得很好。在3.6-4.8 mm-1范围内观察到10%的MTF (P1&2 = 4.2;P3&4 = 4.8;P5 = 3.6, P6 = 3.8),对应的分辨率为95 ~ 138 μm。在QRM BarPattern模型图像上观察到的最小条纹均为100 μm。几何精度优于0.1%。在vmCT模体的CT数精度和线性切片中,测量到的CT数与预期的CT数之间存在高度线性关系(R2 > 0.999),且具有电压依赖性斜率。在均匀切片上观察到拔罐效应。这种效果通过均匀噪声比(PI = 0.58, P2&3&4 = 0.75, P5 = 1.35, P6 = 2.74)得到了明显的强调,特别是对于低噪声方案P5和P6。在P2和P5方案中观察到使用低对比度幻像评估的最佳对比度辨别。综上所述,eXplore CT 120的分辨率在95-138 μm之间。人们发现它是线性的,几何上是精确的。两种方案之间的主要区别是噪声水平,这限制了低对比度的可检测性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance evaluation of the GE eXplore CT 120 micro-CT for various scanning protocols
The aim of this study was to evaluate the performance of the General Electric (GE) eXplore CT 120 microCT using the methodology and image quality assurance vmCT phantom developed for the GE eXplore Ultra. In addition, Quality assurance in Radiology and Medicine (QRM) low contrast and bar pattern phantoms were used. The phantoms were imaged using the six protocols regularly used in our laboratory (Fast scan 220 (PI) or 360 (P2): 70 kV, 32 rnA, 220 or 360 views; Soft tissue fast scan (P3): 70 kV, 50 rnA, 220 views; Soft tissue step & shoot (P4): 80 kV, 32 rnA, 220 views; Low Noise (P5): 100 kV, 50 rnA, 720 views; and In Vivo Bone scan (P6): 100 kV, 50 rnA, 360 views). Data were reconstructed with an isotropic voxel size of 100 μm or 50 μm for detector-binning 4×4 and 2×2, respectively. The Modulation Transfer Function (MTF) obtained with the slanted edge and coil methods agreed very well. A 10% MTF was observed in the range 3.6-4.8 mm-1 (P1&2 = 4.2; P3&4 = 4.8; P5 = 3.6 and P6 = 3.8), corresponding to 95-138 μm resolutions. The smallest bars visually observed on the QRM BarPattern phantom image were 100 μm for all protocols. The geometric accuracy was better than 0.1 %. A highly linear (R2 > 0.999) relationship between measured and expected CT number for both the CT number accuracy and linearity sections of the vmCT phantom was observed with a voltage dependent slope. A cupping effect was observed on the uniform slices. This effect was clearly highlighted by the uniformity-to-noise ratio (PI = 0.58, P2&3&4 = 0.75, P5 = 1.35 and P6 = 2.74) especially for the low-noise protocols P5 and P6. The best contrast discrimination as assessed using the low contrast phantom was observed for P2 and P5 protocols. In conclusion the eXplore CT 120 achieved a resolution in the range 95-138 μm. It was found to be linear and geometrically accurate. The major difference between the protocols was the noise level which limits the detectability of low contrasts.
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