The goal of this study was to investigate the impact of computing parameters and the location of volumes of interest (VOI) on the calculation of 3D noise power spectrum (NPS) in order to determine an optimal set of computing parameters and propose a robust method for evaluating the noise properties of imaging systems. Noise stationarity in noise volumes acquired with a water phantom on a 128-MDCT and a 320-MDCT scanner were analyzed in the spatial domain in order to define locally stationary VOIs. The influence of the computing parameters in the 3D NPS measurement: the sampling distances bx,y,z and the VOI lengths Lx,y,z, the number of VOIs NVOI and the structured noise were investigated to minimize measurement errors. The effect of the VOI locations on the NPS was also investigated. Results showed that the noise (standard deviation) varies more in the r-direction (phantom radius) than z-direction plane. A 25 × 25 × 40 mm(3) VOI associated with DFOV = 200 mm (Lx,y,z = 64, bx,y = 0.391 mm with 512 × 512 matrix) and a first-order detrending method to reduce structured noise led to an accurate NPS estimation. NPS estimated from off centered small VOIs had a directional dependency contrary to NPS obtained from large VOIs located in the center of the volume or from small VOIs located on a concentric circle. This showed that the VOI size and location play a major role in the determination of NPS when images are not stationary. This study emphasizes the need for consistent measurement methods to assess and compare image quality in CT.

译文

本研究的目的是研究计算参数和感兴趣体积 (VOI) 的位置对3D噪声功率谱 (NPS) 计算的影响,以便确定一组最佳的计算参数,并提出一种可靠的方法评估成像系统的噪声特性。在空间域中分析了在128-MDCT和320-MDCT扫描仪上使用水体模获得的噪声体积中的噪声平稳性,以定义局部固定的VOIs。研究了3D NPS测量中计算参数的影响: 采样距离bx,y,z和VOI长度Lx,y,z,VOIs NVOI的数量和结构化噪声,以最大程度地减少测量误差。还研究了VOI位置对NPS的影响。结果表明,噪声 (标准偏差) 在r方向 (幻影半径) 上的变化大于z方向平面。与DFOV = 200毫米 (Lx,y,z = 64,bx,y = 0.391毫米,具有512 × 512矩阵) 相关联的25 × 40毫米 (3) VOI和减少结构化噪声的一阶去趋势方法导致了准确的NPS估计。从偏心小voi估算的NPS具有方向依赖性,这与从位于体积中心的大voi或位于同心圆上的小voi获得的NPS相反。这表明,当图像不静止时,VOI的大小和位置在确定np中起主要作用。这项研究强调需要一致的测量方法来评估和比较CT中的图像质量。

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