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Evaluation of noise power spectra of CT images

机译:CT图像噪声功率谱评估

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Using a commercial clinical CT scanner (GE lightspeed), nine CT scans were performed on a 20 cm diameter plastic pipe filled with water. The mAs was varied from 10 to 400mAs and the beam energy was varied from 80 to l40kVp. For each scan three volume datasets were reconstructed using different filters. Noise power spectrum (NPS) curves were measured to examine the effect of varying kVp, mAs and reconstruction filter on the noise content. Sixteen slices from each of the reconstructed volumes were used to compute the NPS; the central 192 × 192 pixels of each slice were split into four overlapping regions of interest (ROI) of 128x128 pixels. A total of 64 ROI were used per scan. The magnitude squared of the 2D Fourier transform of each ROI was computed. The mean of the 64 2D results was averaged over radial frequency, yielding a ID NPS. The overall shape of the NPS was dependent on the reconstruction filter used. The magnitude of the curves decreased with the increase of mAs or kVp. kVp, mAs, and the reconstruction filter can be adjusted to modulate the amount of noise present in resulting CT volumes, but the effect these values have on the patient must be considered. The relationship between NPS and the Noise Equivalent Quanta (NEQ) makes trends in NPS important and is the motivation for this evaluation and future research.
机译:使用商用临床CT扫描仪(GE lightspeed),在充满水的20厘米直径塑料管上进行了9次CT扫描。 mAs在10到400mAs之间变化,射束能量在80到140kVp之间变化。对于每次扫描,使用不同的过滤器重建三个体积数据集。测量了噪声功率谱(NPS)曲线,以检查变化的kVp,mAs和重构滤波器对噪声含量的影响。每个重建体积的16个切片用于计算NPS;每个切片的中央192×192像素被分成四个重叠的128x128像素感兴趣区域(ROI)。每次扫描总共使用64个ROI。计算每个ROI的2D傅里叶变换的幅度平方。 64个2D结果的平均值在径向频率上取平均值,得到ID NPS。 NPS的整体形状取决于所使用的重建滤波器。曲线的幅度随着mAs或kVp的增加而减小。可以调整kVp,mAs和重建滤波器以调制最终CT体积中存在的噪声量,但是必须考虑这些值对患者的影响。 NPS和噪声等效量(NEQ)之间的关系使NPS的趋势变得重要,并且是进行此评估和未来研究的动机。

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