首页> 外文会议>Physic of Medical Imaging pt.2; Progress in Biomedical Optics and Imaging; vol.6 no.22 >Tradeoffs in Noise, Resolution, and Dose with Reconstruction Filter in Lung Nodule Detection in CT
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Tradeoffs in Noise, Resolution, and Dose with Reconstruction Filter in Lung Nodule Detection in CT

机译:CT肺结节检测中噪声,分辨率和剂量与重建滤波器的权衡

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Low contrast detection tasks, such as the detection of subtle ground glass nodules, are low signal to noise (SNR) situations that can be greatly influenced by choice of reconstruction filter. The goal of this work is to examine tradeoffs in noise, resolution, and dose on the SNR of low contrast test objects, resembling spherical lung nodules, to potentially improve reconstruction filter selection for a given nodule detection task. To perform these experiments, the Modulation Transfer Function (MTF) was calculated for each reconstruction filter available. Next, simulated signal images were created using 2mm section thicknesses of 1 cm diameter spheres of varying contrast levels. The Noise Power Spectra (NPS) were then calculated for each reconstruction filter to be examined. The signal to noise metric used is the ideal Bayesian observer SNR metric, which takes into account the spatial correlations in noise introduced by the filter (and described by the NPS). The IBO SNR was calculated under a variety of reconstruction conditions: (a) varying mAs so that each reconstruction filter results in the same standard deviation; (b) constant mAs and varying reconstruction filter; (c) one reconstruction filter using varying mAs. These measurements provide an opportunity to examine the important tradeoffs in SNR with noise, resolution, and dose that occur with selection of a reconstruction filter and can potentially lead to a quantitative basis for filter selection, improving lesion detectability.
机译:低对比度检测任务(例如,细微的毛玻璃结节的检测)属于低信噪比(SNR)情况,受重建滤波器的选择影响很大。这项工作的目的是在低对比度测试对象(类似于球形肺结节)的SNR上检查噪声,分辨率和剂量的折衷,以潜在地改善给定结节检测任务的重建过滤器选择。为了执行这些实验,为每个可用的重建滤波器计算了调制传递函数(MTF)。接下来,使用2毫米厚,直径1厘米的球体,变化的对比度水平创建模拟信号图像。然后为每个要检查的重建滤波器计算噪声功率谱(NPS)。所使用的信噪比度量是理想的贝叶斯观测器SNR度量,它考虑了由滤波器(并由NPS描述)引入的噪声中的空间相关性。在各种重建条件下计算IBO SNR:(a)改变mAs,以使每个重建滤波器产生相同的标准偏差; (b)恒定的mAs和可变的重构滤波器; (c)一个使用不同mAs的重建滤波器。这些测量提供了一个机会,可以检查在选择重建滤波器时出现的噪声,分辨率和剂量方面在SNR方面的重要折衷,并且有可能为选择滤波器提供定量依据,从而改善病变的可检测性。

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