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Noise characteristics of x-ray differential phase contrast CT

机译:X射线差分相位对比度CT的噪声特性

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The noise characteristics of x-ray differential phase contrast computed tomography (DPC-CT) were investigated. Both theoretical derivation and experimental results demonstrated that the dependence of noise variance on spa-tial resolution in DPC-CT follows an inverse linear law. This behavior distinguishes DPC-CT from conventional absorption based x-ray CT, where the noise variance varies inversely with the cube of the spatial resolution. This anomalous noise behavior in DPC-CT is due to the Hilbert filtering kernel used in the CT reconstruction algorithm, which equally weights all spatial frequency content. Additionally, we demonstrate that the noise power of DPC-CT is scaled by the inverse of spatial frequency and is highly concentrated at the low spatial frequencies, whereas conventional absorption CT increases in power at the high spatial frequencies.
机译:研究了X射线差分相位对比计算断层扫描(DPC-CT)的噪声特性。理论衍生和实验结果都表明,噪声差异对DPC-CT中的水疗分辨率的依赖性遵循逆线法。该行为将DPC-CT与基于常规的吸收的X射线CT区分开,其中噪声方差与空间分辨率的立方体相差。 DPC-CT中的这种异常噪声行为是由于CT重建算法中使用的Hilbert滤波内核,其同样重量所有空间频率内容。另外,我们证明DPC-CT的噪声功率通过空间频率的逆缩放,并且在低空间频率下高度集中,而传统的吸收CT在高空间频率下的功率增加。

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