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Image quality parameters in brain imaging with fan-beam collimator: a Monte Carlo study on radiation scattering effects

机译:粉丝准直器脑成像中的图像质量参数:辐射散射效应的蒙特卡罗研究

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摘要

The effects of scattered radiation on image quality in brain imaging with fan-beam collimator were quantitatively evaluated. A commercial gamma camera in conjunction with a fan-beam collimator was simulated using MCNPX code. The effects of radiation scattering on image quality were evaluated by employing the Snyder phantom and comparing the system response to an isotropic 99mTc point source in both spatial and frequency domains. The trans-axial spatial resolution of the obtained point spread functions were studied in the spatial domain, at source-to-coHimator distances of 2, 4, 6, 8, and 10 cm. At the same distances, the spatial frequencies at 90% (SF09) and 10% (SF0.1) of the maximum modulation transfer function were considered in the frequency domain. The maximum difference between the obtained full width at half-maximum in presence and absence of phantom was approximately 5%, while this difference was 14% for full width at tenth maximum. An analysis of system response in the frequency domain demonstrated a large difference of 43% between the obtained SF0.9 values in presence and absence of phantom. In contrast, this difference was a mere-2% between the obtained SF0.1 values. Radiation scattering mainly degrades the image contrast resolution and has no considerable effect on the spatial resolution of the images acquired by the fan-beam collimator. Accordingly, the impact of radiation scattering on image quality was more obvious in frequency domain, and SF0.9 can be considered as an operational parameter for the quantitative assessment of radiation scattering effects on image quality in the frequency domain.
机译:定量评价散射辐射对脑成像中图像质量的影响。使用MCNPX代码模拟了与扇形束准直器配合使用的商用伽马相机。通过采用苯乙串幻像并将系统响应与空间和频率畴中的各向同性99MTC点源进行比较来评估辐射散射对图像质量的影响。在空间域中研究了所获得的点扩散功能的跨轴向空间分辨率,在2,4,6,8和10cm的源极到同轴距离。在相同的距离处,在频域中考虑了90%(SF09)和最大调制传递函数的10%(SF0.1)的空间频率。在存在和不存在虚线的半最大值下获得的全宽之间的最大差异约为5%,而这种差异为14%,最大宽度为14%。频域中的系统响应分析显示在存在和不存在虚拟物中获得的SF0.9值之间的43%差异。相反,这种差异在获得的SFO1值之间仅为2%。辐射散射主要降低图像对比度分辨率,对风扇束准直器获取的图像的空间分辨率没有相当大的影响。因此,辐射散射对图像质量的影响在频域中更明显,并且SF0.9可以被认为是用于定量评估辐射散射对频域图像质量的定量评估的操作参数。

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