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Modulation transfer function assessment in parallel beam and fan beam collimators with square and cylindrical holes

机译:方形和圆柱孔平行光束和扇形光束准直器的调制传递函数评估

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Objective: This study investigates modulation transfer function (MTF) in parallel beam (PB) and fan beam (FB) collimators using the Monte Carlo method with full width at half maximum (FWHM), square and circular-shaped holes, and scatter and penetration (S + P) components. Methods: A regulation similar to the lead-to-air ratio was used for both collimators to estimate output data. The hole pattern was designed to compare FB by PB parameters. The radioactive source in air and in a water phantom placed in front of the collimators was simulated using MCNP5 code. Results: The test results indicated that the square holes in PB (PBs) had better FWHM than did the cylindrical (PBc) holes. In contrast, the cylindrical holes in the FB (FBc) had better FWHM than the square holes. In general, the resolution of FBc was better than that of the PBc in air and scatter mediums. The S + P decreased for all collimators as the distance from the source to the collimator surface (z) increased. The FBc had a lower S + P than FBs, but PBc had a higher S + P than PBs. Of the FB and PB collimators with the identical hole shapes, PBs had a smaller S + P than FBs, and FBc had a smaller S + P than PBc. The MTF value for the FB was greater than for the PB and had increased spatial frequency; the FBc had higher MTF than the FBs and PB collimators. Conclusions: Estimating the FB using PB parameters and diverse hole shapes may be useful in collimator design to improve the resolution and efficiency of SPECT images.
机译:目的:本研究使用蒙特卡罗方法研究平行光束(PB)和扇形光束(FB)准直器中的调制传递函数(MTF),该模型具有半峰全宽(FWHM),方形和圆形孔以及散射和穿透(S + P)组件。方法:两个准直仪均采用类似于铅空气比的规定来估算输出数据。孔型设计用于通过PB参数比较FB。使用MCNP5代码模拟了位于准直仪前面的空气和水模中的放射源。结果:测试结果表明,PB(PBs)中的方孔具有比圆柱形(PBc)孔更好的FWHM。相反,FB(FBc)中的圆柱孔具有比方形孔更好的FWHM。通常,在空气和散射介质中,FBc的分辨率优于PBc。随着从光源到准直仪表面(z)的距离增加,所有准直仪的S + P都减小。 FBc具有比FB低的S + P,但是PBc具有比PB高的S +P。在具有相同孔形状的FB和PB准直器中,PB的S + P比FB小,而FBc的S + P比PBc小。 FB的MTF值大于PB的MTF值,并且空间频率增加。 FBc具有比FB和PB准直仪更高的MTF。结论:使用PB参数和不同的孔形状估计FB可能对准直仪设计中有用,以提高SPECT图像的分辨率和效率。

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