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首页> 外文期刊>Physics in medicine and biology. >Development and validation of MCNP4C-based Monte Carlo simulator for fan- and cone-beam x-ray CT.
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Development and validation of MCNP4C-based Monte Carlo simulator for fan- and cone-beam x-ray CT.

机译:基于MCNP4C的Monte Carlo仿真器的开发和验证,该仿真器用于扇形和锥束X射线CT。

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摘要

An x-ray computed tomography (CT) simulator based on the Monte Carlo N-particle radiation transport computer code (MCNP4C) was developed for simulation of both fan- and cone-beam CT scanners. A user-friendly interface running under Matlab 6.5.1 creates the scanner geometry at different views as MCNP4C's input file. The full simulation of x-ray tube, phantom and detectors with single-slice, multi-slice and flat detector configurations was considered. The simulator was validated through comparison with experimental measurements of different nonuniform phantoms with varying sizes on both a clinical and a small-animal CT scanner. There is good agreement between the simulated and measured projections and reconstructed images. Thereafter, the effects of bow-tie filter, phantom size and septa length on scatter distribution in fan-beam CT were studied in detail. The relative difference between detected total, primary and scatter photons for septa length varying between 0 and 95 mm is 11.2%, 1.9% and 84.1%, respectively, whereas the scatter-to-primary ratio decreases by 83.8%. The developed simulator is a powerful tool for evaluating the effect of physical, geometrical and other design parameters on scanner performance and image quality in addition to offering a versatile tool for investigating potential artefacts and correction schemes when using CT-based attenuation correction on dual-modality PET/CT units.
机译:开发了一种基于蒙特卡罗N粒子辐射传输计算机代码(MCNP4C)的X射线计算机断层摄影(CT)模拟器,用于模拟扇形和锥束CT扫描仪。在Matlab 6.5.1下运行的用户友好界面可在不同视图下创建扫描仪几何图形,作为MCNP4C的输入文件。考虑了单层,多层和平面探测器配置的X射线管,体模和探测器的完整仿真。通过与临床和小动物CT扫描仪上不同大小的不同不均匀幻像的实验测量值进行比较,对模拟器进行了验证。在模拟和测量的投影与重建的图像之间有很好的一致性。此后,详细研究了蝴蝶结滤波器,幻影尺寸和隔片长度对扇形束CT散射分布的影响。间隔长度在0到95 mm之间变化的检测到的总光子,初级光子和散射光子之间的相对差分别为11.2%,1.9%和84.1%,而散射对主光子的比率降低了83.8%。开发的模拟器是评估物理,几何和其他设计参数对扫描仪性能和图像质量的影响的强大工具,此外,当在基于CT的双模态上使用衰减校正时,它还提供了用于调查潜在伪像和校正方案的多功能工具。 PET / CT单元。

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