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首页> 外文期刊>Medical Physics >Low-Z target optimization for spatial resolution improvement in megavoltage imaging.
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Low-Z target optimization for spatial resolution improvement in megavoltage imaging.

机译:低Z目标优化可提高兆伏成像中的空间分辨率。

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摘要

PURPOSE: Recently, several authors have shown contrast improvements in megavoltage portal imaging and cone-beam computed tomography using low atomic number (Z) targets. This work compliments previous studies by investigating the effects of varying different beam production parameters including target atomic number, target thickness, and incident electron energy on spatial resolution. METHODS: Target materials of beryllium, aluminum, and tungsten were investigated over a range of thicknesses between 10% and 100% of the continuous slowing down approximation range of electrons. Incident electron kinetic energies of 4.5 and 7.0 MeV were used, in conjunction with custom targets installed above the carousel of a modern radiotherapy linear accelerator. Monte Carlo simulations of the accelerator were constructed and compared to the experimental results. RESULTS: The results showed that thinner targets, as well higher incident electron energies, generally produce more favorable modulation transfer function (MTF) curves. Due to an MTF dependence of the detector system on the photon energy, the experimental results showed that low-Z targets produced superior MTF curves. Simulations showed 14.5% and 21.5% increases in f50 for the 7.0 and 4.5 MeV targets (A1; 60% R% CSDA), respectively, when moved from the carousel to the location of the clinical target. f50 values for the custom targets were compared to the clinical 6 MV beam and were found to be between 10.4% lower (4.5 MeV/W) and 15.5% higher (7.0 MeV/Be). CONCLUSIONS: Integration of low-Z external targets into the treatment head of a medical linear was achieved with only minor modifications. It was shown that reasonably high resolution images on par or better than those acquired with the clinical 6 MV beam can be achieved using external low-Z targets.
机译:目的:最近,几位作者已经证明了在使用低原子序数(Z)靶标的兆电压门户成像和锥形束计算机断层扫描中对比度的改善。这项工作通过研究改变不同的电子束产生参数(包括目标原子序数,目标厚度和入射电子能量)对空间分辨率的影响来补充以前的研究。方法:研究了铍,铝和钨的靶材,其厚度范围为电子连续减速近似范围的10%至100%。使用了4.5和7.0 MeV的入射电子动能,以及安装在现代放射疗法线性加速器转盘上方的定制目标。构造了加速器的蒙特卡洛模拟并将其与实验结果进行了比较。结果:结果表明,更薄的靶标以及更高的入射电子能量通常会产生更有利的调制传递函数(MTF)曲线。由于探测器系统对光子能量的MTF依赖性,实验结果表明,低Z靶标产生了优异的MTF曲线。模拟显示,当从圆盘传送带移到临床目标位置时,7.0和4.5 MeV目标(A1; 60%R%CSDA)的f50分别增加14.5%和21.5%。将自定义目标的f50值与临床6 MV光束进行比较,发现其降低了10.4%(4.5 MeV / W)至15.5%(7.0 MeV / Be)之间。结论:将低Z外部目标整合到医疗线性治疗头中,只需进行少量改动即可。结果表明,使用外部低Z靶可以获得与临床6 MV光束相当或更高的高分辨率图像。

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