首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Comparison of sliced lungs with whole lung sets for a torso phantom measured with Ge detectors using Monte Carlo simulations (MCNP).
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Comparison of sliced lungs with whole lung sets for a torso phantom measured with Ge detectors using Monte Carlo simulations (MCNP).

机译:比较肺全肺片集躯干幻影与通用电气测量探测器通过蒙特卡罗模拟(MCNP)。

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摘要

Lung counters are generally used to measure low energy photons (<100 keV). They are usually calibrated with lung sets that are manufactured from a lung tissue substitute material that contains homogeneously distributed activity; however, it is difficult to verify either the activity in the phantom or the homogeneity of the activity distribution without destructive testing. Lung sets can have activities that are as much as 25% different from the expected value. An alternative method to using whole lungs to calibrate a lung counter is to use a sliced lung with planar inserts. Experimental work has already indicated that this alternative method of calibration can be a satisfactory substitute. This work has extended the experimental study by the use of Monte Carlo simulation to validate that sliced and whole lungs are equivalent. It also has determined the optimum slice thicknesses that separate the planar sources in the sliced lung. Slice thicknesses have been investigated in the range of 0.5 cm to 9.0 cmand at photon energies from 17 keV to 1,000 keV. Results have shown that there is little difference between sliced and whole lungs at low energies providing that the slice thickness is 2.0 cm or less. As the photon energy rises the slice thickness can increase substantially with no degradation on equivalence.
机译:肺计数器通常用来测量低(< 100 keV能量光子)。校准与肺集生产从肺组织替代材料活动包含均匀分布;然而,很难验证的活动在《幽灵或的同质性活动分布没有破坏性的测试。多达25%的期望值。另一种方法使用全肺校准肺计数器是使用肺切片与平面插入。已经表明,这种替代方法校准可以令人满意的替代品。这项工作已经扩展的试验研究使用蒙特卡罗模拟来验证切片和整个肺是等价的。还确定了最佳切片厚度独立的平面切片的来源肺。0.5厘米到9.0的范围cmand光子从17 keV 1000 keV能量。表明,几乎没有区别切片和全肺在低能量下提供片厚度是2.0厘米或更少。光子能量增加切片厚度大幅增加,没有退化等价。

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