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首页> 外文期刊>Medical Physics >Attenuation of 4-20 MV x rays by a new compensator material of cement.
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Attenuation of 4-20 MV x rays by a new compensator material of cement.

机译:新型的水泥补偿材料可衰减4-20 MV x射线。

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The properties of a new cement based material for production of compensators are presented. Broad beam attenuation of 4-20 MV x rays by slabs of the material have been measured at various field sizes and depths in a large water phantom. For comparison the attenuation of aluminum was determined at some of the photon energies and it was found that the attenuation properties of the cement based material are very close to those of aluminum. At 6 and 18 MV, a comparison of different phantoms for attenuation measurements was carried out. For this investigation the ionization chamber was placed in a 50x50x50 cm3 water phantom, a 20x20x20 cm3 water equivalent plastic phantom, and a cylindrical mini-phantom. Agreement was obtained between the measurements in the large water phantom and in the water equivalent plastic phantom. The measurements carried out with the mini-phantom in a 6 MV x-ray beam gave a higher transmission versus absorber thickness than the transmission found with the water phantom resulting in a lower value of the effective attenuation coefficient. At 18 MV x rays the difference between the measurements in the water phantom and in the mini-phantom was less. This shows that a water equivalent plastic phantom with an area comparable with the largest field size applied can be used for measurements of effective attenuation coefficients, whereas a mini-phantom cannot be used directly, especially at low photon energies.
机译:介绍了用于补偿剂生产的新型水泥基材料的性能。在大型水体模型中,已在各种场大小和深度下测量了材料平板对4-20 MV x射线的宽光束衰减。为了比较,在一些光子能量下确定铝的衰减,并且发现水泥基材料的衰减特性与铝非常接近。在6和18 MV下,比较了不同模型的衰减测量值。为了进行这项研究,将电离室放置在50x50x50 cm3的水体模,20x20x20 cm3的水当量塑料体模和圆柱形微型体模中。在大型水体模和等效水体模中的测量值之间取得了一致。用微型体模在6 MV X射线束中进行的测量得出的透射率比吸收体厚度要高,而水模体的透射率却低,导致有效衰减系数的值降低。在18 MV x射线下,水体模和小型体模中的测量值之间的差异较小。这表明,面积相当于可应用的最大场尺寸的水等效塑料体模可用于测量有效衰减系数,而微型体模不能直接使用,尤其是在低光子能量下。

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