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高能光子束中圆柱形电离室的扰动校正因子。

The perturbation correction factors for cylindrical ionization chambers in high-energy photon beams.

作者信息

Yoshiyama Fumiaki, Araki Fujio, Ono Takeshi

机构信息

Graduate School of Health Sciences, Kumamoto University, 4-24-1 Kuhonji, Kumamoto, Japan.

出版信息

Radiol Phys Technol. 2010 Jul;3(2):159-64. doi: 10.1007/s12194-010-0091-0. Epub 2010 Apr 22.

Abstract

In this study, we calculated perturbation correction factors for cylindrical ionization chambers in high-energy photon beams by using Monte Carlo simulations. We modeled four Farmer-type cylindrical chambers with the EGSnrc/Cavity code and calculated the cavity or electron fluence correction factor, P (cav), the displacement correction factor, P (dis), the wall correction factor, P (wall), the stem correction factor, P (stem), the central electrode correction factor, P (cel), and the overall perturbation correction factor, P (Q). The calculated P (dis) values for PTW30010/30013 chambers were 0.9967 +/- 0.0017, 0.9983 +/- 0.0019, and 0.9980 +/- 0.0019, respectively, for (60)Co, 4 MV, and 10 MV photon beams. The value for a (60)Co beam was about 1.0% higher than the 0.988 value recommended by the IAEA TRS-398 protocol. The P (dis) values had a substantial discrepancy compared to those of IAEA TRS-398 and AAPM TG-51 at all photon energies. The P (wall) values were from 0.9994 +/- 0.0020 to 1.0031 +/- 0.0020 for PTW30010 and from 0.9961 +/- 0.0018 to 0.9991 +/- 0.0017 for PTW30011/30012, in the range of (60)Co-10 MV. The P (wall) values for PTW30011/30012 were around 0.3% lower than those of the IAEA TRS-398. Also, the chamber response with and without a 1 mm PMMA water-proofing sleeve agreed within their combined uncertainty. The calculated P (stem) values ranged from 0.9945 +/- 0.0014 to 0.9965 +/- 0.0014, but they are not considered in current dosimetry protocols. The values were no significant difference on beam qualities. P (cel) for a 1 mm aluminum electrode agreed within 0.3% with that of IAEA TRS-398. The overall perturbation factors agreed within 0.4% with those for IAEA TRS-398.

摘要

在本研究中,我们通过蒙特卡罗模拟计算了高能光子束中圆柱形电离室的扰动校正因子。我们使用EGSnrc/Cavity代码对四个Farmer型圆柱形电离室进行建模,并计算了腔室或电子注量校正因子P(cav)、位移校正因子P(dis)、壁校正因子P(wall)、杆校正因子P(stem)、中心电极校正因子P(cel)以及整体扰动校正因子P(Q)。对于PTW30010/30013电离室,在钴 -60、4兆伏和10兆伏光子束下计算得到的P(dis)值分别为0.9967±0.0017、0.9983±0.0019和0.9980±0.0019。钴 -60束的值比国际原子能机构TRS - 398协议推荐的0.988值高约1.0%。在所有光子能量下,P(dis)值与国际原子能机构TRS - 398和美国医学物理师协会TG - 51的相比存在显著差异。对于PTW30010,P(wall)值在钴 -60至10兆伏范围内为0.9994±0.0020至1.0031±0.0020;对于PTW30011/30012,P(wall)值为0.9961±0.0018至0.9991±0.0017。PTW30011/30012的P(wall)值比国际原子能机构TRS - 398的低约0.3%。此外,有和没有1毫米厚聚甲基丙烯酸甲酯防水套时的电离室响应在其合成不确定度范围内一致。计算得到的P(stem)值范围为0.9945±0.0014至0.9965±0.0014,但当前剂量学协议中未考虑这些值。这些值在射束质方面没有显著差异。对于1毫米厚铝电极的P(cel)与国际原子能机构TRS - 398的在0.3%范围内一致。整体扰动因子与国际原子能机构TRS - 398的在0.4%范围内一致。

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