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窄型多叶准直器定义的光子射野治疗计划的理论与实验验证

Theoretical and experimental validation of treatment planning for narrow MLC defined photon fields.

作者信息

Lydon J M

机构信息

Radiation Oncology Victoria, 132 Grey Street, East Melbourne, VIC 3002, Australia.

出版信息

Phys Med Biol. 2005 Jun 7;50(11):2701-14. doi: 10.1088/0031-9155/50/11/018. Epub 2005 May 18.

Abstract

In intensity modulated radiotherapy (IMRT), the use of small fields where electronic equilibrium does not exist is becoming more common and presents difficulties for both the measurement and calculation of dose to such fields. Pinnacle(3) (Version 6.2b) allows the user to specify a total minimum open area for each IMRT segment, which can result in sub-segments with widths of only a few millimetres. The dose for 6 MV narrow MLC defined fields between 0.1 and 3 cm in width was investigated using Kodak extended dose range film (EDR2), ionization chamber and MOSFET dosimeters and BEAMnrc Monte Carlo calculations, and these results were used to determine the accuracy of Pinnacle(3) dose calculation for narrow MLC segments. The incident fluences calculated by Pinnacle(3) and BEAMnrc were also compared. Results show that if a fluence and dose grid resolution of 0.1 cm is used, Pinnacle(3) dose agrees with the EDR2 and BEAMnrc to within 5% for field widths between 0.5 and 3.0 cm. However, Pinnacle(3) will underestimate the dose by up to 45% for the 0.1 and 0.3 cm wide fields. It is shown that the source size in the Pinnacle(3) beam model and both the fluence and dose grid resolutions have a significant effect on the accuracy of dose calculation for field widths of 1.0 cm and less. For single segment fields, Pinnacle(3) agrees with EDR2 and BEAMnrc to within 0.1 cm at the field edges and underestimates the penumbra width by up to 0.08 cm. Results for multiple segment fields showed that an MLC transmission of 1.7% and a 0.06 cm inward shift of MLCs prior to beam delivery gave the closest agreement between Pinnacle(3) and measurement. The multiple segment fields also revealed a pattern of low dose troughs of up to 7% in the Pinnacle(3) dose profiles.

摘要

在调强放射治疗(IMRT)中,使用不存在电子平衡的小射野变得越来越普遍,这给此类射野的剂量测量和计算都带来了困难。Pinnacle(3)(版本6.2b)允许用户为每个IMRT射野指定一个总的最小开放面积,这可能导致子射野的宽度只有几毫米。使用柯达扩展剂量范围胶片(EDR2)、电离室和MOSFET剂量仪以及BEAMnrc蒙特卡罗计算方法,研究了宽度在0.1至3厘米之间的6兆伏窄多叶准直器(MLC)定义射野的剂量,这些结果用于确定Pinnacle(3)对窄MLC射野剂量计算的准确性。还比较了Pinnacle(3)和BEAMnrc计算的入射注量。结果表明,如果使用0.1厘米的注量和剂量网格分辨率,对于宽度在0.5至3.0厘米之间的射野,Pinnacle(3)剂量与EDR2和BEAMnrc的结果在5%以内相符。然而,对于宽度为0.1和0.3厘米的射野,Pinnacle(3)会低估剂量高达45%。结果表明,Pinnacle(3)射束模型中的源尺寸以及注量和剂量网格分辨率对宽度为1.0厘米及以下射野的剂量计算准确性有显著影响。对于单射野,Pinnacle(3)在射野边缘与EDR2和BEAMnrc的结果在0.1厘米以内相符,并且低估半影宽度高达0.08厘米。多射野的结果表明,在射束输出前,MLC的1.7%透射率和0.06厘米向内偏移使得Pinnacle(3)与测量结果最为接近。多射野还揭示了Pinnacle(3)剂量分布中存在高达7%的低剂量谷值模式。

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