程晓军,张从华,刘涵,戴富友,胡传朋,刘成,姚仲甫.不同胶片剂量分析软件对伽玛刀验证胶片分析的结果比较[J].中华放射医学与防护杂志,2011,31(1):71-75
不同胶片剂量分析软件对伽玛刀验证胶片分析的结果比较
Comparison of gamma knife validation film's analysis results of different film dose analysis software
投稿时间:2009-11-30  
DOI:10.3760/cma.j.issn.0254-5098.2011.01.021
中文关键词:  伽玛刀  胶片剂量  分析软件  照射野  半影宽度
英文关键词:Gamma knife  Film dose  Analysis software  Radiation field  Penumbra region width
基金项目:
作者单位
程晓军 450052 郑州,河南省职业病防治研究院 
张从华 450052 郑州,中国测试技术研究院辐射研究所 
刘涵 450052 郑州,浙江大学电器工程学院 
戴富友 450052 郑州,河南省职业病防治研究院 
胡传朋 450052 郑州,河南省职业病防治研究院 
刘成 450052 郑州,河南省职业病防治研究院 
姚仲甫 450052 郑州,河南省职业病防治研究院 
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中文摘要:
      目的 比较不同的剂量胶片分析软件对同一台伽玛刀验证胶片的分析结果,分析产生差异的原因,探讨伽玛刀检测和结果分析过程中质量保证与质量控制的方法和措施。方法 分别用Kodak EDR2和GAFCHROMIC EBT胶片对"月亮神"伽玛刀和"伽玛星"伽玛刀进行检测验证,验证胶片用EPSON PERFECTION V750 PRO胶片扫描仪扫描成剂量分析软件要求的图像格式,用Robot Knife Adjuvant 1.09伽玛刀剂量场测量分析与验证系统和Fas-09 1.0伽玛刀射野分析软件对"月亮神"伽玛刀检测结果进行分析,用Fas-09 1.0伽玛刀射野分析软件和MATLAB 7.0对"伽玛星"伽玛刀检测结果进行分析,比较其结果差异。结果 Robot Knife Adjuvant伽玛刀剂量场测量分析与验证系统和Fas-09 伽玛刀射野分析软件对"月亮神"伽玛刀照射野尺寸(半高宽)与标称值最大偏差的分析结果显示两者差异无统计学意义(t=-2.133,P>0.05),对不同尺寸准直器的照射野半影宽度的分析结果表明两者差异有统计学意义(t=-8.154,P<0.05)。Fas-09伽玛刀射野分析软件和MATLAB对"伽玛星"伽玛刀照射野尺寸与标称值最大偏差的分析结果显示两者差异无统计学意义(t=-1.384,P>0.05),但根据国家标准,对于Φ4 mm准直器的检测结果,两种软件结论不同:Fas-09伽玛刀射野分析软件的结论是不合格,MATLAB的结论是合格;对不同尺寸准直器的照射野半影宽度的分析结果表明两者差异有统计学意义(t=3.074,P<0.05)。用Fas-09伽玛刀射野分析软件对图像进行处理,处理前后照射野尺寸与标称值最大偏差的检测结果差异无统计学意义(t=0.647,P>0.05),照射野半影宽度的检测结果差异无统计学意义(t=-0.627,P>0.05)。结论 不同的胶片剂量分析软件对同一套伽玛刀验证胶片的分析结果有一定差异,其差异根据国家标准可能会得出不同的结论。
英文摘要:
      Objective To compare the analytical result of different kinds of film dose analysis software for the same gamma knife, analyze the reasons of difference caused, and explore the measurements and means for quality control and quality assurance during testing gamma knife and analyzing its result. Methods To test the Moon Deity gamma knife with Kodak EDR2 film and γ-Star gamma knife with GAFCHROMIC EBT film, respectively. All the validation films are scanned to proper imagine format for dose analysis software by EPSON PERFECTION V750 PRO scanner. Then imagines of Moon Deity gamma knife are analyzed with Robot Knife Adjuvant 1.09 and Fas-09 1.0, and imagines of γ-Star gamma knife with Fas-09 and MATLAB 7.0. Results There is no significant difference in the maximum deviation of radiation field size (Full Width at Half Maximum, FWHM) and its nominal value between Robot Knife Adjuvant and Fas-09 for Moon Deity gamma knife (t=-2.133, P>0.05). The analysis on the radiation field’s penumbra region width of collimators which have different sizes indicated that the differences are significant (t=-8.154, P<0.05 ). There is no significant difference in the maximum deviation of FWHM and its nominal value between Fas-09 and MATLAB for γ-Star gamma knife (t=-1.384, P>0.05 ). However, following national standards, analysis of Φ4 mm width of collimators can obtain different results according to the two kinds software, and the result of Fas-09 is not qualified while MATLAB is qualified. The analysis on the radiation field’s penumbra region width of collimators which have different sizes indicates that the differences are significant (t=3.074, P<0.05 ). The imagines are processed with Fas-09. The analysis of imagine in the pre-and the post-processing indicates that there is no significant difference in the maximum deviation of FWHM and its nominal value (t=0.647, P>0.05 ), and the analytical result of the radiation field’s penumbra region width indicates that there is no significant difference as well ( t=-0.627, P>0.05 ). Conclusion The study shows that different kinds of film dose analysis software may have some differences in analysis of the same gamma knife validation film, and the results may lead to the different decisions in accordance with national standard.
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