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首页> 外文期刊>Medical Physics >Dose-volume histograms computation comparisons using conventional methods and optimized fast Fourier transforms algorithms for brachytherapy.
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Dose-volume histograms computation comparisons using conventional methods and optimized fast Fourier transforms algorithms for brachytherapy.

机译:使用常规方法和优化的快速傅里叶变换算法进行近距离放射治疗的剂量-体积直方图计算比较。

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摘要

In anatomy based optimization procedures for large volume implants the calculation of dose-volume histograms (DVH) accounts for the major part of the time involved and can be as long as a few hours. This time is proportional to the number of seeds or source dwell positions required for the implant. A procedure for the calculation of brachytherapy seed dose distribution calculation employing fast Fourier transforms (FFT) and the convolution theorem has been described by others and was supposed to significantly improve the speed of the dose distribution computation. Using new significantly improved FFT algorithms and various other optimization techniques we have compared the calculated differential and integral DVHs in high dose rate (HDR) brachytherapy with a single stepping source using actual clinical implants. This is so that we could assess the efficiency and accuracy of the FFT method with that of conventional methods. Our results showed that the FFT based method of calculating DVHs in brachytherapy is comparable in speed with conventional dose calculation methods, but only for implants with more than 287 sources. It is therefore of limited practical use even for large implants. This result is in direct opposition to the claim by other authors.
机译:在大体积植入物的基于解剖结构的优化程序中,剂量-体积直方图(DVH)的计算占了大部分时间,可能长达几个小时。此时间与植入物所需的种子数或源停留位置成正比。其他人已经描述了使用快速傅里叶变换(FFT)和卷积定理进行近距离治疗种子剂量分布计算的过程,该过程可以显着提高剂量分布计算的速度。使用显着改进的新FFT算法和各种其他优化技术,我们已将使用实际临床植入物的高剂量率(HDR)近距离放射疗法与单个步进源进行的差分和积分DVH进行了比较。这样,我们就可以评估FFT方法的效率和准确性。我们的结果表明,在近距离放射治疗中基于FFT的DVHs计算方法在速度上与传统剂量计算方法相当,但仅适用于具有287个以上来源的植入物。因此,即使对于大型植入物,其实际应用也受到限制。这一结果与其他作者的主张直接相反。

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