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通过单个动态吸收器进行一维组织缺损补偿的临床应用中的剂量计算和剂量测定测试。

Dose calculation and dosimetry tests for clinical implementation of 1D tissue-deficit compensation by a single dynamic absorber.

作者信息

Corletto D, Fiorino C, Cattaneo G M, Mangili P, Calandrino R

机构信息

Servizio di Fisica Sanitaria, H.S. Raffaele, Milan, Italy.

出版信息

Radiother Oncol. 1998 Apr;47(1):53-62. doi: 10.1016/s0167-8140(97)00223-5.

Abstract

BACKGROUND AND PURPOSE

In this study the possibilities for implementing 1D tissue-deficit compensation techniques by a dynamic single absorber were investigated. This research firstly involved a preliminary examination on the accuracy of a pencil beam-based algorithm, implemented for irregularly shaped photon beams in our 3D treatment planning system (TPS) (Cadplan 2.7, Varian-Dosetek Oy), in calculating dose distributions delivered in ID non-uniform fields. Once the reliability of the pencil beam (PB) algorithm for dose calculations in non-uniform beams was verified, we proceeded to test the feasibility of tissue-deficit compensation using our single absorber modulator. As an example, we considered a mantle field technique.

MATERIALS AND METHODS

To evaluate the accuracy of the method employed in calculating dose distributions delivered in 1D non-uniform fields, three different fluence profiles, which could be considered as a small sample representative of clinically relevant applications, were selected. The incident non-uniform fluences were simulated by the sum of simple blocked fields (i.e. with rectangular 'strip' blocks, one per beam) properly weighed by the 'modulation factors' Fi, defined in each interval of the subdivided profile as the ratio between the desired fluence and the open field fluence. Depth dose distributions in a cubic phantom were then calculated by the TPS and compared with the corresponding doses (at 5 and 10 cm acrylic depths) delivered by the single absorber modulation system. In the present application, the absorber speed profile able to compensate for the tissue deficit along the cranio-caudal direction and then homogenizing the dose distribution on a 'midline' isocentric plane with sufficient accuracy can be directly derived from anatomic data, such as the SSDs (source-skin distances) along the patient contour. The compensation can be verified through portal dosimetry techniques (using a traditional port film system).

RESULTS

The technique was tested in isocentric conditions on the humanoid RANDO phantom in a clinically suitable situation. The agreement between expected/calculated and measured incident/exit dose profiles was found to be within 4%, with deviations generally around 1-2%. As for the PB accuracy investigation for dose calculations in non-uniform fields, calculated versus measured dose profiles were found to be in good agreement, indicating a satisfactory accuracy of the method employed for dose calculation in 1D non-uniform photon beams. A better performance should be expected if the incident fluences could be directly inserted in the TPS.

CONCLUSIONS

The results show that the proposed technique should be sufficiently reliable for clinical application. The main advantages are its simplicity and the possibility of application on Linacs which have no complex options for dynamic control of collimators.

摘要

背景与目的

本研究探讨了使用动态单吸收器实施一维组织缺损补偿技术的可能性。本研究首先对基于笔形束的算法在我们的三维治疗计划系统(TPS)(Cadplan 2.7,Varian-Dosetek Oy)中用于不规则形状光子束计算剂量分布的准确性进行了初步检查,该算法用于计算一维非均匀野中传递的剂量分布。一旦验证了笔形束(PB)算法在非均匀束剂量计算中的可靠性,我们便着手测试使用我们的单吸收器调制器进行组织缺损补偿的可行性。例如,我们考虑了斗篷野技术。

材料与方法

为评估用于计算一维非均匀野中传递的剂量分布所采用方法的准确性,选择了三种不同的注量分布,可将其视为临床相关应用的一个小样本代表。通过简单阻挡野(即带有矩形“条带”块,每个射束一个)的总和来模拟入射非均匀注量,并由“调制因子”Fi进行适当加权,在细分分布的每个区间中,调制因子Fi定义为所需注量与开放野注量之比。然后由TPS计算立方模体中的深度剂量分布,并与单吸收器调制系统传递的相应剂量(在5和10 cm丙烯酸深度处)进行比较。在本应用中,能够沿头脚方向补偿组织缺损并进而以足够的精度使“中线”等中心平面上的剂量分布均匀化的吸收器速度分布可直接从解剖数据得出,例如沿患者轮廓的源皮距(SSDs)。可通过射野剂量测定技术(使用传统的射野胶片系统)来验证补偿情况。

结果

该技术在临床适用情况下在人形RANDO模体的等中心条件下进行了测试。发现预期/计算的与测量的入射/出射剂量分布之间的一致性在4%以内,偏差通常在1 - 2%左右。至于非均匀野剂量计算的PB准确性研究,发现计算的与测量的剂量分布吻合良好,表明用于一维非均匀光子束剂量计算的方法具有令人满意的准确性。如果能将入射注量直接输入TPS,预计会有更好表现。

结论

结果表明,所提出的技术在临床应用中应具有足够的可靠性。其主要优点是简单,并且有可能应用于没有复杂准直器动态控制选项的直线加速器。

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