Department for Radiation Oncology, University Hospital of Heidelberg, Heidelberg, Germany.
Radiother Oncol. 2013 May;107(2):227-33. doi: 10.1016/j.radonc.2013.03.010. Epub 2013 Apr 16.
To present a beam arrangement specific approach for PTV definition in ion beam therapy.
By means of a Monte Carlo error propagation analysis a criteria is formulated to assess whether a voxel is safely treated. Based on this a non-isotropical expansion rule is proposed aiming to minimize the impact of uncertainties on the dose delivered.
The method is exemplified in two cases: a Head and Neck case and a Prostate case. In both cases the modality used is proton beam irradiation and the sources of uncertainties taken into account are positioning (set up) errors and range uncertainties. It is shown how different beam arrangements have an impact on plan robustness which leads to different target expansions necessary to assure a predefined level of plan robustness. The relevance of appropriate beam angle arrangements as a way to minimize uncertainties is demonstrated.
A novel method for PTV definition in on beam therapy is presented. The method show promising results by improving the probability of correct dose CTV coverage while reducing the size of the PTV volume. In a clinical scenario this translates into an enhanced tumor control probability while reducing the volume of healthy tissue being irradiated.
提出一种适用于离子束治疗中 PTV 定义的束流布置特定方法。
通过蒙特卡罗误差传播分析,制定了一个评估体素是否可以安全治疗的标准。在此基础上,提出了一种非各向同性扩展规则,旨在最大限度地减少不确定性对剂量分布的影响。
该方法在两个病例中得到了举例说明:头颈部病例和前列腺病例。在这两种情况下,所使用的模式都是质子束照射,考虑的不确定性源包括定位(设置)误差和射程不确定性。结果表明,不同的束流布置对计划稳健性有影响,这导致了为确保预定的计划稳健性水平所需的不同靶区扩展。还证明了适当的射束角度布置作为最小化不确定性的一种方法的相关性。
提出了一种新的适用于在线束治疗中的 PTV 定义方法。该方法通过提高正确覆盖 CTV 剂量的概率,同时减小 PTV 体积,显示出有希望的结果。在临床情况下,这可以提高肿瘤控制概率,同时减少照射的健康组织体积。