Preiser K, Bortfeld T, Hartwig K, Schlegel W, Stein J
Abteilung Medizinische Physik, Deutsches Krebsforschungszentrum, Heidelberg.
Radiologe. 1998 Mar;38(3):228-34. doi: 10.1007/s001170050347.
Substantial improvement in conformal radiotherapy is possible using modulated irradiation fields. Such modulated fields may be generated even with conventional accelerators by means of individual metal compensators or with the recently available dynamic multileaf collimators (MLC). For treatment planning a new kind of planning program is required that can calculate the 2 D-intensity matrices for each photon field. At the German Cancer Research Center (Deutsches Krebsforschungszentrum) such a program has been developed under the name of "KonRad" (Conformal Radiotherapy). Although it is an independent application, it is proposed for clinical usage to supplement a planning system that is already present. So-called inverse planning differs from conventional 3 D planning, as the trial-and-error approach for finding good field parameters is nearly completely avoided. Instead, the radio-oncologist is given the chance directly to specify medically oriented criteria like the prescription dose in the target volume, maximal tolerance dose values for each organ at risk and their weighting factors. In addition, the so-called DVH optimization allows aimed, partial overdosage, especially in parallelly structured organs in order to obtain better overall planning results. Because of very fast dose calculation in connection with rapidly converging gradient optimization and an intuitive use interface, the planning is done in a comfortable and interactive manner. Using a workstation or a PC, a typical plan can be created within a few minutes.
使用调制照射野可使适形放疗有实质性改进。即使使用传统加速器,也可借助单个金属补偿器或最近可用的动态多叶准直器(MLC)产生这种调制野。对于治疗计划,需要一种新型的计划程序,它能计算每个光子野的二维强度矩阵。在德国癌症研究中心,已开发出一种名为“KonRad”(适形放疗)的程序。尽管它是一个独立的应用程序,但建议将其用于临床,以补充现有的计划系统。所谓的逆向计划不同于传统的三维计划,因为几乎完全避免了用于寻找良好射野参数的试错法。相反,放射肿瘤学家有机会直接指定以医学为导向的标准,如靶区内的处方剂量、每个危及器官的最大耐受剂量值及其权重因子。此外,所谓的剂量体积直方图(DVH)优化允许有针对性地局部过量照射,特别是在平行结构的器官中,以便获得更好的总体计划结果。由于结合快速收敛的梯度优化进行非常快速的剂量计算以及具有直观的用户界面,计划是以舒适且交互式的方式完成的。使用工作站或个人电脑,几分钟内就能创建一个典型的计划。