首页> 外文期刊>Physics in medicine and biology. >Conversion of measured percentage depth dose to tissue maximum ratio values in stereotactic radiotherapy
【24h】

Conversion of measured percentage depth dose to tissue maximum ratio values in stereotactic radiotherapy

机译:在立体定向放疗中将测得的深度剂量百分比转换为组织最大比率值

获取原文
获取原文并翻译 | 示例
           

摘要

For many treatment planning systems tissue maximum ratios (TMR) are required as input. These tissue maximum ratios can be measured with a 3D computer-controlled water phantom; however, a TMR measurement option is not always available on such a system. Alternatively TMR values can be measured 'manually' by lowering the detector and raising the water phantom with the same distance, but this makes TMR measurements time consuming. Therefore we have derived TMR values from percentage depth dose (PDD) curves. Existing conversion methods express TMR values in terms of PDD, phantom scatter factor (S_p), and inverse square law. For stereotactic treatments circular fields ranging from 5-50 mm (19 cones) are used with the treatment planning system XKnife (Radionics). The calculation of TMR curves for this range is not possible with existing methods. This is because PDD curves of field sizes smaller than 5 mm (smallest cone size) are needed, but these cones are not provided. Besides, for field sizes smaller than 40 mm, the phantom scatter factor is difficult to determine and will introduce significant errors. To overcome these uncertainties, an alternative method has been developed to obtain TMR values from PDD data, where absolute doses are expressed in terms of PDD, total scatter factor and inverse square law. For each depth, the dose as a function of field size is fitted to a double exponential function. Then the TMR is calculated by taking the ratio of this function at the depth of interest and the reference depth, for the correct field size. For all 19 cones the total scatter factor and PDDs have been measured with a shielded diode in water for a 6 MV photon beam. Calculated TMR curves are compared with TMR values measured with a diode. The agreement is within 2%. Therefore this relatively simple conversion method meets the required accuracy for daily dose calculation in stereotactic radiotherapy. In principle this method could also be applied for other small field sizes such as those formed with a mini multileaf collimator.
机译:对于许多治疗计划系统,需要组织最大比率(TMR)作为输入。这些组织的最大比例可以使用3D计算机控制的水模来测量。但是,TMR测量选项并非始终在此类系统上可用。另外,可以通过降低检测器并以相同的距离抬高水模来“手动”测量TMR值,但这使TMR测量很耗时。因此,我们从百分比深度剂量(PDD)曲线得出了TMR值。现有的转换方法以PDD,幻像散布因子(S_p)和平方反比来表示TMR值。对于立体定向治疗,治疗计划系统XKnife(Radionics)使用范围为5-50 mm(19锥)的圆形视场。现有方法无法计算该范围的TMR曲线。这是因为需要场大小小于5 mm(最小圆锥尺寸)的PDD曲线,但未提供这些圆锥。此外,对于小于40 mm的视场,幻像散射因子难以确定,并且会引入明显的误差。为了克服这些不确定性,已经开发了一种替代方法,可从PDD数据获得TMR值,其中绝对剂量以PDD,总散射因子和平方反比表示。对于每个深度,将剂量作为场大小的函数拟合为双指数函数。然后,针对正确的场大小,通过考虑感兴趣深度处的该函数与参考深度的比率来计算TMR。对于所有19个视锥,总的散射因子和PDD已用水中的屏蔽二极管测量了6 MV光子束。将计算出的TMR曲线与二极管测得的TMR值进行比较。协议在2%以内。因此,这种相对简单的转换方法可以满足立体定向放射治疗中每日剂量计算所需的精度。原则上,该方法也可以应用于其他小的场尺寸,例如由微型多叶准直仪形成的场尺寸。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号