Department of Radiation Oncology, Virginia Commonwealth University, Richmond, Virginia 23298, USA.
Med Phys. 2011 Feb;38(2):1018-27. doi: 10.1118/1.3544364.
A dosimetric margin (DM) is the margin in a specified direction between a structure and a specified isodose surface, corresponding to a prescription or tolerance dose. The dosimetric margin distribution (DMD) is the distribution of DMs over all directions. Given a geometric uncertainty model, representing inter- or intrafraction setup uncertainties or internal organ motion, the DMD can be used to calculate coverage Q, which is the probability that a realized target or organ-at-risk (OAR) dose metric D, exceeds the corresponding prescription or tolerance dose. Postplanning coverage evaluation quantifies the percentage of uncertainties for which target and OAR structures meet their intended dose constraints. The goal of the present work is to evaluate coverage probabilities for 28 prostate treatment plans to determine DMD sampling parameters that ensure adequate accuracy for postplanning coverage estimates.
Normally distributed interfraction setup uncertainties were applied to 28 plans for localized prostate cancer, with prescribed dose of 79.2 Gy and 10 mm clinical target volume to planning target volume (CTV-to-PTV) margins. Using angular or isotropic sampling techniques, dosimetric margins were determined for the CTV, bladder and rectum, assuming shift invariance of the dose distribution. For angular sampling, DMDs were sampled at fixed angular intervals w (e.g., w = 1 degree, 2 degrees, 5 degrees, 10 degrees, 20 degrees). Isotropic samples were uniformly distributed on the unit sphere resulting in variable angular increments, but were calculated for the same number of sampling directions as angular DMDs, and accordingly characterized by the effective angular increment omega eff. In each direction, the DM was calculated by moving the structure in radial steps of size delta (=0.1, 0.2, 0.5, 1 mm) until the specified isodose was crossed. Coverage estimation accuracy deltaQ was quantified as a function of the sampling parameters omega or omega eff and delta.
The accuracy of coverage estimates depends on angular and radial DMD sampling parameters omega or omega eff and delta, as well as the employed sampling technique. Target deltaQ/ < l% and OAR /deltaQ/ < 3% can be achieved with sampling parameters omega or omega eef = 20 degrees, delta =1 mm. Better accuracy (target /deltaQ < 0.5% and OAR /deltaQ < approximately 1%) can be achieved with omega or omega eff = 10 degrees, delta = 0.5 mm. As the number of sampling points decreases, the isotropic sampling method maintains better accuracy than fixed angular sampling.
Coverage estimates for post-planning evaluation are essential since coverage values of targets and OARs often differ from the values implied by the static margin-based plans. Finer sampling of the DMD enables more accurate assessment of the effect of geometric uncertainties on coverage estimates prior to treatment. DMD sampling with omega or omega eff = 10 degrees and delta = 0.5 mm should be adequate for planning purposes.
剂量学边缘(DM)是结构与指定等剂量表面之间在特定方向上的边缘,对应于处方或耐受剂量。剂量学边缘分布(DMD)是所有方向上 DM 的分布。给定几何不确定性模型,代表分次内或分次间的设置不确定性或内部器官运动,DMD 可用于计算覆盖 Q,即实现目标或危及器官(OAR)剂量度量 D 超过相应处方或耐受剂量的概率。后规划覆盖评估量化了目标和 OAR 结构满足其预期剂量约束的不确定性百分比。本研究的目的是评估 28 个前列腺治疗计划的覆盖概率,以确定确保后规划覆盖估计具有足够准确性的 DMD 采样参数。
对 28 例局部前列腺癌计划应用正态分布的分次间设置不确定性,处方剂量为 79.2Gy 和 10mm 临床靶区到计划靶区(CTV-to-PTV)边界。假设剂量分布的平移不变性,使用角度或各向同性采样技术确定 CTV、膀胱和直肠的剂量学边缘。对于角度采样,在固定的角度间隔 w(例如,w=1 度、2 度、5 度、10 度、20 度)处对 DMD 进行采样。各向同性样本在单位球上均匀分布,导致角度增量可变,但为与角度 DMD 相同数量的采样方向计算,并且由有效角度增量 omega eff 表征。在每个方向上,通过以大小为 delta(=0.1、0.2、0.5、1mm)的径向步移动结构来计算 DM,直到跨越指定的等剂量线。覆盖估计精度 deltaQ 作为采样参数 omega 或 omega eff 和 delta 的函数进行量化。
覆盖估计的准确性取决于角度和径向 DMD 采样参数 omega 或 omega eff 和 delta,以及所采用的采样技术。使用采样参数 omega 或 omega eff = 20 度,delta =1mm,可以实现目标 deltaQ/<l%和 OAR/deltaQ/<3%。使用 omega 或 omega eff = 10 度,delta = 0.5mm 可以实现更好的准确性(目标/deltaQ<0.5%和 OAR/deltaQ<大约 1%)。随着采样点数的减少,各向同性采样方法保持更好的准确性。
后规划评估的覆盖估计是必要的,因为目标和 OAR 的覆盖值通常与基于静态边缘的计划所暗示的值不同。对 DMD 进行更精细的采样可在治疗前更准确地评估几何不确定性对覆盖估计的影响。对于规划目的,omega 或 omega eff = 10 度和 delta = 0.5mm 的 DMD 采样应该足够。