Kanematsu Nobuyuki
Department of Accelerator and Medical Physics, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage-ku, Chiba 263-8555, Japan.
Phys Med Biol. 2009 Mar 7;54(5):N67-73. doi: 10.1088/0031-9155/54/5/N01. Epub 2009 Jan 30.
Dose calculation for radiotherapy with protons and heavier ions deals with a large volume of path integrals involving a scattering power of body tissue. This work provides a simple model for such demanding applications. There is an approximate linearity between RMS end-point displacement and range of incident particles in water, empirically found in measurements and detailed calculations. This fact was translated into a simple linear formula, from which the scattering power that is only inversely proportional to the residual range was derived. The simplicity enabled the analytical formulation for ions stopping in water, which was designed to be equivalent with the extended Highland model and agreed with measurements within 2% or 0.02 cm in RMS displacement. The simplicity will also improve the efficiency of numerical path integrals in the presence of heterogeneity.
质子和重离子放射治疗的剂量计算涉及大量包含人体组织散射能力的路径积分。这项工作为这类高要求的应用提供了一个简单模型。在测量和详细计算中凭经验发现,均方根终点位移与水中入射粒子射程之间存在近似线性关系。这一事实被转化为一个简单的线性公式,由此推导出仅与剩余射程成反比的散射能力。这种简单性使得能够对离子在水中的停止进行解析公式化,该公式设计为与扩展的高地模型等效,并且在均方根位移方面与测量结果的误差在2%或0.02厘米以内。这种简单性还将提高存在不均匀性时数值路径积分的效率。