论文标题

用于计算$^{177} $ lu计算体素S值的分析模型

An analytic model to calculate Voxel S-Values for $^{177}$Lu

论文作者

Pistone, Daniele, Auditore, Lucrezia, Italiano, Antonio, Baldari, Sergio, Amato, Ernesto

论文摘要

目标:$^{177} $ lu是目标放射性核素疗法和Theranostics中使用最多的同位素之一,对于此类过程,3D内部剂量学非常重要。 Voxel S值(VSV)方法被广泛用于此目的,但VSV可用于有限数量的Voxel尺寸。这项工作的目的是开发一个分析模型,以计算$^{177} $ lu-vsvs以任何立方素化的实际兴趣几何形状。方法:使用工具包Gamos实施了蒙特卡洛(MC)模拟,以评估来自$^{177} $ lu均匀分布在中央体素中的软组织中的Voxelized几何形状的VSV。考虑了九个几何设置,其中包含15x15x15立方体体素,其范围为2 mm至6 mm,步骤为0.5 mm。对于每个L,将计算为“归一化半径”的函数计算的VSV,RN = R/L(r =距源体素中心的距离),拟合了参数函数。然后将参数作为L的函数的依赖项拟合适当的功能,以实现在上述范围内的任何L中推论$^{177} $ LU-VSVS的模型。主要结果:与文献数据进行验证数据相比,MC衍生的VSV是令人满意的,并且使用分析模型计算的VSV与RN $ \ leq $ 2的2 \%以内的MC相比,RN $ \%$ 2和RN> 2的6 \%以内。有意义:提出的模型可以轻松计算,并具有简单的Cubs Duus,任何Cubs Duus of $^$。实际兴趣的体素几何形状,避免了实施临时MC模拟的必要性,以估算文献数据中无法使用的特定体素维度的VSV。

Objective: $^{177}$Lu is one of the most employed isotopes in targeted radionuclide therapies and theranostics, and 3D internal dosimetry for such procedures has great importance. Voxel S-Values (VSVs) approach is widely used for this purpose, but VSVs are available for a limited number of voxel dimensions. The aim of this work is to develop an analytic model for the calculation of $^{177}$Lu-VSVs in any cubic voxelized geometry of practical interest. Approach: Monte Carlo (MC) simulations were implemented with the toolkit GAMOS to evaluate VSVs in voxelized geometries of soft tissue from a source of $^{177}$Lu homogeneously distributed in the central voxel. Nine geometric setups, containing 15x15x15 cubic voxels of sides l ranging from 2 mm to 6 mm, in steps of 0.5 mm, were considered. For each l, the VSVs computed as a function of the "normalized radius", Rn = R/l (with R = distance from the center of the source voxel), were fitted with a parametric function. The dependencies of the parameters as a function of l were then fitted with appropriate functions, in order to implement the model for deducing $^{177}$Lu-VSVs for any l within the aforementioned range. Main results: The MC-derived VSVs were satisfactorily compared with literature data for validation, and the VSVs computed with the analytic model agree with the MC ones within 2\% for Rn $\leq$ 2 and within 6\% for Rn > 2. Significance: The proposed model enables the easy and fast calculation, with a simple spreadsheet, of $^{177}$Lu-VSVs in any cubic voxelized geometry of practical interest, avoiding the necessity of implementing ad-hoc MC simulations to estimate VSVs for specific voxel dimensions not available in literature data.

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