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Estimation theory and model parameter selection for therapeutic treatment plan optimization.

机译:估计理论和模型参数选择,以优化治疗方案。

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Treatment optimization is usually formulated as an inverse problem, which starts with a prescribed dose distribution and obtains an optimized solution under the guidance of an objective function. The solution is a compromise between the conflicting requirements of the target and sensitive structures. In this paper, the treatment plan optimization is formulated as an estimation problem of a discrete and possibly nonconvex system. The concept of preference function is introduced. Instead of prescribing a dose to a structure (or a set of voxels), the approach prioritizes the doses with different preference levels and reduces the problem into selecting a solution with a suitable estimator. The preference function provides a foundation for statistical analysis of the system and allows us to apply various techniques developed in statistical analysis to plan optimization. It is shown that an optimization based on a quadratic objective function is a special case of the formalism. A general two-step method for using a computer to determine the values of the model parameters is proposed. The approach provides an efficient way to include prior knowledge into the optimization process. The method is illustrated using a simplified two-pixel system as well as two clinical cases. The generality of the approach, coupled with promising demonstrations, indicates that the method has broad implications for radiotherapy treatment plan optimization.
机译:通常将处理优化公式化为一个反问题,该问题从规定的剂量分布开始,并在目标函数的指导下获得优化的解决方案。解决方案是目标与敏感结构的冲突需求之间的折衷。在本文中,将治疗计划优化公式化为离散的,可能是非凸的系统的估计问题。介绍了偏好函数的概念。该方法不是对结构(或一组体素)规定剂量,而是对具有不同偏好级别的剂量进行了优先排序,并将问题减少为选择具有合适估计量的解决方案。偏好功能为系统的统计分析提供了基础,并允许我们将统计分析中开发的各种技术应用于计划优化。结果表明,基于二次目标函数的优化是形式主义的特例。提出了一种使用计算机确定模型参数值的通用两步方法。该方法提供了一种将先验知识包括到优化过程中的有效方法。使用简化的两像素系统以及两个临床案例说明了该方法。该方法的普遍性,加上有前途的示范,表明该方法对放射治疗计划的优化具有广泛的意义。

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