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Demonstration of scan path optimization in proton therapy.

机译:质子治疗中扫描路径优化的演示。

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A three-dimensional (3D) intensity modulated proton therapy treatment plan to be delivered by magnetic scanning may comprise thousands of discrete beam positions. This research presents the minimization of the total scan path length by application of a fast simulated annealing (FSA) optimization algorithm. Treatment plans for clinical prostate and head and neck cases were sequenced for continuous raster scanning in two ways, and the resulting scan path lengths were compared: (1) A simple back-and-forth, top-to-bottom (zigzag) succession, and (2) an optimized path produced as a solution of the FSA algorithm. Using a first approximation of the scanning dynamics, the delivery times for the scan sequences before and after path optimization were calculated for comparison. In these clinical examples, the FSA optimization shortened the total scan path length for the 3D target volumes by approximately 13%-56%. The number of extraneous spilled particles was correspondingly reduced by about 13%-54% due to the more efficient scanning maps that eliminated multiple crossings through regions of zero fluence. The relative decrease in delivery time due to path length minimization was estimated to be less than 1%, due to both a high scanning speed and time requirements that could not be altered by optimization (e.g., time required to change the beam energy). In a preliminary consideration of application to rescanning techniques, the decrease in delivery time was estimated to be 4%-20%.
机译:通过磁扫描递送的三维(3D)强度调制质子疗法治疗计划可包括数千个离散的束位置。这项研究提出了通过应用快速模拟退火(FSA)优化算法来最小化总扫描路径长度。对临床前列腺和头颈部病例的治疗计划进行了排序,以两种方式进行连续光栅扫描,并比较了所得到的扫描路径长度:(1)简单的前后,从上到下(zigzag)连续, (2)作为FSA算法解决方案产生的优化路径。使用扫描动力学的第一近似值,计算路径优化之前和之后的扫描序列的传递时间以进行比较。在这些临床示例中,FSA优化将3D目标体积的总扫描路径长度缩短了约13%-56%。由于更有效的扫描图消除了零通量区域的多次交叉,外来溢出颗粒的数量相应减少了约13%-54%。由于高扫描速度和无法通过优化更改的时间要求(例如,更改束能量所需的时间),估计由于路径长度最小化而导致的交付时间的相对减少小于1%。在重新扫描技术应用的初步考虑中,交货时间的减少估计为4%-20%。

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