首页> 外文期刊>Medical dosimetry: official journal of the American Association of Medical Dosimetrists >Correlating the depth of compensation to the 3-D shape of the breast to achieve homogeneous dose distribution using the electronic tissue compensation treatment technique
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Correlating the depth of compensation to the 3-D shape of the breast to achieve homogeneous dose distribution using the electronic tissue compensation treatment technique

机译:使用电子组织补偿处理技术将补偿深度与乳房的三维形状相关联

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Our study aimed to correlate the overall 3-dimensional (3-D) shape of the breast to the compensation depth to produce a homogeneous dose distribution using the electronic tissue compensation (ECOMP) treatment technique. The study involved creating a number of semioval water phantoms with the diameter of the larger axis representing the breast separation and the shorter axis representing the distance from the chest wall to the apex of the breast. Multiple plans with 2 tangential fields were created for each phantom using different transmission penetration depths (TPDs) to determine the optimum TPD value based on the evaluation of dose uniformity and maximum hot spot. Optimum TPD values from the semioval water phantom plans were plotted on a graph as a function of separation and radius and were used as guidelines to choose the optimum TPD for the breast patient's cases. A total of 10 patients who had been treated with radiation therapy using ECOMP tangential fields were randomly selected. The separation and the radius of the breast were measured for 3 regions (superior, middle, and inferior) to retrospectively determine the optimum TPD from the graph for each region. These TPD values were then used to plan the breast cases. For all the patients studied, the optimized TPD technique produced a lower average homogeneity index (HI) value of 0.658 than the standard ECOMP technique of 0.856. These results showed that optimized TPD technique produced a more homogeneous dose distribution than the standard ECOMP technique. By measuring the breast size based on breast separation and the chest wallto-apex distance at different locations along the superior-inferior axis of the breast, the optimum TPD can be determined at each location to provide a homogeneous dose distribution. A module can be created within the planning system to automatically assign the optimum TPD for both tangential fields so uniform fluence maps can be achieved throughout the whole breast volume. This method can serve as a guideline in ECOMP during the treatment planning to obtain a homogeneous dose distribution. Published by Elsevier Inc. on behalf of American Association of Medical Dosimetrists.
机译:我们的研究旨在将乳房的总三维(3-D)形状与补偿深度相关联,以产生使用电子组织补偿(ECOMP)处理技术的均匀剂量分布。该研究涉及产生许多半蒸馏水模子,其具有较大轴的直径,表示乳房分离,较短的轴表示从胸壁到乳房顶点的距离。使用不同的传输穿透深度(TPD)为每个幻像创建具有2个切向字段的多个计划,以基于对剂量均匀性和最大热点的评估来确定最佳TPD值。从半氧化水幻影计划中的最佳TPD值被绘制在图中作为分离和半径的函数,并被用作选择乳房病例的最佳TPD的指导方针。随机选择共有10名使用ECOMP切向域治疗的患者进行治疗。测量乳房的分离和半径为3个区域(优越,中,中间和差),以回顾各个区域的图表中的最佳TPD。然后使用这些TPD值来规划乳房病例。对于所研究的所有患者,优化的TPD技术产生的较低平均均匀性指数(HI)值0.658,而不是0.856的标准ECOMP技术。这些结果表明,优化的TPD技术产生比标准ECOMP技术更均匀的剂量分布。通过沿着乳房的优质下轴的不同位置的乳房分离和胸壁 - 顶点距离测量乳房尺寸,可以在每个位置确定最佳TPD以提供均匀的剂量分布。可以在规划系统内创建模块,以自动为两个切向字段分配最佳TPD,因此可以在整个母乳卷中实现均匀的注量图。该方法可以作为eComp期间的治疗计划中获得均匀剂量分布的指导。由elsevier公司发布代表美国医疗剂量分子协会。

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