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Treatment planning for hyperthermia with ultrasound phased arrays

机译:超声相控阵热疗的治疗计划

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Treatment planning for ultrasound phased arrays suggests a strategy for hyperthermia therapy which satisfies therapeutic conditions at the target and spares other sensitive anatomical structures. To predict both desirable and harmful interactions between ultrasound and important structures such as the tumor, bones, and air pockets, a hyperthermia treatment planning system has been developed for ultrasound phased arrays. This collection of treatment planning routines consists of geometric and thermal optimization procedures specific to ultrasound phased arrays, where geometric treatment planning, combined with thermal treatment planning and three-dimensional visualization, provides essential information for the optimization of individual patient treatments. A patient image data set for cancer of the prostate, a difficult target situated in the midst of multiple pelvic bone obstructions, illustrates the geometric treatment planning algorithm and other tools for treatment analysis. The results indicate that the analysis of complex three-dimensional relationships between the applicator, anatomical structures, and incident fields provides an important means of predicting treatment limiting conditions, thereby allowing the hyperthermia applicator to electronically adapt to individual patients and specific sites.
机译:超声相控阵的治疗计划提出了一种热疗策略,该策略可以满足靶标的治疗条件,并保留其他敏感的解剖结构。为了预测超声与重要结构(例如肿瘤,骨骼和气袋)之间的理想和有害相互作用,已经开发了用于超声相控阵的高温治疗计划系统。此治疗计划例程集合包括特定于超声相控阵的几何和热优化程序,其中几何治疗计划与热处理计划和三维可视化相结合,为优化单个患者治疗提供了必要的信息。前列腺癌的患者图像数据集(位于多个骨盆骨阻塞中的一个困难目标)说明了几何治疗计划算法和其他用于治疗分析的工具。结果表明,对涂药器,解剖结构和入射场之间复杂的三维关系的分析提供了预测治疗限制条件的重要手段,从而使热疗涂药器能够以电子方式适应个体患者和特定部位。

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