Energy Deposition Patterns Within Limb Models Heated with a Mini Annular Phased Array (MAPA) Applicator

J. Guerquin-Kern, M. Hagmann, C. K. Charny, R. L. Levin
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Abstract

A series of experiments has been carried out in order to characterize a MAPA applicator prior to possible clinical implementation. The energy deposition patterns were determined in several human limb models of different complexities. The maximum energy deposition observed in a homogeneous cylindrical phantom was found to be at the middle of the applicator. For more realistically shaped, homogeneous limb models, the point of maximum energy deposition was shifted towards a smaller cross-sectional region; this was also the case for isolated human legs. Furthermore, significant heating was observed in the bone of the isolated legs. Such phenomena illustrate the limitation of using classical 2-D numerical models for predicting the energy deposition patterns in heterogeneous bodies.
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微型环形相控阵(MAPA)应用器加热肢体模型中的能量沉积模式
为了在可能的临床实施之前表征MAPA涂抹器,进行了一系列实验。在不同复杂程度的几种人体肢体模型中确定了能量沉积模式。最大的能量沉积观察到一个均匀的圆柱形幻影被发现在中间的涂抹器。对于形状更逼真的均匀肢体模型,最大能量沉积点向更小的横截面区域移动;孤立的人类腿也是如此。此外,在离体腿的骨骼中观察到明显的发热。这些现象说明了用经典二维数值模型预测非均质体能量沉积模式的局限性。
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