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首页> 外文期刊>Biomedical Engineering, IEEE Transactions on >A Waveform Diversity Method for Optimizing 3-D Power Depositions Generated by Ultrasound Phased Arrays
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A Waveform Diversity Method for Optimizing 3-D Power Depositions Generated by Ultrasound Phased Arrays

机译:一种优化超声相控阵产生3-D功率沉积的波形分集方法

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摘要

A waveform-diversity-based approach for 3-D tumor heating is compared to spot scanning for hyperthermia applications. The waveform diversity method determines the excitation signals applied to the phased array elements and produces a beam pattern that closely matches the desired power distribution. The optimization algorithm solves the covariance matrix of the excitation signals through semidefinite programming subject to a series of quadratic cost functions and constraints on the control points. A numerical example simulates a 1444-element spherical-section phased array that delivers heat to a 3-cm-diameter spherical tumor located 12 cm from the array aperture, and the results show that waveform diversity combined with mode scanning increases the heated volume within the tumor while simultaneously decreasing normal tissue heating. Whereas standard single focus and multiple focus methods are often associated with unwanted intervening tissue heating, the waveform diversity method combined with mode scanning shifts energy away from intervening tissues where hotspots otherwise accumulate to improve temperature localization in deep-seated tumors.
机译:将基于波形多样性的3-D肿瘤加热方法与热疗中的点扫描进行了比较。波形分集方法确定施加到相控阵元件的激励信号,并产生与所需功率分布非常匹配的光束方向图。该优化算法通过半定规划求解激励信号的协方差矩阵,该规划受一系列二次成本函数和控制点约束的影响。一个数值示例模拟了一个1444个元素的球形截面相控阵列,该相控阵列将热量传递给距离阵列孔径12 cm的直径3 cm的球形肿瘤,结果表明,波形分集与模式扫描相结合会增加加热过程中的加热体积。肿瘤,同时降低正常组织发热。标准的单焦点和多焦点方法通常与不想要的介入组织加热相关联,而波形分集方法与模式扫描相结合则将能量从介入的组织转移开,否则热点会聚积,从而改善深部肿瘤的温度定位。

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