用于癌症治疗的HIFU换能器产生的超声场的研究

B. Karaboce, K. Kilic, Gizem Erdoğan
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引用次数: 0

摘要

对高强度聚焦超声(HIFU)诱发的超声场进行了研究。对输入功率、谐波和超声场非线性传播的影响进行了量化。数值和实验均得到了峰值(+)压力和峰值(-)压力的不对称波形。在高强度下,以谐波输出为主的非线性传播导致纵波增大,反射波减小。所有测量都是在土耳其国家计量研究所(TÜBİTAK UME)构建的系统中实现的。设置包括水库、定位系统、HIFU换能器、针式水听器、功率放大器、信号发生器、测量和控制装置,全部由LabVIEW 8.1软件控制。每个波形的P+、P-和P压力都已从理论上确定。由Khoklov-Zabolotskaya-Kuznetsov模型(KZK模型)产生的波动行为与实验结果基本吻合。在三次谐波中,焦点的大小减小。
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Investigation of ultrasonic fields produced by HIFU transducers used in cancer therapy
Ultrasonic fields induced by HIFU (High Intensity Focused Ultrasound) have been studied. Effect of input electrical power, harmonics and nonlinear propagation of the ultrasound fields has been quantized. Asymmetric waveforms with peak (+) pressures and peak (-) pressures were obtained both numerically and experimentally. Nonlinear propagation with harmonics output was dominant at higher intensities that leads to an increase of the compressional wave and a decrease of rarefactional wave. All measurements have been realized in the constructed system at National Metrology Institute of Turkey, TÜBİTAK UME. Set up includes a water reservoir, positioning system, HIFU transducers, needle hydrophone, power amplifier, signal generator, measurement and control devices which are all controlled by LabVIEW 8.1 software. P+, P- and P pressures have been determined theoretically for each waveform. Wave behaviors generated by the Khoklov-Zabolotskaya-Kuznetsov model (KZK model) and from experiments match in general. Decrease in size of focus point was shown in 3rd harmonic.
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