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Numerical and experimental investigation of the influence of tumor size on laser-induced ultrasonics in soft tissue

机译:肿瘤大小对软组织中激光诱导超声波影响的数值和实验研究

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摘要

The generation and propagation of laser-induced ultrasonic waves in soft tissue systems are investigated using the finite element method. Taking into account the effects of thermal diffusion, optical penetration, tumor elastic modulus and finite laser pulse duration, the transient temperature distribution is obtained. Using this temperature field as thermal loading in structural analysis, the thermoelastic stress field and laser-induced ultrasound waves in soft tissues are obtained. The results show that the intensity of the positive peak in the ultrasound wave increases and the arrival of the longitudinal wave takes place sooner as the tumor size becomes larger. It is also found that the duration of the laser ultrasound signal becomes shorter as the size of the tumor decreases. Meanwhile, the percentage of the received ultrasonic signal in the high-frequency region increases as the size of the tumor decreases, as has been proved by the experimental results.
机译:使用有限元方法研究了激光诱导的超声波在软组织系统中的产生和传播。考虑到热扩散,光学穿透,肿瘤弹性模量和有限的激光脉冲持续时间的影响,获得了瞬时温度分布。使用该温度场作为结构分析中的热负荷,可以获得软组织中的热弹性应力场和激光诱导的超声波。结果表明,随着肿瘤尺寸的增大,超声波中正峰的强度增加,纵波的到来更快。还发现,随着肿瘤尺寸的减小,激光超声信号的持续时间变短。同时,如实验结果所证实的,随着肿瘤尺寸的减小,在高频区域中接收到的超声信号的百分比增加。

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