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Observation of laser-induced elastic waves in agar skin phantoms using a high-speed camera and a laser-beam-deflection probe

机译:使用高速相机和激光束偏转探头观察琼脂皮肤模型中的激光诱导弹性波

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摘要

We present an optical study of elastic wave propagation inside skin phantoms consisting of agar gel as induced by an Er:YAG (wavelength of 2.94 μm) laser pulse. A laser-beam-deflection probe is used to measure ultrasonic propagation and a high-speed camera is used to record displacements in ablation-induced elastic transients. These measurements are further analyzed with a custom developed image recognition algorithm utilizing the methods of particle image velocimetry and spline interpolation to determine point trajectories, material displacement and strain during the passing of the transients. The results indicate that the ablation-induced elastic waves propagate with a velocity of 1 m/s and amplitudes of 0.1 mm. Compared to them, the measured velocities of ultrasonic waves are much higher, within the range of 1.42–1.51 km/s, while their amplitudes are three orders of magnitude smaller. This proves that the agar gel may be used as a rudimental skin and soft tissue substitute in biomedical research, since its polymeric structure reproduces adequate soft-solid properties and its transparency for visible light makes it convenient to study with optical instruments. The results presented provide an insight into the distribution of laser-induced elastic transients in soft tissue phantoms, while the experimental approach serves as a foundation for further research of laser-induced mechanical effects deeper in the tissue.
机译:我们提出了由Er:YAG(波长为2.94μm)激光脉冲诱导的由琼脂凝胶组成的皮肤模型内部弹性波传播的光学研究。激光束偏转探头用于测量超声传播,高速摄像机用于记录烧蚀引起的弹性瞬变中的位移。使用定制的图像识别算法,利用粒子图像测速和样条插值的方法,可以进一步分析这些测量结果,从而确定瞬态通过过程中的点轨迹,材料位移和应变。结果表明,烧蚀引起的弹性波以1 m / s的速度和0.1 mm的振幅传播。与它们相比,测得的超声波速度要高得多,在1.42-1.51 km / s的范围内,而其幅度要小三个数量级。这证明了琼脂凝胶可以用作生物医学研究中的基础皮肤和软组织替代品,因为其聚合结构可再现足够的软固体性质,并且其对可见光的透明度使其可以方便地用光学仪器进行研究。提出的结果提供了对软组织体模中激光诱导的弹性瞬态分布的洞察力,而实验方法为进一步研究组织中更深的激光诱导的机械效应奠定了基础。

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