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Characterization of laser ultrasound source signals in biological tissues for imaging applications

机译:表征生物组织中激光超声源信号的成像应用

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摘要

Short optical pulses emitted from a tunable Q-switched laser (800 to 2000 nm) generate laser ultrasound (LUS) signals at the surface of biological tissue. The LUS signal’s acoustic frequency content, dependence on sample type, and optical wavelength are observed in the far field. The experiments yield a reference dataset for the design of noncontact LUS imaging systems. Measurements show that the majority of LUS signal energy in biological tissues is within the 0.5 and 3 MHz frequency bands and the total acoustic energy generated increases with the optical absorption coefficient of water, which governs tissue optical absorption in the infrared range. The experimental results also link tissue surface roughness and acoustic attenuation with limited LUS signal bandwidth in biological tissue. Images constructed using 810-, 1064-, 1550-, and 2000-nm generation laser wavelengths and a contact piezoelectric receiver demonstrates the impact of the generation laser wavelength on image quality. A noncontact LUS-based medical imaging system has the potential to be an effective medical imaging device. Such a system may mitigate interoperator variability associated with current medical ultrasound imaging techniques and expand the scope of imaging applications for ultrasound.
机译:可调Q开关激光器(800至2000 nm)发出的短光脉冲在生物组织表面产生激光超声(LUS)信号。在远场中可以观察到LUS信号的声频含量,对样品类型的依赖性以及光波长。实验产生了用于非接触式LUS成像系统设计的参考数据集。测量表明,生物组织中的大多数LUS信号能量在0.5和3 MHz频带内,并且所产生的总声能随水的光吸收系数而增加,从而决定了红外范围内的组织光吸收。实验结果还将组织表面粗糙度和声衰减与生物组织中有限的LUS信号带宽联系在一起。使用810-,1064-,1550-和2000-nm生成激光波长和接触式压电接收器构建的图像演示了生成激光波长对图像质量的影响。基于非接触式LUS的医学成像系统具有成为有效的医学成像设备的潜力。这样的系统可以减轻与当前医学超声成像技术相关的互操作者的可变性,并扩大超声成像应用的范围。

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