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Optical detection of laser-induced stress waves for measurement of the light distribution in living tissue

机译:激光诱导应力波的光学检测测量活组织中的光分布

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Detection of the laser-induced stress wave generated in tissue by irradiation with a short laser pulse is a method for direct measurement of the absorbed energy distribution. In this study we tried to optimize this technique in order to avoid distortion of the stress wave during its propagation from the irradiated volume to the detector. Stress waves are formed by short pulsed irradiation of an absorbing dye solution and of tissue samples with a Q- switched Nd:YAG laser at 532 nm. An optical transducer based on pressure-induced reflectivity changes of a glass-water interface detects the stress wave in front of the irradiated sample surface. It is shown theoretically and experimentally that this kind of detector, where the active area is a small spot close to the irradiated surface, minimizes signal distortion due to acoustic diffraction. The absorption coefficients of the dye solutions could be derived with high accuracy from the slopes of the recorded stress waves. Measurements in layered samples and in liver tissue demonstrated that apart form the optical constants also some information about the structure of the samples can be derived from the stress signals. The optical detector is sensitive enough to registrate pressure amplitudes in the range of 1 bar. This makes it possible to use it for in-vivo applications.
机译:通过用短激光脉冲照射检测组织中产生的激光感应应力波是用于直接测量吸收能量分布的方法。在这项研究中,我们尝试优化该技术,以避免应力波在从照射体积传播到检测器期间的变形。通过在532nm处的Q-切换的Nd:YAG激光器的吸收染料溶液和组织样品的短脉冲照射形成应力波。基于压力诱导的玻璃水接口的反射率变化的光学传感器检测辐照样品表面前面的应力波。理论上和实验地示出这种检测器,其中有源区域是靠近照射表面的小点,最小化由于声学衍射引起的信号失真。染料溶液的吸收系数可以从记录的应力波的斜坡中具有高精度。层状样品和肝脏组织中的测量证明了光学常数的形成还可以从应力信号中得出关于样品的结构的一些信息。光学检测器足够敏感,以在1巴的范围内注册压力幅度。这使得可以将其用于体内应用。

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