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Integrating sphere-based photoacoustic setup for simultaneous absorption coefficient and Grueneisen parameter measurements with biomedical liquids

机译:集成基于球的光声设置,可与生物医学液体同时测量吸收系数和Grueneisen参数

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A method for simultaneously measuring the absorption coefficient μ_a and Grueneisen parameter Γ of biological absorbers in photoacoustics is designed and implemented using a coupled-integrating sphere system. A soft transparent tube with inner diameter of 0.58mm is used to mount the liquid absorbing sample horizontally through the cavity of two similar and adjacent integrating spheres. One sphere is used for measuring the sample's μ_a using a continuous halogen light source and a spectrometer fiber coupled to the input and output ports, respectively. The other sphere is used for simultaneous photoacoustic measurement of the sample's Γ using an incident pulsed light with wavelength of 750nm and a flat transducer with central frequency of 5MHz. Absolute optical energy and pressure measurements are not necessary. However, the derived equations for determining the sample's μ_a and Γ require calibration of the setup using aqueous ink dilutions. Initial measurements are done with biological samples relevant to biomedical imaging such as human whole blood, joint and cyst fluids. Absorption of joint and cyst fluids is enhanced using a contrast agent like aqueous indocyanine green dye solution. For blood sample, measured values of μ_a = 0.580 ± 0.016 mm~(-1) and Γ = 0.166 ± 0.006 are within the range of values reported in literature. Measurements with the absorbing joint and cyst fluid samples give Γ values close to 0.12 which is similar to that of water and plasma.
机译:使用耦合集成球系统设计和实现用于同时测量光声的吸收系数μ_a和格鲁肾上腺素参数γ的方法。具有内径为0.58mm的软透明管用于水平地通过两个相似且相邻的整体球体水平地安装液体吸收样品。一个球体用于使用连续卤素光源和耦合到输入和输出端口的光谱仪光纤来测量样品的μ_a。另一个球体用于使用波长为750nm的入射脉冲光和具有5MHz的中央频率的扁平换能器的入射脉冲光进行同时光声测量。绝对光能和压力测量不是必需的。然而,用于确定样品的μ_a和γ的衍生方程需要使用水性油墨稀释液校准设置。用与生物医学成像相关的生物样品进行初始测量,例如人类全血,关节和囊肿流体。使用诸如吲哚菁水溶液水溶液溶液等造影剂来增强关节和囊肿流体的吸收。对于血样,测量的μ_a= 0.580±0.016mm〜(-1)和γ= 0.166±0.006在文献中报告的值范围内。具有吸收接头和囊肿流体样品的测量使γ值接近0.12,其类似于水和等离子体。

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