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Quantitative photoacoustic integrating sphere (QPAIS) platform for absorption coefficient and Grüneisen parameter measurements: Demonstration with human blood

机译:定量光声积分球(QPAIS)平台,用于吸收系数和Grüneisen参数测量:人体血液演示

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Quantitative photoacoustic imaging in biomedicine relies on accurate measurements of relevant material properties of target absorbers. Here, we present a method for simultaneous measurements of the absorption coefficient and Grüneisen parameter of small volume of liquid scattering and absorbing media using a coupled-integrating sphere system which we refer to as quantitative photoacoustic integrating sphere (QPAIS) platform. The derived equations do not require absolute magnitudes of optical energy and pressure values, only calibration of the setup using aqueous ink dilutions is necessary. As a demonstration, measurements with blood samples from various human donors are done at room and body temperatures using an incubator. Measured absorption coefficient values are consistent with known oxygen saturation dependence of blood absorption at 750 nm, whereas measured Grüneisen parameter values indicate variability among five different donors. An increasing Grüneisen parameter value with both hematocrit and temperature is observed. These observations are consistent with those reported in literature.
机译:生物医学中的定量光声成像依赖于目标吸收体相关材料特性的准确测量。在这里,我们提出了一种使用耦合积分球系统同时测量小体积液体散射和吸收介质的吸收系数和Grüneisen参数的方法,我们称其为定量光声积分球(QPAIS)平台。导出的方程式不需要光能和压力值的绝对大小,仅需要使用水性墨水稀释液对设置进行校准。作为演示,使用孵化器在室温和体温下对来自各种人类供体的血液样本进行测量。测得的吸收系数值与已知的750 nm血液吸收的氧饱和度依赖性一致,而测得的Grüneisen参数值表明五种不同供体之间的变异性。观察到随着血细胞比容和温度的增加,Grüneisen参数值增加。这些观察结果与文献报道一致。

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