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Numerical modeling of light distribution for optoacoustic determination of blood effective attenuation coefficient in radial artery

机译:桡动脉血液有效衰减系数的光声测定光分布的数值模拟

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We modeled three-dimensional light distribution in the radial artery using geometrical parameters of this blood vessel and optical parameters typical for blood in the near-infrared spectral range. The obtained light distributions allowed for calculation of optoacoustic signals detected by transducers on the skin surface. We then compared the calculated signals with optoacoustic signals experimentally measured from tissue phantoms at different effective attenuation coefficients and obtained good correlation. Our data suggest that the light distribution and optoacoustic signal modeling can be used in transducer design and in optoacoustic signal processing for accurate measurement of blood parameters.
机译:我们在近红外光谱范围内使用该血管和血液的几何参数建模了径向动脉的三维光分布。所获得的光分布允许计算在皮肤表面上的换能器检测到的光声信号。然后,我们将计算出的信号与从不同有效衰减系数的组织幽灵实验测量的光声信号进行实验测量并获得良好的相关性。我们的数据表明,光分布和光声信号建模可用于换能器设计和光声信号处理,以精确测量血液参数。

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