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Optical-resolution photoacoustic microscopy of oxygen saturation with nonlinear compensation

机译:具有非线性补偿的氧饱和度的光学分辨率光声显微镜

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摘要

Optical-resolution photoacoustic microscopy (OR-PAM) of oxygen saturation (sO2) offers high-resolution functional information on living tissue. Limited by the availability of high-speed multi-wavelength lasers, most OR-PAM systems use wavelengths around 532nm. Blood has high absorption coefficients in this spectrum, which may cause absorption saturation and induce systematic errors in sO2 imaging. Here, we present nonlinear OR-PAM that compensates for the absorption saturation in sO2 imaging. We model the absorption saturation at different absorption coefficients and ultrasonic bandwidths. To compensate for the absorption saturation, we develop an OR-PAM system with three optical wavelengths and implement a nonlinear algorithm to compute sO2. Phantom experiments on bovine blood validate that the nonlinear OR-PAM can improve the sO2 accuracy by up to 0.13 for fully oxygenated blood. In vivo sO2 imaging has been conducted in the mouse ear. The nonlinear sO2 results agree with the normal physiological values. These results show that the absorption saturation effect can be compensated for in nonlinear OR-PAM, which improves the accuracy of functional photoacoustic imaging.
机译:氧饱和度(sO2)的光学分辨率光声显微镜(OR-PAM)提供了有关活组织的高分辨率功能信息。受高速多波长激光器可用性的限制,大多数OR-PAM系统使用约532nm的波长。血液在该光谱中具有高吸收系数,这可能导致吸收饱和并在sO2成像中引起系统误差。在这里,我们提出了非线性OR-PAM,用于补偿sO2成像中的吸收饱和。我们对不同吸收系数和超声带宽下的吸收饱和进行建模。为了补偿吸收饱和,我们开发了具有三个光波长的OR-PAM系统,并实现了非线性算法来计算sO2。在牛血液上进行的幻影实验证实,对于完全充氧的血液,非线性OR-PAM可以将sO2精度提高多达0.13。体内sO2成像已在小鼠耳朵中进行。 sO2的非线性结果与正常生理值一致。这些结果表明,在非线性OR-PAM中可以补偿吸收饱和效应,从而提高了功能性光声成像的准确性。

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