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首页> 外文期刊>Inverse Problems: An International Journal of Inverse Problems, Inverse Methods and Computerised Inversion of Data >Effects of wavelength-dependent fluence attenuation on the noninvasive photoacoustic imaging of hemoglobin oxygen saturation in subcutaneous vasculature in vivo
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Effects of wavelength-dependent fluence attenuation on the noninvasive photoacoustic imaging of hemoglobin oxygen saturation in subcutaneous vasculature in vivo

机译:波长依赖性注量衰减对皮下血管内血红蛋白氧饱和度的非侵入性光声成像的影响

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摘要

Quantitative measurements of the oxygen saturation of hemoglobin (sO(2)) in a blood vessel in vivo presents a challenge in photoacoustic imaging. As a result of wavelength-dependent optical attenuation in the skin, the local fluence at a subcutaneous vessel varies with the optical wavelength in spectral measurement and hence needs to be compensated for so that the intrinsic absorption coefficient can be recovered. Here, by employing a simplified double-layer skin model, we demonstrate that although the absolute value of sO(2) in a vessel is seriously affected by the volume fraction of blood and the spatially averaged sO(2) in the dermis, the difference of sO(2) between neighboring vessels is minimally affected. Experimentally, we acquire compensational factors for the wavelength-dependent optical attenuation by measuring the PA spectrum of a subcutaneously inserted 25 mu m thick black film using our PA microscope. We demonstrate in vivo that the difference in sO(2) between a typical artery and a typical vein is conserved before and after spectral compensation. This conservation holds regardless of the animal's systemic physiological state.
机译:体内血管中血红蛋白(sO(2))的氧饱和度的定量测量在光声成像中提出了挑战。由于皮肤中与波长有关的光衰减,皮下血管处的局部注量在光谱测量中随光波长而变化,因此需要进行补偿,以便可以恢复本征吸收系数。在这里,通过使用简化的双层皮肤模型,我们证明尽管血管中sO(2)的绝对值受血液的体积分数和真皮中空间平均sO(2)的严重影响,但差异相邻血管之间的sO(2)的影响最小。实验上,我们通过使用我们的PA显微镜测量皮下插入的25微米厚的黑色薄膜的PA光谱,获得了与波长相关的光衰减的补偿因子。我们在体内证明典型的动脉和典型的静脉之间的sO(2)的差异在光谱补偿之前和之后均得到了保留。无论动物的全身生理状态如何,这种保护作用都成立。

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