Impact of absorption in the top layer of a two layer sample on spectroscopic spectral domain interferometry of the bottom layer

F. Fleischhauer, T. Feuchter, L. Leick, R. Rajendram, A. Podoleanu
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Abstract

Spectroscopic spectral domain interferometry and spectroscopic optical coherence tomography combine depth information with spectrally-resolved localised absorption data. These additional data can improve diagnostics by giving access to functional information of the investigated sample. One possible application is measuring oxygenation levels at the retina for earlier detection of several eye diseases. Here measurements with different hollow glass tube phantoms are shown to measure the impact of a superficial absorbing layer on the precision of reconstructed attenuation spectra of a deeper layer. Measurements show that a superficial absorber has no impact on the reconstructed absorption spectrum of the deeper absorber. Even when diluting the concentration of the deeper absorber so far that an incorrect absorption maximum is obtained, still no influence of the superficially placed absorber is identified.
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两层样品顶层吸收对底层光谱域干涉测量的影响
光谱光谱域干涉测量和光谱光学相干层析成像结合深度信息与光谱分辨局部吸收数据。这些额外的数据可以通过访问被调查样本的功能信息来改进诊断。一种可能的应用是测量视网膜的氧化水平,以便早期发现几种眼病。本文用不同的中空玻璃管模型测量了表层吸收层对深层吸收层重构衰减光谱精度的影响。测量结果表明,表面吸收剂对深层吸收剂的重构吸收光谱没有影响。即使将较深吸收剂的浓度稀释到一个不正确的吸收最大值,仍然没有发现浅层吸收剂的影响。
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