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Spectral domain detection in low-coherence spectroscopy

机译:低相干光谱中的光谱域检测

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摘要

Low-coherence spectroscopy (LCS) offers the valuable possibility to measure quantitative and wavelength resolved optical property spectra within a tissue volume of choice that is controllable both in size and in depth. Until now, only time domain detection was investigated for LCS (tdLCS), but spectral domain detection offers a theoretical speed/sensitivity advantage over tdLCS. In this article, we introduce a method for spectral domain detection in LCS (sdLCS), with optimal sensitivity as a function of measurement depth. We validate our method computationally in a simulation and experimentally on a phantom with known optical properties. The attenuation, absorption and scattering coefficient spectra from the phantom that were measured by sdLCS agree well with the expected optical properties and the measured optical properties by tdLCS.
机译:低相干光谱法(LCS)提供了宝贵的可能性,可以在选定的组织体积内测量大小和深度均可控制的定量和波长分辨光学特性光谱。到目前为止,仅对LCS(tdLCS)的时域检测进行了研究,但光谱域检测相对于tdLCS具有理论上的速度/灵敏度优势。在本文中,我们介绍了一种在LCS(sdLCS)中进行光谱域检测的方法,其最佳灵敏度是测量深度的函数。我们在模拟中以计算方式验证了我们的方法,并在具有已知光学特性的模型上进行了实验验证。通过sdLCS测量的人体模型的衰减,吸收和散射系数光谱与预期的光学特性和通过tdLCS测量的光学特性非常吻合。

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