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在单层和多层非散射体模中使用色散编码全范围频域光学相干断层扫描进行光谱测量。

Spectroscopic measurements with dispersion encoded full range frequency domain optical coherence tomography in single- and multilayered non-scattering phantoms.

作者信息

Hermann B, Hofer B, Meier C, Drexler W

机构信息

Biomedical Imaging Group, School of Optometry & Vision Science, Cardiff University, Cardiff CF24 9LU, United Kingdom.

出版信息

Opt Express. 2009 Dec 21;17(26):24162-74. doi: 10.1364/OE.17.024162.

Abstract

In this study, depth resolved measurements of absorption profiles in the wavelength range of 800 nm with a bandwidth of 140 nm are demonstrated using high speed spectroscopic frequency domain OCT(SOCT) and a full range reconstruction algorithm (dispersion encoded full range, DEFR). The feasibility of the algorithm for SOCT is tested in simulation and experiment. With proper calibration, SOCT with DEFR is able to extract absolute, depth resolved absorption profiles over the whole wavelength range at once without the need of tuning and performing measurements at single wavelengths sequentially. The superior acquisition speed and better phase stability in frequency domain as compared to time domain results in a better reproducibility and practicability for spectroscopic measurements. In addition, high acquisition speed in excess of 20 kHz allows to measure absorption dynamics with 50 micros time resolution, which might be useful for the investigation of pharmacokinetics or pharmacodynamics. SOCT of approximately 600 microm thick single- and multilayered, weakly scattering phantoms with varying absorption in the range of 5-80 cm(-1), equivalent to blood absorption in capillaries, is presented. SOCT measurements are compared with those using a spectrometer in transmission mode. For Indocyanine Green (ICG), a dynamic absorption measurements are demonstrated.

摘要

在本研究中,利用高速光谱频域光学相干断层扫描(SOCT)和全范围重建算法(色散编码全范围,DEFR),展示了在800 nm波长范围内、带宽为140 nm时吸收谱的深度分辨测量。该算法用于SOCT的可行性在模拟和实验中得到了测试。通过适当校准,采用DEFR的SOCT能够一次性在整个波长范围内提取绝对的、深度分辨的吸收谱,而无需调谐并依次在单个波长下进行测量。与时域相比,频域中更高的采集速度和更好的相位稳定性使得光谱测量具有更好的可重复性和实用性。此外,超过20 kHz的高采集速度允许以50微秒的时间分辨率测量吸收动力学,这可能有助于药代动力学或药效学的研究。本文展示了对约600微米厚的单层和多层、弱散射体模进行的SOCT测量,这些体模在5 - 80 cm⁻¹范围内具有不同的吸收,相当于毛细血管中的血液吸收。将SOCT测量结果与使用透射模式光谱仪的测量结果进行了比较。对于吲哚菁绿(ICG),展示了动态吸收测量。

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