研究目的
To noninvasively estimate the dispersion coefficients in Cauchy’s equation of biological tissues using the μOCT system.
研究成果
The proposed method can estimate the wavelength-dependent refractive index of biological tissues by taking advantage of the high resolution and broad spectral range of the μOCT system. The feasibility of the proposed method was validated using distilled water and intact rat cornea.
研究不足
The method requires a known refractive index value at a wavelength to estimate the dispersion coefficients.
1:Experimental Design and Method Selection:
The method involves using micro-optical coherence tomography (μOCT) to measure the sample’s optical thicknesses over a wide range of wavelengths and estimate the dispersion coefficients through curve fitting.
2:Sample Selection and Data Sources:
Distilled water and fresh rat cornea ex vivo were used as samples.
3:List of Experimental Equipment and Materials:
A μOCT system consisting of a broadband light source, a spectrometer, and a common-path benchtop probe was used.
4:Experimental Procedures and Operational Workflow:
The optical thickness of a tissue layer at a given center wavelength was measured using a short-frequency Fourier transform (SFFT) algorithm. The dispersion coefficients of Cauchy’s equation were obtained from the wavelength-dependent optical thickness data.
5:Data Analysis Methods:
The coefficients of Cauchy’s equation were estimated by fitting the equation to the vector with least-square optimization method.
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super-continuum light source
SuperK EXR-1
NKT Photonics
Provides a broadband illumination of 600-1050 nm
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holographic transmission grating
1200 l/mm @840 nm
Wasatch Photonics
Part of the spectrometer
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line scan camera
AVIIVA EM4
E2V
Detects interferometric signals
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camera lens
Nikon AF 85 mm 1.8D
Nikon
Part of the spectrometer
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