• Journal of Innovative Optical Health Sciences
  • Vol. 14, Issue 1, 2140010 (2021)
ShiJun Xu and XiaoKang Li*
Author Affiliations
  • School of Science Xi'an Technological University Xi'an 710021, P. R. China
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    DOI: 10.1142/s1793545821400101 Cite this Article
    ShiJun Xu, XiaoKang Li. Refractive index characteristics of edible oils based on spectrometry and effects of oil dispersion on OCT[J]. Journal of Innovative Optical Health Sciences, 2021, 14(1): 2140010 Copy Citation Text show less
    References

    [1] Z. Niu, M. Tong, T. Chen, "Study on food safety risk cognition based on edible oil," Food Res. Develop. 40(14), 204–210 (2019) (in Chinese).

    [2] Z. Wu, H. Li, D. Tu, "Application of Fourier Transform Infrared (FT-IR) spectroscopy combined with chemometrics for analysis of rapeseed oil adulterated with refining and purificating waste cooking oil," Food Anal. Methods 8(10), 2581–2587 (2015).

    [3] M. Soh, J. J. Chew, S. Liu et al., "Comprehensive kinetic study on the pyrolysis and combustion behaviours of five oil palm biomass by thermogravimetric- mass spectrometry (TG-MS) analyses," Bioenergy Res. 12(2), 370–387 (2019).

    [4] W. Zhu, X. Wang, L. Chen, "Rapid detection of peanut oil adulteration using low-field nuclear magnetic resonance and chemometrics," Food Chem. 216, 268–274 (2017).

    [5] S. L. Zhou, S. P. Zhu, G. L. Li et al., "Study on the measurement and optimization of soybean oil optical spectrum in THz range," Spectrosc. Spect. Anal. 36(4), 924–928 (2016).

    [6] W. Chengchao, Experimental Research and Molecular Dynamics Simulation of Optical Constants of Liquids, Harbin Institute of Technology (2018) (in Chinese).

    [7] X. C. Li, J. M. Zhao, L. H. Liu et al., "Optical properties of edible oils within spectral range from 300 to 2500 nm determined by double optical path length transmission method," Appl. Opt. 54(13), 3886–3893 (2015).

    [8] H. Zhang, M. Chen, T. Tian et al., "Rapid analysis of edible-oil refractive index using optical interferometry," Optic. Instrum. 39(1), 1–5 (2017) (in Chinese).

    [9] H. A. Macleod, Thin-Film Optical Filters, 4th Edition, Translated by X. Degang, J. Dongfang, W. Yuye et al., pp. 45–48, Science Press of China, Beijing (2016).

    [10] G. Wu, F. Cao, H. Qi et al., "Experimental analysis on optical constants of slide glass based on transmission method," Optic. Technique 41(5), 416–418 +424 (2015) (in Chinese).

    [11] W. J. Choi, B. Baumann, E. A. Swanson et al., "Extracting and compensating dispersion mismatch in ultrahigh-resolution Fourier domain OCT imaging of the retina," Opt. Express 20(22), 57–68 (2012).

    [12] D. Huang, E. A. Swanson, C. P. Lin et al., "Optical coherence tomography," Science 254(5035), 1178– 1181 (1991).

    [13] M. Wojtkowski, V. Srinivasan, T. Ko et al., "Ultrahigh-resolution, high-speed, Fourier domain optical coherence tomography and methods for dispersion compensation," Opt. Express 12(11), 2404– 2422 (2004).

    [14] D. Zhihua, C. Minghui, W. Kai et al., "High-speed swept source and its applications in optical frequency- domain imaging," Chin. J. Lasers 36(10), 2469–2476 (2009) (in Chinese).

    [15] R. Sacconi, E. Corbelli, A. Carnevali et al., "Optical coherence tomography angiography in pseudophakic cystoid macular oedema compared to diabetic macular oedema: Qualitative and quantitative evaluation of retinal vasculature," Br. J. Ophthalmol. 102(12), 1684–1690 (2018).

    [16] L. Pan, X. Wang, Z. Li et al., "Depth-dependent dispersion compensation for full-depth OCT image," Opt. Express 25(9), 10345 (2017).

    [17] L. Pan, Z. Li, X. Wang et al., "Depth-dependent dispersion compensation for optical coherence tomography," Acta Opt. Sin. 37(5), 110–117 (2017) (in Chinese).

    [18] T. A. Al-Saeed, M. Y. Shalaby, D. A. Khalil, "Dispersion compensation in Fourier domain optical coherence tomography," Appl. Opt. 53(29), 6643– 6653 (2014).

    [19] Y.-H. Chen, Z. Ding, X.-F. Yu et al., "Signal processing and image reconstruction in optical coherence tomography based on digital Hilbert transformation," Opto-Electron. Eng. 2006(4), 31–34 (2006) (in Chinese).

    [20] L. Guozhong, Z. Zhehai, Q. Jun et al., "Application of amplitude and phase registration in blood flow imaging using optical coherence tomography," Acta Phys. Sin. 62(14), 556–565 (2013) (in Chinese).

    ShiJun Xu, XiaoKang Li. Refractive index characteristics of edible oils based on spectrometry and effects of oil dispersion on OCT[J]. Journal of Innovative Optical Health Sciences, 2021, 14(1): 2140010
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