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基于可见光图像的无创血糖测量仿体实验验证 被引量:5

Phantom Experimental Verification of Non-invasive Blood Glucose Measurement Based on Visible Image
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摘要 基于光学测量的无创血糖检测是目前生物医学领域的研究热点,但由于存在信噪比低、背景噪声干扰、准确度不高等问题,该无创血糖检测方法还停留在实验阶段,无法应用于临床实践。针对这些问题,提出了一种基于可见光图像的无创血糖检测方法。该方法通过采集到的散射图像,采用梯度增强决策树算法,建立了散射图像特征参量与血糖浓度关系的回归模型,并通过仿体实验验证了模型的准确性。实验结果表明,利用梯度增强回归模型,可以对可见光散射图像与葡萄糖浓度的关系进行建模,一致性决定系数可达0.929,葡萄糖检测精度平均绝对误差为0.156g·L^-1。 Non-invasive blood glucose detection based on optical measurement is a research hotspot in the biomedical field at present.However,due to the problems of low signal-to-noise ratio,background noise interference and low accuracy,the non-invasive blood glucose detection method is still in the experimental stage and cannot be applied in clinical practice.To solve these problems,a non-invasive blood glucose detection method based on visible image is proposed.By using the collected scattering images and the gradient boosting decision tree algorithm,the regression model of the relationship between the characteristic parameters of the scattering images and the blood glucose concentration is established,and the accuracy of the model is verified by the phantom experiment.Experimental results show that the relationship between visible scattering images and glucose concentration can be modeled by the gradient boosting regression model,with a consistency determination coefficient up to 0.929and an average absolute error of glucose detection accuracy of 0.156g·L^-1.
作者 李芬 赵跃进 孔令琴 刘明 董立泉 惠梅 刘小华 Li Fen;Zhao Yuejin;Kong Lingqin;Liu Ming;Dong Liquan;Hui Mei;Liu Xiaohua(Beijing Key Laboratory for Precision Optoelectronic Measurement Instrument and Technology,School of Optics and Photonics,Beijing Institute of Technology,Beijing,100081,China)
出处 《光学学报》 EI CAS CSCD 北大核心 2020年第6期223-225,共3页 Acta Optica Sinica
基金 国家自然科学基金(61935001,11774031,61705010)。
关键词 无创血糖 可见光散射图像 梯度增强回归 non-invasive blood glucose scattering image of visible light gradient boosting regression
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  • 1张洪艳,张来明,陈月,刘少明,孙颖,唐玉国.近红外漫反射光谱在人体血糖无创检测中的应用[J].激光与红外,2005,35(2):96-99. 被引量:5
  • 2沈韬,彭卿,翁诗甫,周孝思,吴瑾光.傅立时变换中红外光谱法用于非损伤性血糖测定的研究[J].光谱学与光谱分析,1996,16(3):39-42. 被引量:13
  • 3Y. C. Shen, A. G. Davies, E. H. Linfleld et al.. The use of Fourier-transform infrared spectroscopy for the quantitative determination of glucose concentration in whole blood [J ]. Physics in Medicine and Biology, 2003, 48(13) : 2023-2032.
  • 4T. Heise, L. Nosek, J. Gable et al.. ICU glucose monitoring measured in plasma using mid-infrared spectroscopy[J]. Crit. Care. , 2010, 14(1) : 580.
  • 5K. Kajiwara, T. Uemura, H. Kishikawa et al.. Noninvasive measurement of blood glucose concentrations by analyzing Fourier transform intra red absorbance spectra through oral mucosa[J]. ivied.& Biol. Engng. Comput. , 1993, 31(7): 17-22.
  • 6T. Uemura, K. Nishida, M. Sakakida et al.. Non-invasive blood glucose measurement by Fourier transform infrared spectroscopic analysis through the mucous membrane of the lip: application of a chalcogenide optical fiber system [J ]. Front. Med. Biol. Engng. , 1999, 9(2): 53-137.
  • 7H. von Lilienfeld-Toal, M. Weidenmtille, A. Xhelaj et al.. A novel approach to non-invasive glucose measurement by midinfrared spectroscopy: the combination of quantum cascade lasers ( QCL ) and photoacoustic detection [ J ]. Vibrational Spectroscopy, 9:005, 38(1- 2): 209-215.
  • 8K. Tanura, K. Fujita, W. Kaneko et al.. Noninvasive measurement of blood glucose based on optical sensing [C]. Instrumentation and Measurement Technology Conference, 2004, 1970-1974.
  • 9H. Ishizawa, A. Muro, T. Takano et al.. Non-invasive blood glucose measurement based on ATR infrared spectroscopy [J]. SICE Annual Conference, 2008, 321-324.
  • 10B. Lorenzo, P. B. Michael, S. Takeshi et al.. Attenuated total reflection-Fourier transform infrared spectroscopy as a possible method to investigate biophysical parameters of stratum corneum in vivo [J].J. Investigative Dermatology, 2001, 116 (11) : 380-386.

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