Optimized Detection of Hypoglycemic Glucose Ranges in Human Serum by Raman Spectroscopy with 532 nm Laser Excitation

被引:5
作者
Golparvar, Ata [1 ]
Boukhayma, Assim [1 ,2 ]
Enz, Christian [1 ]
Carrara, Sandro [1 ]
机构
[1] Ecole Polytech Fed Lausanne EPFL, Integrated Circuit Lab, CH-2002 Neuchatel, Switzerland
[2] Senbiosys SA, CH-2002 Neuchatel, Switzerland
来源
PROCEEDINGS OF THE 10TH INTERNATIONAL CONFERENCE ON PHOTONICS, OPTICS AND LASER TECHNOLOGY (PHOTOPTICS) | 2021年
关键词
Blood Plasma; Continuous Monitoring; Glucometer; Glucose Monitoring; Human Serum Analysis; Non-invasive; Raman Effect; Vibrational Spectroscopy; QUANTIFICATION; SPECTRA; WATER;
D O I
10.5220/0010981300003121
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Raman scattering-based biomedical detection has usually been proposed with near-infrared laser sources. However, a low-cost CMOS imager's quantum efficiency is optimum around green wavelength, and their sensitivity substantially decreases in near-infrared wavelengths. Additionally, since Raman scattering intensity is proportional to lambda(-4) , where lambda is the laser wavelength, the increase of wavelength directly results in less sensitive measurement. These facts contribute to limiting the transfer of detection methodologies based on Raman spectroscopy to portable and low-cost point-of-care medical devices. Therefore, here we propose 532 nm green laser-induced Raman spectroscopy for low human serum glucose level detection. However, in 532 nm Raman spectroscopy of carotenoid containing biological systems, such as human serum, resonance Raman occurs, and total carotenoids resonance bands dominate the spectra. To demonstrate serum glucose detection on concentration levels typical in severe hypoglycemic ranges, this study optimizes laser focal depth, laser excitation duration, and laser power to extend the sensitivity by exploiting the glucose Raman shift peak at 1125 +/- 7.5 cm(-1). By applying experimentally tuned parameters, our findings suggest sensitive detection of serum glucose in the range of 0-10 mmol/l with 1.2 mmol/l theoretical limit of detection (LOD) by using spontaneous (non-enhanced) Raman spectroscopy.
引用
收藏
页码:158 / 165
页数:8
相关论文
共 41 条
[1]   Descriptions of diabetes burnout from individuals with Type 1 diabetes: an analysis of YouTube videos [J].
Abdoli, S. ;
Hessler, D. ;
Vora, A. ;
Smither, B. ;
Stuckey, H. .
DIABETIC MEDICINE, 2020, 37 (08) :1344-1351
[2]  
Adar F., 2010, Microscopy and Microanalysis, V16, P360
[3]  
Adar F, 2017, SPECTROSCOPY-US, V32, P12
[4]   Toxicity of silver nanoparticles in zebrafish models [J].
Asharani, P. V. ;
Wu, Yi Lian ;
Gong, Zhiyuan ;
Valiyaveettil, Suresh .
NANOTECHNOLOGY, 2008, 19 (25)
[5]  
Bohn T., 2018, NON EXTRACTABLE POLY, P165
[6]   Global Economic Burden of Diabetes in Adults: Projections From 2015 to 2030 [J].
Bommer, Christian ;
Sagalova, Vera ;
Heesemann, Esther ;
Manne-Goehler, Jennifer ;
Atun, Rifat ;
Baernighausen, Till ;
Davies, Justine ;
Vollmer, Sebastian .
DIABETES CARE, 2018, 41 (05) :963-970
[7]  
Boukhayma A, 2018, SPRINGER THESES-RECO, P13, DOI 10.1007/978-3-319-68774-2_2
[8]   A Sub-0.5 Electron Read Noise VGA Image Sensor in a Standard CMOS Process [J].
Boukhayma, Assim ;
Peizerat, Arnaud ;
Enz, Christian .
IEEE JOURNAL OF SOLID-STATE CIRCUITS, 2016, 51 (09) :2180-2191
[9]   Highly Sensitive Raman Spectroscopy with Low Laser Power for Fast In-Line Reaction and Multiphase Flow Monitoring [J].
Braun, Frank ;
Schwolow, Sebastian ;
Seltenreich, Julia ;
Kockmann, Norbert ;
Roeder, Thorsten ;
Gretz, Norbert ;
Raedle, Matthias .
ANALYTICAL CHEMISTRY, 2016, 88 (19) :9368-9374
[10]   Incidence and Prediction of Unstable Blood Glucose Level among Critically Ill Patients: A Cohort Study [J].
Brinati, Lidia Miranda ;
Januario, Carla de Fatima ;
Balbino, Paula Coelho ;
Rezende Macieira, Tamara Goncalves ;
Cardoso, Silvia Almeida ;
Moreira, Tiago Ricardo ;
Salgado, Patricia de Oliveira .
INTERNATIONAL JOURNAL OF NURSING KNOWLEDGE, 2021, 32 (02) :96-102