On Non-Invasive Glucose Measurements

被引:1
|
作者
Aroutiounian, V. M. [1 ]
机构
[1] Yerevan State Univ, Yerevan, Armenia
关键词
glucose; diabetes; noninvasive method; bio-impedance; skin; near IR range; Raman scattering; polarization vector; MULTISENSOR SYSTEM; BLOOD-GLUCOSE; SENSORS; FREQUENCY; SIMULATION; LIGHT;
D O I
10.1134/S1068337222040041
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Conventional glucose testing methods require the analysis of a droplet of blood from the patient's finger, which is painful and inconvenient. Such a one-time method carries an infectious risk and is not suitable for the long-term, daily continuous glucose monitoring often required today. Continuous glucose monitoring can provide timely information about the success of therapy during treatment and make appropriate adjustments. Currently, there is no single method of continuous monitoring. Currently, there is no single method of continuous monitoring. Glucose concentrations, although different kinds of non-invasive sensors have been developed for such monitoring on different physical principles. Such devices can provide painless, risk-free, inexpensive and frequent testing. This article discusses recent advances in non-invasive glucose control techniques.
引用
收藏
页码:405 / 416
页数:12
相关论文
共 50 条
  • [1] On Non-Invasive Glucose Measurements
    V. M. Aroutiounian
    Journal of Contemporary Physics (Armenian Academy of Sciences), 2022, 57 : 405 - 416
  • [2] Analysis and Design of a Microwave Coplanar Sensor for Non-Invasive Blood Glucose Measurements
    Cebedio, Maria Celeste
    Rabioglio, Lucas Andres
    Gelosi, Ivan Exequiel
    Ribas, Ramiro Avalos
    Uriz, Alejandro Jose
    Moreira, Jorge Castineira
    IEEE SENSORS JOURNAL, 2020, 20 (18) : 10572 - 10581
  • [3] Trends from Minimally Invasive to Non-invasive Glucose Measurements
    Gusev, M.
    Poposka, L.
    Guseva, E.
    Kostoska, M.
    Koteska, B.
    Simjanoska, M.
    Ackovska, N.
    Stojmenski, A.
    2020 43RD INTERNATIONAL CONVENTION ON INFORMATION, COMMUNICATION AND ELECTRONIC TECHNOLOGY (MIPRO 2020), 2020, : 315 - 320
  • [4] Non-Invasive Glucose Measurement Technologies: Recent Advancements and Future Challenges
    Jain, Prateek
    Joshi, Amit M.
    Mohanty, Saraju P.
    Cenkeramaddi, Linga Reddy
    IEEE ACCESS, 2024, 12 : 61907 - 61936
  • [5] Wearable non-invasive epidermal glucose sensors: A review
    Kim, Jayoung
    Campbell, Alan S.
    Wang, Joseph
    TALANTA, 2018, 177 : 163 - 170
  • [6] Recent Progress and Perspectives on Non-Invasive Glucose Sensors
    Davison, Nicholas B.
    Gaffney, Christopher J.
    Kerns, Jemma G.
    Zhuang, Qiandong D.
    DIABETOLOGY, 2022, 3 (01): : 56 - 71
  • [7] Invasive and Non-Invasive Glucose Monitoring Systems: A Review and Comparative Study
    Bader, Huda D.
    Jarjees, Mohammed S.
    Ahmed, Bassam T.
    PRZEGLAD ELEKTROTECHNICZNY, 2023, 99 (11): : 114 - 120
  • [8] Review of Non-Invasive Glucose Sensing Techniques: Optical, Electrical and Breath Acetone
    Shokrekhodaei, Maryamsadat
    Quinones, Stella
    SENSORS, 2020, 20 (05)
  • [9] Emerging EM wave sensors for non-invasive glucose monitoring: Review, techniques and developments
    Dutt, Sudershan
    Thakur, Rajat
    Kandwal, Abhishek
    Kumar, Pawan
    Jasrotia, Rohit
    Lakshmaiya, Natrayan
    Liu, Louis W. Y.
    Kumar, Sachin
    Luadang, Bancha
    Chan, Choon Kit
    SENSORS AND ACTUATORS REPORTS, 2025, 9
  • [10] Non-invasive glucose measurements in mice using mid-infrared emission spectroscopy
    Mueller, Marcel
    Grunze, Michael
    Leiter, Edward H.
    Reifsnyder, Peter C.
    Klueh, Ulrike
    Kreutzer, Don
    SENSORS AND ACTUATORS B-CHEMICAL, 2009, 142 (02) : 502 - 508