Использование метода лазерно-индуцированной спектроскопии для проведения анализа электролитов в сыворотке крови
Работая с нашим сайтом, вы даете свое согласие на использование файлов cookie. Это необходимо для нормального функционирования сайта, показа целевой рекламы и анализа трафика. Статистика использования сайта отправляется в «Яндекс» и «Google»
Научный журнал Моделирование, оптимизация и информационные технологииThe scientific journal Modeling, Optimization and Information Technology
Online media
issn 2310-6018

Using the laser-induced spectroscopy method to analyze electrolytes in blood serum

Magomedsaidova S.Z.   Magomedova S.V.  

UDC 616.316+616.366]-003.7+611-018.54-073.584
DOI: 10.26102/2310-6018/2023.43.4.027

  • Abstract
  • List of references
  • About authors

The analysis of electrolytes in the blood serum helpsto identify the pathological state of the human body by means of indicators of calcium, sodium and potassium. It is possible to quantify the indicated indicators by means of spectroscopy (LIBS), which makes it possible to identify sufficiently accurate data in numerical values. The aim of the study is to form the possibility of a more accurate prediction of probable diseases by means of indicators of sodium, calcium and potassium in the blood. The research process was carried out by using the available biomaterials presented by the INVITRO laboratory of Makhachkala, the Republic of Dagestan, which were subsequently used for the analysis of electrolytes in blood serum on filter paper and slides. In order to predict the concentrations of potassium, sodium and calcium under consideration by means of LIBS, the method of partial least squares regression was applied. For serum samples, higher prediction accuracy with excellent linearity was achieved both on slides and on filter paper. For blood serum on slides, the prediction accuracy of K, Na, Ca was 1,45 %, 0,61 % and 3,80 %. Moreover, for blood serum on filter paper with the existing errors were 7,47 %, 1,56 % and 0,52 %. Results. The results of the study suggest that LIBS portable tools will be an excellent tool for clinical practice in real time.

1. Noskin V.A. Laser correlation spectroscopy of quasielastic scattering. Advances in physical sciences. 1987;153(10):358–360. (In Russ.).

2. Nadezhdinsky A.I., Ponurovsky Ya.Ya. Work on the analytical use of diode laser spectroscopy at the Institute of General Physics of the Russian Academy of Sciences. ZHAKH. 2018;73(2):153–158. (In Russ.).

3. Rogatkin D.A, Dunaev A.V, Lapaeva L.G. Metrological support of methods and devices for non-invasive medical spectrophotometry. Medical equipment. 2010;(2):30–37. (In Russ.).

4. Lapitan D.G., Rogatkin D.A. Functional studies of the blood microcirculation system using laser Doppler flowmetry in clinical medicine: problems and prospects. Almanac of Clinical Medicine. 2016;44(2):249–259. DOI: 10.18786/2072-0505-2016-44-2-249-259. (In Russ.).

5. Sosnin D.Yu., Falkov B.F., Nenasheva O.Yu. Assessment of the correctness of cell recognition by the automatic blood analysis system Vision Hema. Ural Medical Journal. 2012;105(13):131–135. (In Russ.).

6. Illarionova E.A., Syrovatsky I.P. Photometry. Theoretical foundations of the method. Practical application of the method. A textbook. Tutorial. Irkutsk; 2013. 83 p. (In Russ.).

7. Sosnin D.Yu., Nenasheva O.Yu., Kubarev O.G. Automated blood smear analysis systems and hematology analyzers – competitors or partners? Laboratoriya LPU. 2014;4:34–37. (In Russ.).

8. Hematological analyzers. Interpretation of blood tests: Guidelines. M.-Tver: Triada Publishing House LLC; 2012. (In Russ.).

9. Webster J.G., Kamyshko I.V., Kalashnik D.A. Medical devices. Development and application. Мoscoe, Meditsinskaya kniga; 2015. 720 p. (In Russ.).

10. Komarov G.D. Polysystemic sanogenetic monitoring. Moscow, MIPKRO; 2001. 74 p. (In Russ.).

11. Singh V.K., Rai A.K. Prospects for laser-induced breakdown spectroscopy for biomedical applications: a review. Lasers Med Sci. 2021;26(5):673–687.

12. Winnand P., Boernsen K.O., Bodurov G., Lammert M. Evaluation of electrolyte element composition in human tissue by laser-induced breakdown spectroscopy (LIBS). Sci Rep. 2022;12(1):163–181.

Magomedsaidova Sarat Zagidovna

Dagestan State Technical University

Makhachkala, the Russian Federation

Magomedova Sabina Vladimirovna

Email: djami_ramazanova@mail.ru

Dagestan State Technical University

Makhachkala, the Russian Federation

Keywords: blood serum, clinical practice, analytical method, real time

For citation: Magomedsaidova S.Z. Magomedova S.V. Using the laser-induced spectroscopy method to analyze electrolytes in blood serum. Modeling, Optimization and Information Technology. 2023;11(4). Available from: https://moitvivt.ru/ru/journal/pdf?id=1469 DOI: 10.26102/2310-6018/2023.43.4.027 (In Russ).

98

Full text in PDF

Received 27.10.2023

Revised 05.12.2023

Accepted 25.12.2023

Published 26.12.2023