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Instruments and methods of investigation


Exhaled breath analysis: physical methods, instruments and medical diagnostics

 a, b,  a, b,  a, b,  a, b
a Institute for Physics of Microstructures, Russian Academy of Sciences, ul. Ul'yanova 46, Nizhnii Novgorod, 603950, Russian Federation
b Lobachevsky State University of Nizhny Novgorod (National Research University), prosp. Gagarina 23, Nizhny Novgorod, 603950, Russian Federation

This paper reviews the analysis of exhaled breath, a rapidly growing field in noninvasive medical diagnostics which is the intersection of physics, chemistry and medicine. Current data are presented on gas markers in human breath and how they are related to human diseases. Various physical methods for breath analysis are described. It is shown how measurement precision and data volume requirements have stimulated technological developments and identified the problems that need to be solved to put this method into clinical practice.

Fulltext pdf (596 KB)
Fulltext is also available at DOI: 10.3367/UFNe.0184.201407d.0739
PACS: 07.07.Df, 07.57.Pt, 33.20.−t, 87.85.Ox (all)
DOI: 10.3367/UFNe.0184.201407d.0739
URL: https://ufn.ru/en/articles/2014/7/c/
000343769200003
2014PhyU...57..684V
Citation: Vaks V L, Domracheva E G, Sobakinskaya E A, Chernyaeva M B "Exhaled breath analysis: physical methods, instruments and medical diagnostics" Phys. Usp. 57 684–701 (2014)
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Received: 8th, May 2013, revised: 11th, October 2013, 20th, December 2013

Оригинал: Вакс В Л, Домрачева Е Г, Собакинская Е А, Черняева М Б «Анализ выдыхаемого воздуха: физические методы, приборы и медицинская диагностика» УФН 184 739–758 (2014); DOI: 10.3367/UFNr.0184.201407d.0739

References (128) Cited by (60) ↓ Similar articles (12)

  1. Kontopidou F, Swift S Ja et al BMJ Open 16 (6) e108562 (2026)
  2. Silkin S V, Pekov S I et al CMM 26 (3) 223 (2026)
  3. Nijkoops A, Ciocca M et al Advanced Sensor Research 4 (7) (2025)
  4. Li L, Zhou L et al Chemical Engineering Journal 520 165633 (2025)
  5. Dudelev V V, Cherotchenko E D et al ’pс’?’?kh’? ф’?’?’?ch’?с’?’?kh ’?’?у’? 194 (01) 98 (2024) [Dudelev V V, Cherotchenko E D et al Phys. Usp. 67 (01) 92 (2024)]
  6. Revin L S, Pimanov D A et al Phys. Rev. Applied 22 (6) (2024)
  7. Belov S P, Golubiatnikov G Yu et al Radiophys Quantum El 67 (7) 536 (2024)
  8. Wang S, Jiao Ch et al Biomacromolecules 25 (5) 2715 (2024)
  9. Podgaetskii K ?iA, Lobintsov A ?iV ’? ’?р Bull. Lebedev Phys. Inst. 51 (S7) S507 (2024)
  10. Ivanov A S, Pavelyev D G et al Tech. Phys. 69 (2) 271 (2024)
  11. Kuzmin A G, Titov Yu A, Mitina G V Tech. Phys. 69 (4) 922 (2024)
  12. Wu P-Ju, Hung J-T et al APL Photonics 8 (10) (2023)
  13. Vaks V L, Anfertev V A et al Radiophys Quantum El 65 (10) 760 (2023)
  14. Vaks V, Anfertev V et al Applied Sciences 13 (3) 1573 (2023)
  15. Zaim O, Bouchikhi B et al Chemosensors 11 (6) 350 (2023)
  16. Navale S T, Majhi S M et al Encyclopedia of Materials: Electronics (2023) p. 452
  17. Majhi S M, Navale S T et al Inorg. Chem. Front. 10 (12) 3428 (2023)
  18. Patsiris S, Karpouza A et al Handbook of Computational Neurodegeneration Chapter 67 (2023) p. 441
  19. Kistenev Yu V, Borisov A V et al Journal Of Biophotonics 16 (12) (2023)
  20. Patsiris S, Karpouza A et al Handbook of Computational Neurodegeneration Chapter 67-2 (2023) p. 1
  21. Kistenev Yu V, Cuisset A et al Radiophys Quantum El 65 (10) 746 (2023)
  22. Rothbart N, Stanley V et al J. Breath Res. 16 (4) 046001 (2022)
  23. Semenova A, Yablokov A et al 2022 IEEE 8th All-Russian Microwave Conference (RMC), (2022) p. 353
  24. Vaks V, Domracheva E et al 2022 IEEE 8th All-Russian Microwave Conference (RMC), (2022) p. 27
  25. Golyak I S, Kareva E R et al Computer Optics 46 (4) (2022)
  26. Dorovskikh S I, Klyamer D D et al Biosensors 12 (7) 476 (2022)
  27. Fufurin I, Berezhanskiy P et al Materials 15 (9) 2984 (2022)
  28. Vaks V, Aizenshtadt A et al Applied Sciences 11 (16) 7562 (2021)
  29. Patsiris S, Karpouza A et al Handbook of Computational Neurodegeneration Chapter 67-1 (2021) p. 1
  30. Golyak I S, Fufurin I L et al Saratov Fall Meeting 2020: Optical and Nanotechnologies for Biology and Medicine, (2021) p. 54
  31. Scherbakova A V, Anfimov D R et al Saratov Fall Meeting 2020: Optical and Nanotechnologies for Biology and Medicine, (2021) p. 63
  32. Smolyanskaya O, Petrov N et al 2020 45th International Conference on Infrared, Millimeter, and Terahertz Waves (IRMMW-THz), (2020) p. 1
  33. Lykina A, Konnikova M et al 2020 International Conference Laser Optics (ICLO), (2020) p. 1
  34. Kistenev Yu V, Teteneva A V et al Opt. Spectrosc. 128 (6) 809 (2020)
  35. Kim Ja-H, Mirzaei A et al Sensors And Actuators B: Chemical 313 128040 (2020)
  36. Rodinkov O V, Bugaichenko A S, Moskvin L N J Anal Chem 75 (1) 1 (2020)
  37. Fufurin I L, Golyak I S et al Optics in Health Care and Biomedical Optics X, (2020) p. 110
  38. (INTERNATIONAL CONFERENCE ON SCIENCE AND APPLIED SCIENCE (ICSAS2020)) Vol. INTERNATIONAL CONFERENCE ON SCIENCE AND APPLIED SCIENCE (ICSAS2020)Search for new materials for monitoring ammonia and express diagnostics of diseasesE. O.RehovskayaI. Yu.Nagibina2296 (2020) p. 050018
  39. Yachmenev A E, Lavrukhin D V et al Opt. Eng. 59 (06) 1 (2019)
  40. Rodinkov O V, Vagner E A et al J Anal Chem 74 (9) 877 (2019)
  41. Rothbart N, Holz O et al Sensors 19 (12) 2719 (2019)
  42. Rothbart N, Schmalz K, Hubers H-W 2019 44th International Conference on Infrared, Millimeter, and Terahertz Waves (IRMMW-THz), (2019) p. 1
  43. Kuleshov D O, Kogan V T et al J. Phys.: Conf. Ser. 1400 (3) 033015 (2019)
  44. Abramov P I, Kuznetsov E V et al J Appl Spectrosc 86 (1) 1 (2019)
  45. Bykova A A, Malinovskaya L K et al Kardiologiia 59 (7) 61 (2019)
  46. Bykova A A, Malinovskaya L K et al Kardiol. Serdechno-sosud. Khir. 12 (6) 568 (2019)
  47. Choi M S, Bang Ja H et al Sensors And Actuators B: Chemical 264 150 (2018)
  48. Semenova A, Guseva Yu S et al EPJ Web Conf. 195 10011 (2018)
  49. Knyazev B A, Serbo V G Phys.-Usp. 61 (5) 449 (2018)
  50. Vaks V L, Domracheva E G et al EPJ Web Conf. 195 10014 (2018)
  51. Vaks V L, Semenova A V et al Opt Quant Electron 49 (5) (2017)
  52. Yan Sh, Liu X et al Adv Materials Inter 4 (22) (2017)
  53. Kim Ja-H, Mirzaei A et al Sensors And Actuators B: Chemical 249 177 (2017)
  54. Vaks V L, Domracheva E G et al Radiophys Quantum El 59 (10) 821 (2017)
  55. (Terahertz Emitters, Receivers, and Applications VII) Vol. Terahertz Emitters, Receivers, and Applications VII Multifrequency high precise subTHz-THz-IR spectroscopy for exhaled breath research ManijehRazeghiAlexei N.BaranovJohn M.ZavadaDimitrisPavlidisVladimir L.VaksElena G.DomrachevaSergey I.PripolzinMariya B.Chernyaeva9934 (2016) p. 99340E
  56. Knap W, But D B et al Int. J. Hi. Spe. Ele. Syst. 25 (03n04) 1640017 (2016)
  57. Vaks V, Balakirev V et al 2016 Global Symposium on Millimeter Waves (GSMM) & ESA Workshop on Millimetre-Wave Technology and Applications, (2016) p. 1
  58. Yablokov A A, Anfertev V A et al IEEE Trans. THz Sci. Technol. 5 (5) 845 (2015)
  59. Koshelets V P, de Lange A et al IEEE Trans. THz Sci. Technol. 5 (4) 687 (2015)
  60. Zenov K G, Miroshnichnko I B et al (AIP Conference Proceedings) Vol. 1688 (2015) p. 030001

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