350 rub
Journal Electromagnetic Waves and Electronic Systems №8 for 2018 г.
Article in number:
Experimental study of influence of air and fluid at the results of a study of the mucous membrane of the oral cavity with a resonance near-field microwave tomography
Type of article: scientific article
DOI: 10.18127/j15604128-201808-02
UDC: 616.311:614.76-073.756.8.
Authors:

E.A. Durnovo – Dr.Sc.(Med.), Professor, Director of Stomatology Institute of Privolzhsky Research Medical University

E-mail: stomclin@pimunn.ru, www.stomat.nizhgma.ru

M.S. Marochkina – Ph.D.(Med.), Assistant, Department of Surgical Dentistry and Maxillofacial Surgery, 

Privolzhsky Research Medical University

E-mail: stomclin@pimunn.ru

S.V. Shashurina – Ph.D.(Med.), Assistant, Department of Surgical Dentistry and Maxillofacial Surgery, 

Privolzhsky Research Medical University

E-mail: stomclin@pimunn.ru

I.A. Glyavina – Assistant, Department of pediatric dentistry, Privolzhsky Research Medical University; 

Head of Department of Maxillofacial Surgery, Nizhniy Novgorod Region Children’s Clinical Hospital

E-mail: iaglyavina@gmail.com

A.G. Galka – Research Scientist, Institute of Applied Physics of RAS (N. Novgorod)

E-mail: galasnn@mail.ru, http://www.iapras.ru/staff/Galka1.html

D.V. Yanin – Ph.D.(Phys.-Math.), Research Scientist, Institute of Applied Physics of RAS (N. Novgorod) E-mail: dyanin@appl.sci-nnov.ru

Abstract:

The aim of the work is investigation the effect of the oral fluid presence to the microwave sensors data, during resonance near-field microwave imaging measurements of the mucous membrane of the oral cavity. The experimental results of the mucous membrane of the oral cavity electro-dynamic characteristics measurements were presented for 50 people in the presence of oral fluid and without it. It is shown, that is important to minimize the presence of oral fluid to increase the accuracy of the measurement.

Pages: 12-17
References
  1. Mota C.C., Fernandes L.O., Cimões R., Gomes A.S. Non-Invasive Periodontal Probing Through Fourier-Domain Optical Coherence Tomography // J. Periodontol. September 2015. 86(9). P. 1087−1094.
  2. Salmon B., D. Le Denmat. Intraoral ultrasonography: development of a specific high-frequency probe and clinical pilot study // Clin Oral Investig. April 2012. 16(2). P. 643−649.
  3. Yanin D.V., Galka A.G., Smirnov A.I., Kostrov A.V., Strikovskij A.V. Rezonansnaya blizhnepol'naya SVCh-diagnostika neodnorodny'x sred // Uspexi prikladnoj fiziki. 2014. T. 2. № 6. S. 555−570.
  4. Yanin D.V., Galka A.G., Smirnov A.I., Kostrov A.V. Diagnostika podpoverxnostny'x neodnorodnostej sredy' kvazistaticheskimi e'lektricheskimi polyami rezonansny'x SVCh-zondov // Zhurnal radioe'lektroniki. 2016. № 1. S. 1−18.
  5. Baloshin Yu.A., Sorokin A.A., Volchenko A.N. E'lektrodinamicheskaya model' VCh-blizhnepol'nogo zondirovaniya fizicheskix ob''ektov // Izvestiya VUZov. Priborostroenie. 2011. № 12 (54). S. 68−73.
  6. Pat. RF № 2381008. Sposob izmereniya e'lektrodinamicheskix parametrov biologicheskix tkanej i ustrojstvo dlya ego osushhestvleniya / Zagajnov V.E., Strikovskij A.V., Yanin D.V. i dr. Zayavka № 2008122815, prioritet ot 05.06.2008, zaregistrirovano 10.02.2010.
  7. Panteleeva G.A., Davoyan Z.V., Yanin D.V., Kostrov A.B., Kostrova M.A., Smirnov A.I. Rezonansnaya blizhnepol'naya SVCh-diagnostika dermatozov s ladonno-podoshvennoj lokalizacziej // Tezisy' nauchny'x rabot 3-go kongressa dermatovenerologov. Kazan'. 27−30 oktyabrya 2009. S. 51.
  8. Arsen'ev A.V., Volchenko A.N., Lixachyova L.V., Pecherskij V.I. Primenenie metoda VCh-blizhnepol'nogo zondirovaniya v diagnostike bioob''ektov // Nauchno-texnicheskij vestnik informaczionny'x texnologij, mexaniki i optiki. 2011. № 2(72). S. 154−157.
Date of receipt: 2 октября 2018 г.