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Kvantovaya Elektronika, 2014 Volume 44, Number 7, Pages 614–632 (Mi qe15993)

This article is cited in 45 papers

Laser biophotonics

Characteristic responses of biological and nanoscale systems in the terahertz frequency range

A. A. Angelutsab, A. V. Balakinab, M. G. Evdokimovab, M. N. Esaulkovc, M. M. Nazarovc, I. A. Ozheredovab, D. A. Sapozhnikovab, P. M. Solyankinab, O. P. Cherkasovad, A. P. Shkurinovab

a International Laser Center of Moscow State University
b M. V. Lomonosov Moscow State University, Faculty of Physics
c Institute on Laser and Information Technologies, Russian Academy of Scienses, Shatura, Moskovskaya obl.
d Institute of Laser Physics, Siberian Branch, Russian Academy of Sciences, Novosibirsk

Abstract: This paper briefly examines methods for the generation of pulsed terahertz radiation and principles of pulsed terahertz spectroscopy, an advanced informative method for studies of complex biological and nanostructured systems. Some of its practical applications are described. Using a number of steroid hormones as examples, we demonstrate that terahertz spectroscopy in combination with molecular dynamics methods and computer simulation allows one to gain information about the structure of molecules in crystals. A 'terahertz colour vision' method is proposed for analysis of pulsed terahertz signals reflected from biological tissues and it is shown that this method can be effectively used to analyse the properties of biological tissues and for early skin cancer diagnosis.

Keywords: terahertz radiation, biological tissue, molecular crystal, colour vision.

PACS: 42.62.Be, 87.50.U-

Received: 26.05.2014


 English version:
Quantum Electronics, 2014, 44:7, 614–632

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