M. Prishvin
Tbilisi State University
31 Papers
47 Citations
M. Prishvin is an academic researcher from Tbilisi State University. The author has contributed to research in topics: Antenna (radio) & Specific absorption rate. The author has an hindex of 4, co-authored 31 publications.
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Papers
Electromagnetic Exposure Study on a Human Located inside the Car Using the Method of Auxiliary Sources
V. Jeladze,T. Nozadze,Vasil Tabatadze,Vasil Tabatadze,I. A. Petoev-Darsavelidze,M. Prishvin,R.S. Zaridze +6 more
TL;DR: In this paper, the effect of the electromagnetic field of wireless communications on a human inside a car in the frequency ranges of 450, 900, and 1800 MHz, corresponding to the operational range of police radios and modern mobile phones, was analyzed.
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Improved numerical modelling of heat transfer in human tissue exposed to RF energy
TL;DR: A novel numerical model to simulate thermal response of human body tissues exposed to RF energy is presented, based on a new algorithm for the construction of a realistic blood vessel network, a new model of blood flow velocity distribution and an approach to solve the bio-heat equation in human tissue with variable and initially unknown blood temperature distribution.
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Application of the method of auxiliary sources to study the influence of resonance electromagnetic fields on a man in large spatial domains
TL;DR: In this article, the authors present the results of studies of the possible influence of electromagnetic radiation from wireless communication systems on a man in natural conditions, performed by the method of auxiliary sources (MAS).
11
EM exposure study on an inhomogeneous child model considering hand effect
T. Nozadze,V. Jeladze,M. Tsverava,Vasil Tabatadze,M. Prishvin,R.S. Zaridze +5 more
- 01 May 2017
TL;DR: In this paper, the human EM exposure simulation study considering the presence of a hand, holding the handset was presented, where the inhomogeneous child model was used to simulate thermal response of head tissues exposed to RF energy at 900 MHz, 1900 MHz and 3700 MHz frequencies.
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Soil's Characteristics Study and Buried Objects Visualization using Remote Sensing
Vasil Tabatadze,M. Prishvin,G. Saparishvili,D.G. Kakulia,R.S. Zaridze +4 more
- 29 Oct 2007
TL;DR: In this paper, the authors presented remote sensing methods for buried objects visualization, which consist of two parts: first one is determination soil's electrodynamic (like permittivity and dielectric loss tangent on frequency) characteristics in order to find the best EM monitoring pulse, for deep penetration of its frequency contents waves.
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