350 rub
Journal Biomedical Radioelectronics №5 for 2014 г.
Article in number:
Electron-wave properties of the structured water containing environment of bio systems - a basis of further development of biomedical radio-electronic nanotechnologies of the extremely high-frequency and terahertz ranges
Keywords:
structuration of the water containing environment
not revolting radio-electronic methods
biomedical radio-electronic nanotechnologies
nano non-uniform surfaces
biocompatibility
the extremely high-frequency and terahertz radiations
IR-radiation
the mineral water
the return dispersion of electromagnetic waves by bio fabrics
Authors:
N.I. Sinitsyn Dr.Sc. (Phys.-Math.), Professor, Academy of Natural Sciences, Deputy Director for scientific work, Saratov Branch of Institute Radio Engineering and Electronics nm. V.A. Kotelnikov RAS
V.A. Elkin Ph.D. (Eng.), Associate Professor, Senior Research Scientist, Saratov Branch of Institute Radio Engineering and Electronics nm. V.A. Kotelnikov RAS
O.V. Betskii Dr.Sc. (Phys.-Math.), Professor, Academy of Natural Sciences, Head of Laboratory, Fryazino Branch of Institute of Radio Engineering and electronics nm. V.A. Kotelnikov RAS
V.A. Elkin Ph.D. (Eng.), Associate Professor, Senior Research Scientist, Saratov Branch of Institute Radio Engineering and Electronics nm. V.A. Kotelnikov RAS
O.V. Betskii Dr.Sc. (Phys.-Math.), Professor, Academy of Natural Sciences, Head of Laboratory, Fryazino Branch of Institute of Radio Engineering and electronics nm. V.A. Kotelnikov RAS
Abstract:
Electron-wave properties of the structured water containing environment of bio systems from positions of their use in biomedical radio-electronic nanotechnologies of quasi-optical frequencies are considered. It is established that experimentally found structuration of the water containing environment in live systems plays defining role at their interaction with low intensive electromagnetic radiations of extremely high frequency and terahertz ranges. On the basis of the analysis of the results presented in work and earlier researches of authors, it is shown that the frequency and efficiency of this interaction depend on structure of a nano no uniform surface of the material surrounding and structuring water containing environment. Natural minerals or artificial materials, and also the nanostructured objects delivered in live bodies in the form of nanostructures, nanocapsules, nanocontainers and medical preparations can be such materials, along with living tissues. It is established that structuration of the water containing environment of bio-fabrics - a fundamental factor of development of the new principles of biomedical radio-electronic nanotechnologies of extremely high frequency and terahertz medicine. The explanation of the mechanism of structuration of the water containing environment in biological and physical objects and the kristal-therapy mechanism is offered. Important positive results of use of joint impact on live structures of extremely high frequency and terahertz radiations with natural minerals tells about prospects of development of this direction. About same results of the researches conducted in clinical conditions testify also. Use of the found effects of structuration of the water containing environment in live systems opens in biomedical nanotechnologies of extremely high frequency and terahertz ranges of a way of construction on the new principles of early, noninvasive, reliable diagnostics and highly effective therapy of various pathologies, including a serious illness. The mechanism of biocompatibility of live and lifeless elements from essentially new positions of the analysis of a condition of the spectrum of the water containing environment in bio-fabrics and on the surface of an implanted material is discussed. On the basis of the received results the physics of medical properties of the mineral water is discussed. Features and possibilities of spectroscopy of the return dispersion of radiations of IR, THzF and UHF of ranges are considered by the bio-fabrics being in contact with external structures.
Pages: 46-59
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