188
3 Holographic Interferometry for Studying …
of the Republic of Belarus. In the experimental sample development of the laserholographic complex (holographic cardiograph), there took part a lot of scientists and
specialists from different establishments of the NAS of Belarus and of the Ministry
of Health of the Republic of Belarus organized by the author of this project into
a temporary working group. These are the Institute of Cardiology of the Ministry
of Health of the Republic of Belarus, the Institute of Neurology, Neurosurgery and
Physiotherapy of the Ministry of Health of the Republic of Belarus, the Institute of
Electronics of the NAS of Belarus, the Institute of Applied Physics of the NAS of
Belarus, the Institute of Physics of the NAS of Belarus and many others.
Great support and help in implementation of this project was provided by
P.A. Apanasevich, Academician, Professor, Doctor of physical and mathematical
sciences, Director of the Institute of Physics of the NAS of Belarus; A.S. Rubanov,
Academician, Professor, Doctor of physical and mathematical sciences, Head of the
Optical Holography Laboratory of this establishment; I.P. Antonov, Academician,
Professor, Doctor of medical sciences, Director of the Institute of Neurology, Neurosurgery and Physiotherapy of the Ministry of Health of the Republic of Belarus; G.I.
Sidorenko, Academician, Professor, Doctor of medical sciences, Director of Institute
of Cardiology of the Institute of Neurology, Neurosurgery and Physiotherapy of the
Ministry of Health of the Republic of Belarus; A.V. Frolov, Doctor of biological
sciences; V.V. Mironchik, Candidate of medical sciences; A.A. Kovalev, Professor,
Doctor of physical and mathematical sciences, Deputy Director of the Institute of
Electronics of the NAS of Belarus, Corresponding Member; B.N. Tyushkevich,
Doctor of physical and mathematical sciences; Y.F. Morgun, Candidate of physical
and mathematical sciences; F.G. Drik, research worker of the Institute of Applied
Physics of the NAS of Belarus, Candidate of physical and mathematical sciences.
The author is very grateful to everyone who helped in realization of this project.
As a basis there were assumed author’s evidences in the sphere of holographic
interferometry, as well as the results of the research published in a number of articles
of native and foreign magazines, for example [89].
It is also important to point out that the author of this project would not have begun
this project if in the Institute of Electronics of the NAS of Belarus there had been
no groundwork in developing a ruby laser with a double radiation monopulses and
convertible period of their sequence. This laser exceeds on its parameters the best
developments of foreign companies (Rottencolber holosystem (FRG), Apolo Laser
Corp. (USA), etc.).
The author’s idea connected with the creation (development and production) of the
holographic cardiograph was realized within the framework of the program “Beloptics” as an experimental sample. But the increased in 1994 rates of inflation, the
sudden growth of equipment costs, as well as increase of expenses for remuneration of labor, which was not indemnified due to indexation required correction of
the respective parts of the theme. This reason and the necessity of development of
expensive hard- and software for controlling the working regimes of the complex
with inputting and qualified analysis of holographic interferograms on computers
required the extension of terms for fulfillment of this task and better financing of
the work. That is why the decision was taken to create only an experimental sample
3 Holographic Interferometry for Studying …
of the Republic of Belarus. In the experimental sample development of the laserholographic complex (holographic cardiograph), there took part a lot of scientists and
specialists from different establishments of the NAS of Belarus and of the Ministry
of Health of the Republic of Belarus organized by the author of this project into
a temporary working group. These are the Institute of Cardiology of the Ministry
of Health of the Republic of Belarus, the Institute of Neurology, Neurosurgery and
Physiotherapy of the Ministry of Health of the Republic of Belarus, the Institute of
Electronics of the NAS of Belarus, the Institute of Applied Physics of the NAS of
Belarus, the Institute of Physics of the NAS of Belarus and many others.
Great support and help in implementation of this project was provided by
P.A. Apanasevich, Academician, Professor, Doctor of physical and mathematical
sciences, Director of the Institute of Physics of the NAS of Belarus; A.S. Rubanov,
Academician, Professor, Doctor of physical and mathematical sciences, Head of the
Optical Holography Laboratory of this establishment; I.P. Antonov, Academician,
Professor, Doctor of medical sciences, Director of the Institute of Neurology, Neurosurgery and Physiotherapy of the Ministry of Health of the Republic of Belarus; G.I.
Sidorenko, Academician, Professor, Doctor of medical sciences, Director of Institute
of Cardiology of the Institute of Neurology, Neurosurgery and Physiotherapy of the
Ministry of Health of the Republic of Belarus; A.V. Frolov, Doctor of biological
sciences; V.V. Mironchik, Candidate of medical sciences; A.A. Kovalev, Professor,
Doctor of physical and mathematical sciences, Deputy Director of the Institute of
Electronics of the NAS of Belarus, Corresponding Member; B.N. Tyushkevich,
Doctor of physical and mathematical sciences; Y.F. Morgun, Candidate of physical
and mathematical sciences; F.G. Drik, research worker of the Institute of Applied
Physics of the NAS of Belarus, Candidate of physical and mathematical sciences.
The author is very grateful to everyone who helped in realization of this project.
As a basis there were assumed author’s evidences in the sphere of holographic
interferometry, as well as the results of the research published in a number of articles
of native and foreign magazines, for example [89].
It is also important to point out that the author of this project would not have begun
this project if in the Institute of Electronics of the NAS of Belarus there had been
no groundwork in developing a ruby laser with a double radiation monopulses and
convertible period of their sequence. This laser exceeds on its parameters the best
developments of foreign companies (Rottencolber holosystem (FRG), Apolo Laser
Corp. (USA), etc.).
The author’s idea connected with the creation (development and production) of the
holographic cardiograph was realized within the framework of the program “Beloptics” as an experimental sample. But the increased in 1994 rates of inflation, the
sudden growth of equipment costs, as well as increase of expenses for remuneration of labor, which was not indemnified due to indexation required correction of
the respective parts of the theme. This reason and the necessity of development of
expensive hard- and software for controlling the working regimes of the complex
with inputting and qualified analysis of holographic interferograms on computers
required the extension of terms for fulfillment of this task and better financing of
the work. That is why the decision was taken to create only an experimental sample
