of these studies showed that the usage of holographic methods in the area of
cardiology opens enormous possibilities for the conducting of contactless, noninvasive diagnostics at the pathology of cardiovascular system.
The created laser-holographic complex is a new generation device, which will
allow conducting studies over the operation of cardiovascular system, respiratory
apparatus, muscular system, etc. The principle of operation of the complex is based
on the defining and analysis of the field of the shift of the human chest surface
points, which are caused by the activity of mechanical waves arising during the
heart contraction. The formed illustrative picture of a shift field in different phases
of a cardiac cycle will allow deriving the information about the functional state of
valves and cardiac muscle and also about hemodynamic based on the chest surface.
The laser-holographic complex will allow conducting the study of regulation
mechanism, the integration of a nervous, cardiovascular, muscle and osteoarticular
systems at a new level. Apart from deriving new knowledge in the sphere of
scientific medicine, the complex can be widely applied in the clinical practice,
notably: conducting timely treatment of mostly widespread and hardly detected at
the early stages of diseases.
The usage of the given developments is planned in the sphere of neurology,
neurosurgery, cardiosurgery in the clinical practice alongside with electrocardiography, angiocardiography and other methods.
Besides, Leonid V. Tanin presented the results of a number of priority studies
conducted by him in the sphere of the development of the methods of resonance
interferometry and fluorescence for the studies of plasma (notably in FT-1 tokamak
device); dynamic resonance holography in the pairs of atomic sodium; developments of multiple long method of holographic contouring of the surface relief in
statics and dynamics; study of the coherent properties of the laser sources with
unstable mode structure; developments of the methods of holographic interference
microscopy for the measurement of the deformations of microobjects: For the first
time, the studies of the deformations of the resonator of the heterojunction laser
mirrors with double interostructure in the system GaAs—Al x Ga 1-x As were conducted. The perspectivity is shown of holographic microscopy application for the
research of the parameters of semiconducting lasers in the wide range of currents,
temperatures and mechanical loads.
The works of Leonid V. Tanin on the recording of dynamic holograms in a new
class of detecting media—alkali metal vapors that for several years defined the
analogous works of foreign authors are pioneering. He experimentally showed the
perspectivity of laser application on the colorants with reconfigurable wavelength of
radiation for the holographic interferometry (including resonance) and color
holography that considerably widen the possibilities of given scientific directions. It
is important to highlight that the results presented in Chap. 1 derived with the help
of resonance methods with high sensitivity of measurements are presented in this
monograph not accidentally. They give the possibility to develop on their basis new
scientific approaches toward the study of spectral and functional conditions of
medical and biological objects.
Foreword
xi
cardiology opens enormous possibilities for the conducting of contactless, noninvasive diagnostics at the pathology of cardiovascular system.
The created laser-holographic complex is a new generation device, which will
allow conducting studies over the operation of cardiovascular system, respiratory
apparatus, muscular system, etc. The principle of operation of the complex is based
on the defining and analysis of the field of the shift of the human chest surface
points, which are caused by the activity of mechanical waves arising during the
heart contraction. The formed illustrative picture of a shift field in different phases
of a cardiac cycle will allow deriving the information about the functional state of
valves and cardiac muscle and also about hemodynamic based on the chest surface.
The laser-holographic complex will allow conducting the study of regulation
mechanism, the integration of a nervous, cardiovascular, muscle and osteoarticular
systems at a new level. Apart from deriving new knowledge in the sphere of
scientific medicine, the complex can be widely applied in the clinical practice,
notably: conducting timely treatment of mostly widespread and hardly detected at
the early stages of diseases.
The usage of the given developments is planned in the sphere of neurology,
neurosurgery, cardiosurgery in the clinical practice alongside with electrocardiography, angiocardiography and other methods.
Besides, Leonid V. Tanin presented the results of a number of priority studies
conducted by him in the sphere of the development of the methods of resonance
interferometry and fluorescence for the studies of plasma (notably in FT-1 tokamak
device); dynamic resonance holography in the pairs of atomic sodium; developments of multiple long method of holographic contouring of the surface relief in
statics and dynamics; study of the coherent properties of the laser sources with
unstable mode structure; developments of the methods of holographic interference
microscopy for the measurement of the deformations of microobjects: For the first
time, the studies of the deformations of the resonator of the heterojunction laser
mirrors with double interostructure in the system GaAs—Al x Ga 1-x As were conducted. The perspectivity is shown of holographic microscopy application for the
research of the parameters of semiconducting lasers in the wide range of currents,
temperatures and mechanical loads.
The works of Leonid V. Tanin on the recording of dynamic holograms in a new
class of detecting media—alkali metal vapors that for several years defined the
analogous works of foreign authors are pioneering. He experimentally showed the
perspectivity of laser application on the colorants with reconfigurable wavelength of
radiation for the holographic interferometry (including resonance) and color
holography that considerably widen the possibilities of given scientific directions. It
is important to highlight that the results presented in Chap. 1 derived with the help
of resonance methods with high sensitivity of measurements are presented in this
monograph not accidentally. They give the possibility to develop on their basis new
scientific approaches toward the study of spectral and functional conditions of
medical and biological objects.
Foreword
xi
