162
2 Holographic Microscopy of Phase and Diffuse Objects …
fact gives us the reason to hypothesize about the optical mechanism of information
transmission in the neuromuscular system (probably of the infrared radiation or
radiation of other ranges). It is interesting that Ranvie constriction area is a light
semiconductor in its essence (a kind of heterolaser) and this is also included in
this hypothesis as a self-sustained system (substation) that provides the nerve pulse
signal from attenuation, like the soliton spreading along the neuromuscular system.
In addition to that, the refractive characteristics of the myelinated nerve fibers are
investigated. The data also indicate the presence of the waveguide characteristics of
the nerve fibers and as a result of the nerve tissue. The further studies in this direction
make it possible to understand better the mechanism of action of laser radiation
while treating PNS-diseases, in particular, using the laser acupuncture method. It is
important to point out that the laser stimulating effect enhances if several biologically
active points, which are responsible for the disease, are simultaneously irradiated
(the interference effect). Under the experimental conditions, there were no structural
alterations in the sciatic nerve myelinated fiber of a frog to observe. In addition
to that, stimulating impact of the continuous laser radiation on the nerve fiber was
observed that is presented in a number of cases in a form of slight increase of action
potential. It was found that the laser radiation positively influences the regeneration
of the nerve system.
Considering the results of our research connected with detection of a waveguide mechanism of electromagnetic radiation distribution of waves along the nerve
fibers and the results of clinical study (using the laser acupuncture method and the
intravascular laser blood irradiation methods), we can assume that along with an electrical, chemical model, which explains the information transmission mechanisms in
a human organism via nerve formations, there exists an optical waveguide model as
well, which functions in the infrared radiation range as well as in radiations of other
ranges with the possibility of interconversions and interactions of electrical, chemical, optical (waveguide) pulses with each other: the chemical one into the optical
one, the electrical one into the optical one, the chemical one into the electrical one
and so on [223–227, 383–438].
2. The urgency of expanding the methodological base of the studies of hyperbary
impact mechanisms on the human organism follows from the analysis of literature. Being complex in its essence, this impact requires complex methodological
support.
The result of the conducted study is the development of several coherent-optical
(holographic and speckle-optical) methods for intravital research of isolated preparations of nerve and muscle fiber under normal and high pressure with simultaneous
electrophysical control.
The study conducted made it possible to make a number of conclusions.
It was the first time when there were shown perspectives of implementation of the
holographic interference method as a contactless noninvasive way for quantitative
recording of structural alterations of nerve and muscular fibers under hyperbary.
2 Holographic Microscopy of Phase and Diffuse Objects …
fact gives us the reason to hypothesize about the optical mechanism of information
transmission in the neuromuscular system (probably of the infrared radiation or
radiation of other ranges). It is interesting that Ranvie constriction area is a light
semiconductor in its essence (a kind of heterolaser) and this is also included in
this hypothesis as a self-sustained system (substation) that provides the nerve pulse
signal from attenuation, like the soliton spreading along the neuromuscular system.
In addition to that, the refractive characteristics of the myelinated nerve fibers are
investigated. The data also indicate the presence of the waveguide characteristics of
the nerve fibers and as a result of the nerve tissue. The further studies in this direction
make it possible to understand better the mechanism of action of laser radiation
while treating PNS-diseases, in particular, using the laser acupuncture method. It is
important to point out that the laser stimulating effect enhances if several biologically
active points, which are responsible for the disease, are simultaneously irradiated
(the interference effect). Under the experimental conditions, there were no structural
alterations in the sciatic nerve myelinated fiber of a frog to observe. In addition
to that, stimulating impact of the continuous laser radiation on the nerve fiber was
observed that is presented in a number of cases in a form of slight increase of action
potential. It was found that the laser radiation positively influences the regeneration
of the nerve system.
Considering the results of our research connected with detection of a waveguide mechanism of electromagnetic radiation distribution of waves along the nerve
fibers and the results of clinical study (using the laser acupuncture method and the
intravascular laser blood irradiation methods), we can assume that along with an electrical, chemical model, which explains the information transmission mechanisms in
a human organism via nerve formations, there exists an optical waveguide model as
well, which functions in the infrared radiation range as well as in radiations of other
ranges with the possibility of interconversions and interactions of electrical, chemical, optical (waveguide) pulses with each other: the chemical one into the optical
one, the electrical one into the optical one, the chemical one into the electrical one
and so on [223–227, 383–438].
2. The urgency of expanding the methodological base of the studies of hyperbary
impact mechanisms on the human organism follows from the analysis of literature. Being complex in its essence, this impact requires complex methodological
support.
The result of the conducted study is the development of several coherent-optical
(holographic and speckle-optical) methods for intravital research of isolated preparations of nerve and muscle fiber under normal and high pressure with simultaneous
electrophysical control.
The study conducted made it possible to make a number of conclusions.
It was the first time when there were shown perspectives of implementation of the
holographic interference method as a contactless noninvasive way for quantitative
recording of structural alterations of nerve and muscular fibers under hyperbary.
