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2 Holographic Microscopy of Phase and Diffuse Objects …
in neural net dilated domain. Moreover, the saved information is unlimitedly reserved
unlimitedly in the limited space of neural net. This fact assumes the validity of neural
holography theory. Experimental and theoretical check of the processes of neural
holography has not been received yet.
Is there statistic theory of neural net which describes fundamental mentation? Is
it possible to detect the processes of neural holography in such a statistic theory?
In this connection, one work on neurophysiology neurons should be marked. This
is the article “Stochastic dynamics of the impulse: mathematical basis of neural holography” by Kunio Wasye, Mari Dzhiby, Tetsua Misava [223–227]. They proposed
stochastic model, which forms mathematical base for neural holography. It was
detected that linear wave equation for complex wave function describes impulse
motion in neural net. Neural holography is really statistic effect such as electron
holography.
The present work shows statistic theory of impulse collective motion in neural
net and stochastic model of neural net with absolutely new theoretical point of view.
Fundamental mentation is identified with statistic collective impulse motion. It was
detected that wave equation will describe such a collective motion. It has the same
form as a wave equation in quantum theory. Neural holography will have real meaning
of statistic phenomena similar to electron holography.
It is also important to notice that light holography is physical phenomenon
provided by light wave properties. Possibly there is also similarity with wave
phenomena in neural net. And, the authors of the present monograph, L. V. Tanin and
A. L. Tanin, detected that brain properties and processes are in general similar to the
properties and processes of three-dimensional dynamic hologram. The first feature
that coincides with the basis of holographic principles, i.e., the brain ability to record,
save and read (reconstruct) complete information about the object. In holography, it
is happened due to the interference of reference wave and reflected from the object
wave: the amplitude, phase, wavelength and the polarization of the reflected light
[78, 228– 238]. The second feature is the following: Large amount of information
is recorded, and its density can be 10
20 bit/cm
2 . The third feature is that record and
reading velocity of optical information from a dynamic hologram, the properties of
which (if assume) are based in the brain, is considerably higher than the velocity of
electric and chemical processing in a human and animal organisms. It allows more
easily understanding and explaining the mechanisms of low-frequency laser radiation influence on human and animal organisms with probabilities of all three models
of nerve impulses: electric, chemical, optical and their interconversion [239].
Large amount of information about nerve fiber structure was received with the
help of electron microscope. But the electron microscope requires specially prepared
drugs and is not used for lifetime studies. Optical, in this case holographic, methods
have a set of advantages in comparison with electrophysiological and electron microscopes. First of all, the reason for this is that being contactless these methods do not
distort the characteristics of the objects under consideration and on the other hand
they make it possible to highly visualize the structural changes. And holographic
interference methods allow detecting optical path difference, which is considerably
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