2.2 Holographic Study of Structural and Functional Characteristics …
127
of transmission density are the same), the sequences of normal and immune lymphocytes differ by the distribution of separate variants. It is seen from the histogram
that possibility of finding a cell with ϕ-magnitude exceeding the magnitude of the
modal class is about two times higher for the lymphocytes in the control than for the
immune lymphoid cells.
The arithmetic average values ϕ for the control and the immune lymphocytes
are ¯
ϕ k = 0.40 and ¯
ϕ i = 0.38, respectively, when the average measurement error is
defined by ¯
ϕ:
S ¯
ϕ = 0.005. To estimate the accuracy of difference between the arithmetic values,
the normalized deviation t was calculated [345]:
t =
ϕ k − ϕ i
S (ϕk −ϕ i )
,
(2.36)
where the root-sum-square uncertainty of the difference is in the denominator.
Calculation of the value by the experiment data gives t = 2.28 that corresponds
to the high probability of the difference accuracy (p = 0.9952). Thus, the shift of
densities to small values is observed in the group of immune lymphocytes compared
to the normal ones that can serve as a criterion for their distinction.
It is known that in the process of immunization characterized by high nuclearcytoplasmic relationship and a nucleus with densely aggregated chromatin, small
lymphocytes with the diameter of 5–8 μm transform into middle ones with the
diameter of 8–12 μm with less dense nuclear chromatin and into big ones (diameter
of 12–20 μm), the so-called blasts, which have a nuclear with the loose structure
of chromatin. During the immunization there were noted the changes of the average
incursion introduced by the cell. Apparently, these changes and changes of density
connected with them characterize the process of nuclei loosening, which precedes
the growth of lymphoid elements. The obtained data can be of great interest for
applied medicine at the development of new laboratory diagnostic methods. They
give the opportunity to establish a criterion, which makes it possible to carry out the
differentiation of immune and non-immune lymphocytes that can be of interest to
contemporary immunology.
2.3 Holographic Study with Electrophysiological Control
of Hyperbary Impact on Isolated Preparations
of Solitary Nerve Fibers, Nerve Fibers as a Part
of the Nerve Trunk and Solitary Muscle Fibers
2.3.1 Approaches to the Study of Mechanisms of Hyperbary
Impact in Humans
According to literature data, hyperbary impact on living organisms indicates the
complex character of the impact of the given physical factor. During the application
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