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A A Arbuzov

Publications and source records attributed to A A Arbuzov.

7 recordsLinked to original sources

Dielectric study of neutral and charged hydrogels during the swelling process.

Dielectric spectroscopy measurements of conductivity were applied for understanding the change in the internal morphology of the neutral and permanently charged polyacrylamide (PAAm) hydrogels during the swelling process. For the first time four distinct peaks (each corresponding to a different swelling stage) in the conductivity of the neutral gel were observed during the swelling of this gel. These peaks are related to the distribution of dense polymer regions (they are defined as the "blobs") appearing in a microstructure of the given PAAm gel having at least four average sizes. For the charged gel the heterogeneity decreases due to the internal electric field of the charged sites. Thus, this characteristic behavior in the conductivity becomes almost negligible for the gel charged with permanent SO(3) (-) groups. It seems this fact causes considerable decrease in amplitude of the peaks and overall decrease the conductivity during the whole swelling process especially at high frequencies. The new theory of dielectric relaxation based on the fractional kinetics containing the complex power-law exponents was used for verifying these swelling processes and received an excellent confirmation in description of the real part of the complex conductivity Re[sigma(omega)] by the fitting function that follows from the suggested theory. The calculated power-law exponents describe the behavior of Re[sigma(omega,mm(0))] in the available frequency range (30 Hz-13 MHz) and for all values of the relative masses (volumes) measured in the process of the experiment. The excellent coincidence between the new theory and measured data gives a possibility to suggest more reliable physical picture of the swelling process that takes place in neutral/charged gels.

Journal Article↗

[The surfactant system and structure of the respiratory portion of the lungs during de-adaptation following a single exposure to acute pressure chamber hypoxia].

The effect of acute pressure chamber hypoxia on the surfactant system and respiratory segment structure of the lungs were studied in rats by physical, fluorescent microscopic and morphometric methods. Acute hypoxia decreases surface activity, induces changes in cellular and extracellular surfactant fluorescence and causes the development of diffuse vesicular emphysema. On the first day of adaptation atelectatic foci dominate over emphysema, and the pulmonary structure normalizes afterwards. During de-adaptation, surface activity and cellular surfactant fluorescence are higher than the control levels. Surface activity and extracellular surfactant fluorescence recover steadily by the fifth day of adaptation. The amount of phagocytized surfactant in alveolar macrophages is increased, with the changes being opposite to those characteristic of extracellular surfactant.

Adaptation, Physiological↗

[Comparative evaluation of the physical methods for studying the pulmonary surfactant system during exposure to acute hypoxia].

Physical methods were used in rat experiments to study the effect of acute pressure chamber hypoxia on the pulmonary surfactant in pulmonary extracts of different concentrations, bronchoalveolar washing and extract after washing. The surfactant activity in health and disease depended on the substrate and its concentration. The corrective coefficients for comparison of the surface activity of different substrates were calculated. Acute hypoxia induced a decrease in pulmonary surfactant activity. During deadaptation, the cellular surfactant first returns to normal followed by normalization of the extracellular surfactant.

Acute Disease↗

[Method for the quantitative study of pulmonary surfactant in histological preparations].

A method for quantitation of pulmonary surfactant directly on histological preparations is proposed. The method is based on measurements of the intensity of fluorescence of the inner alveolar layer on cryostate sections stained with rhodamine 6G according to Hackney. The measurement is done with a microfluorimeter in microV, and is peculiar in that in each case a standard alveole with fluorescent inner layer of th surfactant and a small part of the surrounding tissue gets on the photocathode of the microfluorimeter. This is achieved by setting the microfluorimeter diaphragm on a certain value with control of the object examined on the planimetric ocular mesh. The results of application of the method in examinations of the lungs of fetuses, stillborns, newborns dying with pulmonary pathology as well as lungs of experimental rats have demonstrated a high positive correlation (+ 0.96) with measurements of the surface tension of endotracheobronchial washings obtained in examinations by the method of Clements.

Animals↗

[Surfactant system of rat lungs in acute hypoxic hypoxia].

It was shown in rat experiments made with the use of a complex of physical and histological methods and qualitative analysis that changes in the pulmonary surfactant system (PSS) during exposure to altitude chamber hypoxia depend on its duration and intensity. The preliminal effect of hypoxia determines the decrease in PSS activity. The increase in PSS activity seems to be the "emergency compensation" that develops in response to the action of the extreme threshold stimulus. PSS activation is related to the structural changes in pulmonary lipids. An abrupt lowering of PSS activity should be treated as the "compensation disturbance" under the effect of the postliminal stimulus. The PSS and pulmonary structure change synchronously under hypoxia.

Acute Disease↗

[Device for determining surfactant status by the Pattle method].

An apparatus for determination of the state of the lung surfactant by measuring the stability of air bubles in a hanging drop by Pattle's method is described. Its construction permits multiple photographing of 5 hanging drops in identical areas at any intervals, thereby achieving standardization of the test (microscopy, photography) and shortening its performance. This device allows comparative study of surfactant in different parts of the lung which is particularly important in pathological conditions. It may be used for time-course microscopic examination and microphotography of other biological objects in hanging drops.

Humans↗