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Biomedical subjects

V V Nasolodin

Publications and source records attributed to V V Nasolodin.

At least 19 recordsLinked to original sources

[Dynamics of several parameters of microelement metabolism, vitamin C intake and physical work capacity of forge workers during the course of the year].

Measurements of minerals and vitamins in forge workers throughout the year revealed that in autumn and winter blood levels of iron, hemoglobin, the activity of peroxidase and ceruloplasmin, dietary levels of iron, copper and manganese were higher than in spring and summer. Iron and copper metabolism was closely related to total protein in the serum and vitamin provision. Muscular performance of the forge workers was found reduced in spring and summer and was correlated with iron and copper metabolism.

Adult

[Correlations between various indicators of microelement metabolism and physical work capacity of blacksmiths].

Through correlation analysis, direct and proved interrelationships were established between the copper and iron exchange indices on the one hand, and the blood serum general protein levels and vitamin C sufficiency on the other. The blood serum copper levels and ceruloplasmin activity correlated with the blood serum alpha-globulins, whereas gamma-globulins were found in correlation with the hemoglobin concentrations, peroxidase and ceruloplasmin activity levels. Physical working capacity in blacksmiths was found interrelated with the direct and indirect trace element exchanges: hemoglobin in the blood, blood serum iron levels, peroxidase activity and copper content in blood cells.

Adult

[Changes in the content of iron, copper and manganese in animals during disadaptation caused by heavy loads].

The exchange of microelements in the animal organisms under the influence of overtraining with static loads has been studied. In chronic experiments on 11 male dogs of impure-breed by the method of emission spectral analysis it has been established that the heavy physical loads cause the decrease of iron content in blood and a simultaneous reduction of the iron content and, partially, copper and manganese content in the internal organs of animals. The addition of microelements to the usual food allowance promotes the faster restoring of the violated microelement balance and animals' capacity for work.

Adaptation, Physiological

[Copper and manganese metabolism during the administration of therapeutic doses of iron].

Examination of normal men and women with the aid of emission spectral analysis has shown that high muscular training led to the intensification of the retention of iron additionally administered to the body. This indicates concealed deficiency of this element in the body. Administration of therapeutic doses of iron essentially raised copper and manganese excretion from the body. As the iron dose was raised, copper and manganese elimination via the gastrointestinal tract progressed.

Adolescent