Search PubMed⌕ Search

PubMed · 3361840

[Method for evaluating biorhythm changes in human physiological functions].

Abstract

The source did not provide an abstract. Follow the original record for more information.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

I F Vaĭsburd. [Method for evaluating biorhythm changes in human physiological functions].. https://pubmed.ncbi.nlm.nih.gov/3361840/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

[Drugs affect and are affected by body temperature].

There are several connections between drugs and cold. Drugs can lower body temperature; ambient temperature together with the adaptive capacity of the organism can influence various physiological and also pharmacological processes; furthermore, hypothermia can have an effect on drug pharmacokinetics and pharmacodynamics which is of considerable clinical importance, since the application of hypothermia as a therapeutic adjuvant is on the rise. The present paper discusses different aspects of these problems, concluding with a proposal that it may now be time to ask for the results of a "cold effect test" before a new drug is accepted for common use, especially in hypothermic patients.

Body Temperature↗

Molecular dynamics simulations of stratum corneum lipid models: fatty acids and cholesterol.

We report the results of an investigation on stratum corneum lipids, which present the main barrier of the skin. Molecular dynamics simulations, thermal analysis and FTIR measurements were applied. The primary objective of this work was to study the effect of cholesterol on skin structure and dynamics. Two molecular models were constructed, a free fatty acid bilayer (stearic acid, palmitic acid) and a fatty acid/cholesterol mixture at a 1:1 molar ratio. Our simulations were performed at constant pressure and temperature on a nanosecond time scale. The resulting model structures were characterized by calculating surface areas per headgroup, conformational properties, atom densities and order parameters of the fatty acids. Analysis of the simulations indicates that the free fatty acid fraction of stratum corneum lipids stays in a highly ordered crystalline state at skin temperatures. The phase behavior is strongly influenced when cholesterol is added. Cholesterol smoothes the rigid phases of the fatty acids: the order of the hydrocarbon tails (mainly of the last eight bonds) is reduced, the area per molecule becomes larger, the fraction of trans dihedrals is lower and the hydrophobic thickness is reduced. The simulation results are in good agreement with our experimental data from FTIR analysis and NIR-FT Raman spectroscopy.

Body Temperature↗