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Updated: Feb 14, 2026

Whole Body Vibration Methods with Survivors of Polio
Published on: October 17, 2018
Stereochemical study of mouse muscone receptor MOR215-1 and vibrational theory based on statistical physics formalism
Ismahene Ben Khemis1, Nesrine Mechi1, Abdelmottaleb Ben Lamine1
1Laboratory of Quantum Physics UR 11 ES 54, Faculty of Sciences of Monastir, Environnement Street, 5019, Monastir, Tunisia.
Abstract:
In the biosensor system, olfactory receptor sites could be activated by odorant molecules and then the biological interactions are converted into electrical signals by a signal transduction cascade that leads the toopening of ion channels, generating a current that leads into the cilia and depolarizes the membrane. The aim of this paper is to present a new investigation that allows determining the olfactory band using a monolayer adsorption with identical sites modeling which may also describe the static and the dynamic sensitivities through the expression of the olfactory response. Moreover, knowing the size of receptor site in olfactory sensory neurons provides valuable information about the relationship between molecular structure and biological activity. The determination of microreceptors and mesoreceptors is mostly carried out via physical adsorption and the radius is calculated using the Kelvin equation. The mean values of radius obtained from the maximum of the receptor size distributions peaks are 4 nm for ℓ-muscone and 6 nm for d-muscone.
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