Ben Lamine A, Bouazra Y
Département de Physique, Faculté des Sciences de Monastir, Tunisia.
Chem Senses. 1997 Feb;22(1):67-75. doi: 10.1093/chemse/22.1.67.
The application of the grand canonical ensemble in statistical thermodynamics to the stimulus adsorption on the olfactory receptor sites, assuming some simplifying hypotheses, leads us to an expression of the olfactory response R, which is a function of various physico-chemical parameters involved in the olfaction mechanism, e.g. the stimulus concentration, the saturated vapor pressure, the power law exponent and the partition coefficient. This expression of R is in agreement with the olfactory response of the Hill model, but is more explicit. Stevens' law and the olfactory threshold expression are easily deduced from R. The expression of the threshold we established from R enabled us to explain some empirical relations in the literature between the parameters quoted above. The use of the grand canonical ensemble with the chemical potential notion gave us an interpretation of Stevens' law and a better understanding of the role of some parameters involved in the olfaction mechanism, such as saturated vapor pressure and power law exponent.
在统计热力学中,假设一些简化假设,将巨正则系综应用于嗅觉受体位点上的刺激吸附,这使我们得到嗅觉响应R的表达式,R是嗅觉机制中各种物理化学参数的函数,例如刺激浓度、饱和蒸气压、幂律指数和分配系数。R的这个表达式与希尔模型的嗅觉响应一致,但更明确。史蒂文斯定律和嗅觉阈值表达式很容易从R推导出来。我们从R建立的阈值表达式使我们能够解释文献中上述参数之间的一些经验关系。使用带有化学势概念的巨正则系综,我们对史蒂文斯定律有了一种解释,并且对嗅觉机制中一些参数(如饱和蒸气压和幂律指数)的作用有了更好的理解。