Stochastic Modelling of Solution Particle Movement: An Individual Case of Coupled Concentration Gradient Dependent and Independent Movements of EfavirenzReport as inadecuate




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This work proposed a coupled model of diffusion. It adopted two forms of coupled movement, the interacting and non-interacting driven forms of movement of a solution particle of efavirenz concentration measured in blood plasma. Data from projected pharmacokinetics in a patient on efavirenz were used. A relationship between interacting and non-interacting diffusion was suggested through a stochastic differential equation. The solution particle with a small value of relative acceleration drift to its active neighbourhood was projected to have a corresponding high transport-interacting diffusion.

KEYWORDS

Stochastic Differential Equation, Secondary Saturation Movement, Self Diffusion, Transport Diffusion

Cite this paper

Nemaura, T. 2017 Stochastic Modelling of Solution Particle Movement: An Individual Case of Coupled Concentration Gradient Dependent and Independent Movements of Efavirenz. Journal of Applied Mathematics and Physics, 5, 1027-1034. doi: 10.4236-jamp.2017.55090.





Author: Tafireyi Nemaura1,2

Source: http://www.scirp.org/



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