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Interconnected-tubes Model of Hepatic Elimination

✍ Scribed by Yuri G. Anissimov; Anthony J. Bracken; Michael S. Roberts


Publisher
Elsevier Science
Year
1997
Tongue
English
Weight
285 KB
Volume
188
Category
Article
ISSN
0022-5193

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✦ Synopsis


The distributed-tubes model of hepatic elimination is extended to include intermixing between sinusoids, resulting in the formulation of a new, interconnected-tubes model. The new model is analysed for the simple case of two interconnected tubes, where an exact solution is obtained. For the case of many strongly-interconnected tubes, it is shown that a zeroth-order approximation leads to the convection-dispersion model. As a consequence the dispersion number is expressed, for the first time, in terms of its main physiological determinants: heterogeneity of flow and density of interconnections between sinusoids. The analysis of multiple indicator dilution data from a perfused liver preparation using the simplest version of the model yields the estimate 10.3 for the average number of interconnections. The problem of boundary conditions of the dispersion model is considered from the viewpoint that the dispersion-convection equation is a zeroth-order approximation to the equations for the interconnected-tubes model.


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