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Mathematical model of cellular transport network self-organization and functioning K. A. Novikov, A. A. Romanyukha, A. N. Gratchev [et.al.]

Contributor(s): Novikov, K. A | Gratchev, Alexei N | Kzhyshkowska, Julia G | Melnichenko, O. A | Romanyukha, A. AMaterial type: ArticleArticleSubject(s): клеточный метаболизм | везикулы | эндосомы | клеточный транспорт | математические моделиGenre/Form: статьи в журналах Online resources: Click here to access online In: Mathematical models and computer simulations Vol. 7, № 5. P. 475-484Abstract: Contemporary cell investigation methods permit us to describe the molecular transport mechanisms of intracellular substances and cell components. Analysis of the completeness and the consistency of the existing transport network data and their utilization is an issue for mathematical modeling. Self-organization of the cell transport network and transport of the cargo and organelles upon it are modeled in this work by examples of the mitotic spindle formation, retrograde axonal transport, and lipid transport.
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Библиогр.: 27 назв.

Contemporary cell investigation methods permit us to describe the molecular transport mechanisms of intracellular substances and cell components. Analysis of the completeness and the consistency of the existing transport network data and their utilization is an issue for mathematical modeling. Self-organization of the cell transport network and transport of the cargo and organelles upon it are modeled in this work by examples of the mitotic spindle formation, retrograde axonal transport, and lipid transport.

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