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Andrey V. Kuznetsov

Researcher at North Carolina State University

Publications -  434
Citations -  13329

Andrey V. Kuznetsov is an academic researcher from North Carolina State University. The author has contributed to research in topics: Porous medium & Convection. The author has an hindex of 48, co-authored 420 publications receiving 11606 citations. Previous affiliations of Andrey V. Kuznetsov include National Academy of Sciences of Ukraine & Hanyang University.

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Effect of pharmaceutical agent degradation on axonal transport drug delivery: An analytical solution for a transient situation ☆

TL;DR: A model of the destruction of pharmaceutical agent complexes (PACs) is developed and it is shown that the shapes of the waves describing the PAC concentrations can be significantly affected by transport parameters.
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Effect of the width of regions with severed microtubules on transport of organelles down the axon

TL;DR: It is demonstrated that in all three cases increasing the width of organelle trap regions significantly decreases the flux of organelles down the axon compared to that in a healthy axon, in which case organelle traps are absent.
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How old are dense-core vesicles residing in en passant boutons: simulation of the mean age of dense-core vesicles in axonal arbours accounting for resident and transiting vesicle populations

TL;DR: A model that simulates DCV transport and capture in the axon terminals and makes it possible to predict the age density distribution of DCVs in en passant boutons as well as DCV mean age in boutons is developed.
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Convective Instability of the Darcy Flow in a Horizontal Layer With Symmetric Wall Heat Fluxes and Local Thermal Nonequilibrium

TL;DR: In this article, the linear stability of the parallel Darcy throughflow in a horizontal plane porous layer with impermeable boundaries subject to a symmetric net heating or cooling is investigated.
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A model of axonal transport drug delivery

TL;DR: A model of targeted drug delivery by means of active (motor-driven) axonal transport is developed and an analytical solution of the coupled system of transient equations describing conservations of these two populations of PACs is obtained by using Laplace transform.