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One or more keywords matched the following items that are connected to Gillespie, Dirk
Item TypeName
Concept Ions
Academic Article Probing the role of negatively charged amino acid residues in ion permeation of skeletal muscle ryanodine receptor.
Academic Article Two rings of negative charges in the cytosolic vestibule of type-1 ryanodine receptor modulate ion fluxes.
Academic Article Ions and inhibitors in the binding site of HIV protease: comparison of Monte Carlo simulations and the linearized Poisson-Boltzmann theory.
Academic Article Tuning transport properties of nanofluidic devices with local charge inversion.
Academic Article An efficient algorithm for classical density functional theory in three dimensions: ionic solutions.
Academic Article Simulations of calcium channel block by trivalent cations: Gd(3+) competes with permeant ions for the selectivity filter.
Academic Article Efficiently accounting for ion correlations in electrokinetic nanofluidic devices using density functional theory.
Academic Article A method for treating the passage of a charged hard sphere ion as it passes through a sharp dielectric boundary.
Academic Article Separation of ions in nanofluidic channels with combined pressure-driven and electro-osmotic flow.
Academic Article Selecting ions by size in a calcium channel: the ryanodine receptor case study.
Academic Article Free-Energy Density Functional of Ions at a Dielectric Interface.
Academic Article Sarcoplasmic reticulum Ca2+, Mg2+, K+, and Cl- concentrations adjust quickly as heart rate changes.
Academic Article Restoring the consistency with the contact density theorem of a classical density functional theory of ions at a planar electrical double layer.
Academic Article A review of steric interactions of ions: Why some theories succeed and others fail to acount for ion size
Academic Article Selective adsorption of ions with different diameter and valence at highly-charged interfaces
Academic Article Surface charge regulation using classical density functional theory: the effect of divalent potential determining ions.
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