AbstractWe investigate the translocation of a single-stranded DNA through a pore which fluctuates between two conformations, using coupled master equations. The probability density function of the first passage times of the translocation process is calculated, displaying a triple-, double-, or monopeaked behavior, depending on the interconversion rates between the conformations, the applied electric field, and the initial conditions. The cumulative probability function of the first passage times, in a field-free environment, is shown to have two regimes, characterized by fast and slow timescales. An analytical expression for the mean first passage time of the translocation process is derived, and provides, in addition to the interconversion...
Single polymer passage through geometrically confined regions is ubiquitous in biology. Recent techn...
AbstractWe describe experiments and modeling results that reveal and explain the distribution of tim...
We investigate the dynamics of DNA translocation through a nanopore using 2D Langevin dynamics simul...
ABSTRACT We investigate the translocation of a single-stranded DNA through a pore which fluctuates b...
Protein nanopores show great potential as low-cost detectors in DNA sequencing devices. To date, res...
We investigate the dynamics of single-stranded DNA translocation through a nanopore driven by an ext...
A 1D Fokker-Planck simulation of DNA translocation through an electropore under finite pulses is pre...
Single molecule measurements of DNA transport through a nanopore We examined the voltage-driven move...
AbstractA 1D Fokker–Planck simulation of DNA translocation through an electropore under finite pulse...
DNA capture with high fidelity is an essential part of nanopore translocation. We report several imp...
The electrokinetic transport dynamics of deoxyribonucleic acid (DNA) molecules have recently attract...
In nanopore sensing, changes in ionic current are used to analyse single molecules in solution. The ...
We describe experiments and modeling results that reveal and explain the distribution of times that ...
We report experiments and modeling of translocation of double-strand DNA through a siliconoxide nano...
Engineered protein nanopores, such as those based on ?-hemolysin from Staphylococcus aureus have sho...
Single polymer passage through geometrically confined regions is ubiquitous in biology. Recent techn...
AbstractWe describe experiments and modeling results that reveal and explain the distribution of tim...
We investigate the dynamics of DNA translocation through a nanopore using 2D Langevin dynamics simul...
ABSTRACT We investigate the translocation of a single-stranded DNA through a pore which fluctuates b...
Protein nanopores show great potential as low-cost detectors in DNA sequencing devices. To date, res...
We investigate the dynamics of single-stranded DNA translocation through a nanopore driven by an ext...
A 1D Fokker-Planck simulation of DNA translocation through an electropore under finite pulses is pre...
Single molecule measurements of DNA transport through a nanopore We examined the voltage-driven move...
AbstractA 1D Fokker–Planck simulation of DNA translocation through an electropore under finite pulse...
DNA capture with high fidelity is an essential part of nanopore translocation. We report several imp...
The electrokinetic transport dynamics of deoxyribonucleic acid (DNA) molecules have recently attract...
In nanopore sensing, changes in ionic current are used to analyse single molecules in solution. The ...
We describe experiments and modeling results that reveal and explain the distribution of times that ...
We report experiments and modeling of translocation of double-strand DNA through a siliconoxide nano...
Engineered protein nanopores, such as those based on ?-hemolysin from Staphylococcus aureus have sho...
Single polymer passage through geometrically confined regions is ubiquitous in biology. Recent techn...
AbstractWe describe experiments and modeling results that reveal and explain the distribution of tim...
We investigate the dynamics of DNA translocation through a nanopore using 2D Langevin dynamics simul...