AbstractA detailed understanding of the kinetics of DNA motion though nanometer-scale pores is important for the successful development of many of the proposed next-generation rapid DNA sequencing and analysis methods. Many of these approaches require DNA motion through nanopores to be slowed by several orders of magnitude from its native translocation velocity so that the translocation times for individual nucleotides fall within practical timescales for detection. With the increased dwell time of DNA in the pore, DNA-pore interactions begin to play an increasingly important role in translocation kinetics. In previous work, we and others observed that when the DNA dwell time in the pore is substantial (>1 ms), DNA motion in α-hemolysin (α-...
We investigate the dynamics of DNA translocation through a nanopore using 2D Langevin dynamics simul...
We report experimental escape time distributions of double-stranded DNA molecules initially threaded...
Single molecule measurements of DNA transport through a nanopore We examined the voltage-driven move...
A detailed understanding of the kinetics of DNA motion though nanometer-scale pores is important for...
AbstractA detailed understanding of the kinetics of DNA motion though nanometer-scale pores is impor...
AbstractThroughput and resolution of DNA sequence detection technologies employing nanometer scale p...
ABSTRACT Throughput and resolution of DNA sequence detection technologies employing nanometer scale ...
ABSTRACT We investigate the voltage-driven translocation dynamics of individual DNA molecules throug...
AbstractWe investigate the voltage-driven translocation dynamics of individual DNA molecules through...
AbstractVoltage-driven transport of double-stranded DNA through nanoscale pores holds much potential...
We investigate the dynamics of DNA translocation through a nanopore using 2D Langevin dynamics simul...
We investigate the dynamics of DNA translocation through a nanopore using 2D Langevin dynamics simul...
Single molecule nanopore sensing is emerging as a powerful tool for probing the properties of indivi...
We investigate the dynamics of single-stranded DNA translocation through a nanopore driven by an ext...
AbstractWe have previously demonstrated that a nanometer-diameter pore in a nanometer-thick metal-ox...
We investigate the dynamics of DNA translocation through a nanopore using 2D Langevin dynamics simul...
We report experimental escape time distributions of double-stranded DNA molecules initially threaded...
Single molecule measurements of DNA transport through a nanopore We examined the voltage-driven move...
A detailed understanding of the kinetics of DNA motion though nanometer-scale pores is important for...
AbstractA detailed understanding of the kinetics of DNA motion though nanometer-scale pores is impor...
AbstractThroughput and resolution of DNA sequence detection technologies employing nanometer scale p...
ABSTRACT Throughput and resolution of DNA sequence detection technologies employing nanometer scale ...
ABSTRACT We investigate the voltage-driven translocation dynamics of individual DNA molecules throug...
AbstractWe investigate the voltage-driven translocation dynamics of individual DNA molecules through...
AbstractVoltage-driven transport of double-stranded DNA through nanoscale pores holds much potential...
We investigate the dynamics of DNA translocation through a nanopore using 2D Langevin dynamics simul...
We investigate the dynamics of DNA translocation through a nanopore using 2D Langevin dynamics simul...
Single molecule nanopore sensing is emerging as a powerful tool for probing the properties of indivi...
We investigate the dynamics of single-stranded DNA translocation through a nanopore driven by an ext...
AbstractWe have previously demonstrated that a nanometer-diameter pore in a nanometer-thick metal-ox...
We investigate the dynamics of DNA translocation through a nanopore using 2D Langevin dynamics simul...
We report experimental escape time distributions of double-stranded DNA molecules initially threaded...
Single molecule measurements of DNA transport through a nanopore We examined the voltage-driven move...