Biological ion channels are able to generate coherent and oscillatory signals from intrinsically noisy and stochastic components for ultrasensitive discrimination with the use of stochastic resonance, a concept not yet demonstrated in human-made analogs. We show that a single-walled carbon nanotube demonstrates oscillations in electroosmotic current through its interior at specific ranges of electric field that are the signatures of coherence resonance. Stochastic pore blocking is observed when individual cations partition into the nanotube obstructing an otherwise stable proton current. The observed oscillations occur because of coupling between pore blocking and a proton-diffusion limitation at the pore mouth. The result illustrates how s...
We study how the spiking regularity of a single stochastic Hodgkin–Huxley neuron is effected in the ...
The constant development of mesoscopic physics demands ever more precise and fast measurement and co...
AbstractThe voltage-gated ion channels embedded in biological membranes play crucial roles on the ge...
Noise can help signal detection at the nano–level. Experiments on a single–walled carbon nanotube tr...
Single walled carbon nanotube is a tubular carbon nanomaterial having the structure of a rolled-up g...
Carbon nanotubes (CNTs) and graphene are the rolled and flat analogues of graphitic carbon, respecti...
Graduation date: 2015Low-dimensional electronic materials offer a platform to observe biological pro...
By use of a stochastic generalization of the Hodgkin-Huxley model we investigate both the phenomena ...
From electrical current to ecological and biological systems, fluctuations are characterised based o...
Many processes in life are based on ion currents and membrane voltages controlled by a sophisticated...
The problem of predicting selective transport of ions through nano-pores from their structure in the...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2015.Cata...
We identify a contribution to the ionic current noise spectrum in solid-state nanopores that exceeds...
We performed molecular dynamics simulations to study water permeation through a single-walled carbon...
Living systems display a variety of situations in which non-equilibrium fluctuations couple to cert...
We study how the spiking regularity of a single stochastic Hodgkin–Huxley neuron is effected in the ...
The constant development of mesoscopic physics demands ever more precise and fast measurement and co...
AbstractThe voltage-gated ion channels embedded in biological membranes play crucial roles on the ge...
Noise can help signal detection at the nano–level. Experiments on a single–walled carbon nanotube tr...
Single walled carbon nanotube is a tubular carbon nanomaterial having the structure of a rolled-up g...
Carbon nanotubes (CNTs) and graphene are the rolled and flat analogues of graphitic carbon, respecti...
Graduation date: 2015Low-dimensional electronic materials offer a platform to observe biological pro...
By use of a stochastic generalization of the Hodgkin-Huxley model we investigate both the phenomena ...
From electrical current to ecological and biological systems, fluctuations are characterised based o...
Many processes in life are based on ion currents and membrane voltages controlled by a sophisticated...
The problem of predicting selective transport of ions through nano-pores from their structure in the...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2015.Cata...
We identify a contribution to the ionic current noise spectrum in solid-state nanopores that exceeds...
We performed molecular dynamics simulations to study water permeation through a single-walled carbon...
Living systems display a variety of situations in which non-equilibrium fluctuations couple to cert...
We study how the spiking regularity of a single stochastic Hodgkin–Huxley neuron is effected in the ...
The constant development of mesoscopic physics demands ever more precise and fast measurement and co...
AbstractThe voltage-gated ion channels embedded in biological membranes play crucial roles on the ge...