The amount and type of self-entanglement of DNA filaments is significantly affected by spatial confinement, which is ubiquitous in biological systems. Motivated by recent advancements in single DNA molecule experiments based on nanofluidic devices and by the introduction of algorithms capable of detecting knots in open chains, we investigate numerically the entanglement of linear, open DNA chains confined inside nano-slits. The results regard the abundance, type, and length of occurring knots and are compared with recent findings for DNA inside nano-channels. In both cases, the width of the confining region, D, spans the 30 nm-1 mu m range and the confined DNA chains are 1-4 mu m long. It is found that the knotting probability is maximum fo...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2015.Cata...
Knots in long DNA molecules are prevalent in biological systems and serve as a model system for inve...
Monte Carlo simulations are used to study the knotting probability of circular DNA confined in a sli...
The amount and type of self-entanglement of DNA filaments is significantly affected by spatial confi...
The amount and type of self-entanglement of DNA filaments is significantly affected by spatial confi...
We report on a numerical study of the equilibrium metric scaling features and knotting properties of...
We report on a numerical study of the equilibrium metric scaling features and knotting properties of...
We report on a numerical study of the equilibrium metric scaling features and knotting properties of...
The self-knotting dynamics of DNA strands confined in nanochannels is studied with Brownian simulati...
The self-knotting dynamics of DNA strands confined in nanochannels is studied with Brownian simulati...
The self-knotting dynamics of DNA strands confined in nanochannels is studied with Brownian simulati...
Long DNA molecules can self-entangle into knots. Experimental techniques for observing such DNA knot...
10 ABSTRACT: Monte Carlo simulations are used to study the 11 knotting probability of circular DNA c...
Advanced Monte Carlo simulations are used to study the effect of nanoslit confinement on metric and ...
Advanced Monte Carlo simulations are used to study the effect of nanoslit confinement on metric and ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2015.Cata...
Knots in long DNA molecules are prevalent in biological systems and serve as a model system for inve...
Monte Carlo simulations are used to study the knotting probability of circular DNA confined in a sli...
The amount and type of self-entanglement of DNA filaments is significantly affected by spatial confi...
The amount and type of self-entanglement of DNA filaments is significantly affected by spatial confi...
We report on a numerical study of the equilibrium metric scaling features and knotting properties of...
We report on a numerical study of the equilibrium metric scaling features and knotting properties of...
We report on a numerical study of the equilibrium metric scaling features and knotting properties of...
The self-knotting dynamics of DNA strands confined in nanochannels is studied with Brownian simulati...
The self-knotting dynamics of DNA strands confined in nanochannels is studied with Brownian simulati...
The self-knotting dynamics of DNA strands confined in nanochannels is studied with Brownian simulati...
Long DNA molecules can self-entangle into knots. Experimental techniques for observing such DNA knot...
10 ABSTRACT: Monte Carlo simulations are used to study the 11 knotting probability of circular DNA c...
Advanced Monte Carlo simulations are used to study the effect of nanoslit confinement on metric and ...
Advanced Monte Carlo simulations are used to study the effect of nanoslit confinement on metric and ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2015.Cata...
Knots in long DNA molecules are prevalent in biological systems and serve as a model system for inve...
Monte Carlo simulations are used to study the knotting probability of circular DNA confined in a sli...