activity
20012009
most citedGeometric theory on the elasticity of bio-membranes

118 citations · 243 across the 18 of their papers we have counts for

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Showing 2006Show all

6 papers · 1 filter

cond-mat.soft20061 cited

Driven translocation of a polynucleotide chain through a nanopore--A continuous time Monte-Carlo study

Pui-Man Lam, Fei Liu, Zhong-can OuYang

Using continuous time Monte-Carlo method we simulated the translocation of a polynucleotide chain driven through a nanopore by an electric field. We have used two models of driven…

cond-mat.soft2006

Stochastic dynamics of adhesion catch-slip bond cluster

Fei Liu, Zhong-can Ou-Yang

We present a general stochastic dynamic model of a cluster of biological complexes with fluctuating dissociation and association rates. The master equation has analytical solutions…

cond-mat.soft20061 cited

Bell Rate Model with Dynamic Disorder: Model and Its Application in the Receptor-ligand Forced Dissociation Experiments

Fei Liu, Zhong-can Ou-Yang

We extend the Bell forced dissociation rate model to take account into dynamic disorder. The motivation of the present work is from the recent forced dissociation experiments of th…

cond-mat.soft200632 cited

Single Molecule Michaelis-Menten Equation beyond Quasi-Static Disorder

Xiaochuan Xue, Fei Liu, Zhong-can Ou-Yang

The classic Michaelis-Menten equation describes the catalytic activities for ensembles of enzyme molecules very well. But recent single-molecule experiment showed that the waiting…

q-bio.CB2006

Force Modulating Dynamic Disorder: Physical Theory of Catch-slip bond Transitions in Receptor-Ligand Forced Dissociation Experiments

Fei Liu, Zhong-can Ou-Yang

Recently experiments showed that some adhesive receptor-ligand complexes increase their lifetimes when they are stretched by mechanical force, while the force increase beyond some…

cond-mat.stat-mech2006

Dynamic disorder in receptor-ligand forced dissociation experiments

Fei Liu, Zhong-can Ou-Yang, Mitsumasa Iwamoto

Recently experiments showed that some biological noncovalent bonds increase their lifetimes when they are stretched by an external force, and their lifetimes will decrease when the…