We recently proposed a dynamical mesoscopic model for DNA, which is based, like the statistical ones, on site-dependent finite stacking and pairing enthalpies. In the present paper, we first describe how the parameters of this model are varied to get predictions in better agreement with experimental results that were not addressed up to now, like mechanical unzipping, the evolution of the critical temperature with sequence length and temperature resolution. We show that the model with the new parameters provides results that are in quantitative agreement with those obtained from statistical models. Investigation of the critical properties of the dynamical model suggests that DNA denaturation looks like a first-order phase transition in a br...
The dynamics of the DNA denaturation is studied using the Peyrard-Bishop-Dauxois model. The denatura...
The local opening of DNA is an intriguing phenomenon from a statistical-physics point of view, but i...
Gaining knowledge and understanding of the structure and function of DNA, our genetic material, is c...
Using rare event simulation techniques, we calculated DNA denaturation rate constants for a range of...
This work deals with the development and the analysis of the properties of new DNA models, in order ...
Although previously developed mesoscopic DNA models have successfully reproduced thermodynamic denat...
Although previously developed mesoscopic DNA models have successfully reproduced thermodynamic denat...
Although previously developed mesoscopic DNA models have successfully reproduced thermodynamic denat...
We present a nonlinear dynamical model for DNA thermal denaturation, which is based on the finite st...
The full text is available at: http://arxiv.org/PS_cache/cond-mat/pdf/0309/0309454v1.pdfThis is also...
Abstract. In this work we present some physical approaches to the study of DNA denaturation. After a...
A mesoscopic model for heterogeneous DNA denaturation is developed in the framework of the path inte...
Abstract. Existing experimental studies of the thermal denaturation of DNA yield sharp steps in the ...
A mesoscopic model for heterogeneous DNA denaturation is developed in the framework of the path inte...
We report studies of the dynamics of a set of exactly solvable lattice models for the force-induced ...
The dynamics of the DNA denaturation is studied using the Peyrard-Bishop-Dauxois model. The denatura...
The local opening of DNA is an intriguing phenomenon from a statistical-physics point of view, but i...
Gaining knowledge and understanding of the structure and function of DNA, our genetic material, is c...
Using rare event simulation techniques, we calculated DNA denaturation rate constants for a range of...
This work deals with the development and the analysis of the properties of new DNA models, in order ...
Although previously developed mesoscopic DNA models have successfully reproduced thermodynamic denat...
Although previously developed mesoscopic DNA models have successfully reproduced thermodynamic denat...
Although previously developed mesoscopic DNA models have successfully reproduced thermodynamic denat...
We present a nonlinear dynamical model for DNA thermal denaturation, which is based on the finite st...
The full text is available at: http://arxiv.org/PS_cache/cond-mat/pdf/0309/0309454v1.pdfThis is also...
Abstract. In this work we present some physical approaches to the study of DNA denaturation. After a...
A mesoscopic model for heterogeneous DNA denaturation is developed in the framework of the path inte...
Abstract. Existing experimental studies of the thermal denaturation of DNA yield sharp steps in the ...
A mesoscopic model for heterogeneous DNA denaturation is developed in the framework of the path inte...
We report studies of the dynamics of a set of exactly solvable lattice models for the force-induced ...
The dynamics of the DNA denaturation is studied using the Peyrard-Bishop-Dauxois model. The denatura...
The local opening of DNA is an intriguing phenomenon from a statistical-physics point of view, but i...
Gaining knowledge and understanding of the structure and function of DNA, our genetic material, is c...