<p>The persistence length and thus the bending rigidity increases with higher cutoff length and higher mean loop concentration. However, no simple dependency can be derived from the results. As the internal structure of the model chromatids is complex, the persistence length also has a complicated relation to the parameters.</p
International audienceThe classical theory of the electrostatic persistence length of polyelectrolyt...
AbstractWe describe a simple computation of the worm-like chain model and obtain the corresponding f...
<p>The three curves are for 100 bp (dashed), 300 bp (dotted) and 500 bp (solid) DNA. Here, <i>ξ</i> ...
Persistence length is the foremost measure of DNA flexibility. Its origins lie in polymer theory whi...
<p>The chain length for all configurations is . Error bars represent the standard error. <b>A.</b> F...
The flexibility of short DNA chains is investigated via computation of the average correlation func...
Mechanical characteristics of DNA in the sub-persistence-length (<i>l</i><sub>P</sub> ≈ 150 base pai...
Persistence length is a significant criterion to characterize the semi-flexibility of DNA molecules....
International audienceSequence dependency of DNA intrinsic bending properties has been emphasized as...
<p><b>A.</b> Model chromatids at different pulling forces. For small elongations the chromatid is st...
<p>(A, C) DNA_default. (B, D) RNA_default. (A, B) Effective torsional persistence lengths at differe...
The end-end distances of loops in proteins are found to be distributed according to the worm-like ch...
We study the effects of the intrinsic curvature (IC), intrinsic twist rate (ITR), anisotropic bendin...
<p>(A) The force-extension curves of λ-DNA without drug (<i>L</i> = 16.5±0.04 µm, <i>P</i> = 44.0±2....
Extreme deformations of the DNA double helix attracted a lot of attention during the past decades. P...
International audienceThe classical theory of the electrostatic persistence length of polyelectrolyt...
AbstractWe describe a simple computation of the worm-like chain model and obtain the corresponding f...
<p>The three curves are for 100 bp (dashed), 300 bp (dotted) and 500 bp (solid) DNA. Here, <i>ξ</i> ...
Persistence length is the foremost measure of DNA flexibility. Its origins lie in polymer theory whi...
<p>The chain length for all configurations is . Error bars represent the standard error. <b>A.</b> F...
The flexibility of short DNA chains is investigated via computation of the average correlation func...
Mechanical characteristics of DNA in the sub-persistence-length (<i>l</i><sub>P</sub> ≈ 150 base pai...
Persistence length is a significant criterion to characterize the semi-flexibility of DNA molecules....
International audienceSequence dependency of DNA intrinsic bending properties has been emphasized as...
<p><b>A.</b> Model chromatids at different pulling forces. For small elongations the chromatid is st...
<p>(A, C) DNA_default. (B, D) RNA_default. (A, B) Effective torsional persistence lengths at differe...
The end-end distances of loops in proteins are found to be distributed according to the worm-like ch...
We study the effects of the intrinsic curvature (IC), intrinsic twist rate (ITR), anisotropic bendin...
<p>(A) The force-extension curves of λ-DNA without drug (<i>L</i> = 16.5±0.04 µm, <i>P</i> = 44.0±2....
Extreme deformations of the DNA double helix attracted a lot of attention during the past decades. P...
International audienceThe classical theory of the electrostatic persistence length of polyelectrolyt...
AbstractWe describe a simple computation of the worm-like chain model and obtain the corresponding f...
<p>The three curves are for 100 bp (dashed), 300 bp (dotted) and 500 bp (solid) DNA. Here, <i>ξ</i> ...