<p>(a) Storage moduli and (b) loss moduli of actin networks crosslinked with different concentrations of palladin. The legend is same for (a) and (b). The storage modulus is weakly sensitive to frequency at low frequencies and changes around 1 Hz to a power law relation, . Above 1 Hz the loss modulus tends towards . (c) Differential moduli of actin networks. No significant non-linear behavior is observed in these networks for any palladin concentrations.</p
The viscoelasticity of actin networks is probed over an extended range of frequencies using microrhe...
Mechanical force plays an important role in the physiology of eukaryotic cells whose dominant struct...
AbstractThis study investigates possible sources for the variance of more than two orders of magnitu...
<p>(a) Storage moduli (), (b) loss moduli () of actin networks () with varying concentrations of pal...
<p>A. Frequency-dependent elastic modulus of F-actin networks in the presence of either 0.12 μM α-ac...
Actin filaments and associated actin binding proteins play an essential role in governing the mechan...
Actin filaments and associated actin binding proteins play an essential role in governing the mechan...
<p>A and B. Time-dependent shear modulus <i>G</i>(t, γ<sub>0</sub>) of an F-actin network in the pre...
<p>Frequency spectra of storage (upper panel, closed symbols) and loss moduli (lower panel, open sym...
The mechanical properties of cytoplasm are considered to be of underlying importance in the mechanis...
<p>The experimental frequency response of mixed actin/MC solutions (dark blue circles) is compared t...
Actin filaments and associated actin binding proteins play an essential role in governing the mechan...
The macroscopic mechanical response of F-actin networks was explained quantitatively in terms of sin...
We measure the linear viscoelasticity of sterically entangled and chemically cross-linked networks o...
<p>Steady state elastic modulus of F-actin networks in the presence of α-actinin only (black columns...
The viscoelasticity of actin networks is probed over an extended range of frequencies using microrhe...
Mechanical force plays an important role in the physiology of eukaryotic cells whose dominant struct...
AbstractThis study investigates possible sources for the variance of more than two orders of magnitu...
<p>(a) Storage moduli (), (b) loss moduli () of actin networks () with varying concentrations of pal...
<p>A. Frequency-dependent elastic modulus of F-actin networks in the presence of either 0.12 μM α-ac...
Actin filaments and associated actin binding proteins play an essential role in governing the mechan...
Actin filaments and associated actin binding proteins play an essential role in governing the mechan...
<p>A and B. Time-dependent shear modulus <i>G</i>(t, γ<sub>0</sub>) of an F-actin network in the pre...
<p>Frequency spectra of storage (upper panel, closed symbols) and loss moduli (lower panel, open sym...
The mechanical properties of cytoplasm are considered to be of underlying importance in the mechanis...
<p>The experimental frequency response of mixed actin/MC solutions (dark blue circles) is compared t...
Actin filaments and associated actin binding proteins play an essential role in governing the mechan...
The macroscopic mechanical response of F-actin networks was explained quantitatively in terms of sin...
We measure the linear viscoelasticity of sterically entangled and chemically cross-linked networks o...
<p>Steady state elastic modulus of F-actin networks in the presence of α-actinin only (black columns...
The viscoelasticity of actin networks is probed over an extended range of frequencies using microrhe...
Mechanical force plays an important role in the physiology of eukaryotic cells whose dominant struct...
AbstractThis study investigates possible sources for the variance of more than two orders of magnitu...