Gardel M L, Shin J H, MacKintosh F C, Mahadevan L, Matsudaira P A, Weitz D A
Department of Physics, Harvard University, Cambridge, Massachusetts 02138, USA.
Phys Rev Lett. 2004 Oct 29;93(18):188102. doi: 10.1103/PhysRevLett.93.188102.
The linear and nonlinear viscoelastic response of networks of cross-linked and bundled cytoskeletal filaments demonstrates remarkable scaling with both frequency and applied prestress, which helps elucidate the origins of the viscoelasticity. The frequency dependence of the shear modulus reflects the underlying single-filament relaxation dynamics for 0.1-10 rad/sec. Moreover, the nonlinear strain stiffening of such networks exhibits a universal form as a function of prestress; this is quantitatively explained by the full force-extension relation of single semiflexible filaments.
交联和成束的细胞骨架细丝网络的线性和非线性粘弹性响应表现出与频率和施加的预应力显著的标度关系,这有助于阐明粘弹性的起源。对于0.1 - 10弧度/秒,剪切模量的频率依赖性反映了潜在的单细丝松弛动力学。此外,这种网络的非线性应变硬化表现出作为预应力函数的通用形式;这可以通过单根半柔性细丝的完整力-伸长关系进行定量解释。