Zumdieck Alexander, Cosentino Lagomarsino Marco, Tanase Catalin, Kruse Karsten, Mulder Bela, Dogterom Marileen, Jülicher Frank
Max-Planck-Institut für Physik komplexer Systeme, Dresden, Germany.
Phys Rev Lett. 2005 Dec 16;95(25):258103. doi: 10.1103/PhysRevLett.95.258103. Epub 2005 Dec 15.
Motivated by the formation of ringlike filament structures in the cortex of plant and animal cells, we study the dynamics of a two-dimensional layer of cytoskeletal filaments and motor proteins near a surface by a general continuum theory. As a result of active processes, dynamic patterns of filament orientation and density emerge via instabilities. We show that self-organization phenomena can lead to the formation of stationary and oscillating rings. We present state diagrams that reveal a rich scenario of asymptotic behaviors and discuss the role of boundary conditions.
受植物和动物细胞皮层中环状丝状结构形成的启发,我们通过一个通用的连续介质理论研究了靠近表面的二维细胞骨架丝层和运动蛋白的动力学。由于活跃过程,丝状取向和密度的动态模式通过不稳定性出现。我们表明自组织现象可导致形成静止和振荡环。我们给出了揭示丰富渐近行为场景的状态图,并讨论了边界条件的作用。