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From Self-Organized Fluid Machines to Living Liquid Crystals

机译:从自组织流体机械到活性液晶

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The self-organization of amoeboid cells is discussed. The ordered state of amoeboid cells is produced out of a uniform state by an instability of the intracellular signal chain. The temporal pattern makes the the machine cycle while the spatial pattern produces the spatial spread machine: (i) an inactivated cellular state is predicted for low pumping; (ii) an isotropic mode for higher pumping (cell adhesion but'no migration); (iii) a polar mode for even higher pumping (adhesion and directed migration); (iv) a bipolar activated cellular mode for even higher pumping (cell elongation and orientation); The machine characteristics of the different activated modes are discussed. An automatic controller (= controller with feedback) is responsible for the angle of migration and for angle of orientation. Migrating and interacting cells can form condensed states: A polar nematic liquid crystal is found for cells in the polar mode and an apolar nematic liquid crystal for cells in the bipolar mode.
机译:讨论了变形虫细胞的自组织。通过细胞内信号链的不稳定性,使均匀型状态产生的变形虫细胞有序状态。时间模式使机器循环,而空间模式使空间传播机器:(i)预测失活的细胞状态用于低泵浦; (ii)各向同性模式,可实现更高的泵送率(细胞粘附但无迁移); (iii)极性模式,可实现更高的泵送(附着力和定向迁移); (iv)双极激活的细胞模式,可实现更高的泵浦作用(细胞伸长和定向);讨论了不同激活模式的机器特性。自动控制器(=带有反馈的控制器)负责移动角度和定向角度。迁移和相互作用的细胞可以形成凝聚态:对于极性模式的细胞,发现极性向列液晶,对于双极性模式的细胞则发现非极性向列液晶。

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