论文标题
细胞几何形状的波动及其在活上皮组织中的非平衡热力学
Fluctuations of cell geometry and their non-equilibrium thermodynamics in living epithelial tissue
论文作者
论文摘要
我们测量对活功能性上皮组织中熵产生的不同贡献。我们通过提取开发的功能动力学,同时量化波动来做到这一点。使用半透明的果蝇Melanogaster Pupal上皮作为高分辨率实时成像的理想组织[1],我们测量了与上皮细胞的随机几何相关的熵。这是通过对单个细胞形状和方向的动力学的详细分析来完成的,该动力学能够分离组织行为的局部和全局方面。我们很有趣的是,我们可以观察到细胞几何形状中的不可逆动力学,但没有与这些自由度相关的熵变化,这表明能量流到这些自由度中。因此,生活系统正在控制熵的生产方式并将其分割成不同部分。
We measure different contributions to entropy production in a living functional epithelial tissue. We do this by extracting the functional dynamics of development while at the same time quantifying fluctuations. Using the translucent Drosophila melanogaster pupal epithelium as an ideal tissue for high resolution live imaging [1], we measure the entropy associated with the stochastic geometry of cells in the epithelium. This is done using a detailed analysis of the dynamics of the shape and orientation of individual cells which enables separation of local and global aspects of the tissue behaviour. We find intriguingly that we can observe irreversible dynamics in the cell geometries but without a change in the entropy associated with those degrees of freedom, showing that there is a flow of energy into those degrees of freedom. Hence the living system is controlling how the entropy is being produced and partitioned into its different parts.