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Nonequilibrium Fluctuations in Metaphase Spindles: Polarized Light Microscopy, Image Registration, and Correlation Functions

机译:中期主轴的非平衡波动:偏振光显微镜,图像配准和相关函数。

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Metaphase spindles are highly dynamic, nonequilibrium, steady-state structures. We study the internal fluctuations of spindles by computing spatio-temporal correlation functions of movies obtained from quantitative polarized light microscopy. These correlation functions are only physically meaningful if corrections are made for the net motion of the spindle. We describe our image registration algorithm in detail and we explore its robustness. Finally, we discuss the expression used for the estimation of the correlation function in terms of the nematic order of the microtubules which make up the spindle. Ultimately, studying the form of these correlation functions will provide a quantitative test of the validity of coarse-grained models of spindle structure inspired from liquid crystal physics.
机译:中期纺锤体是高度动态的非平衡稳态结构。我们通过计算从定量偏振光显微镜获得的电影的时空相关函数来研究主轴的内部波动。如果对主轴的净运动进行了校正,则这些相关函数仅在物理上有意义。我们将详细描述我们的图像配准算法,并探讨其稳健性。最后,我们根据构成纺锤体的微管的向列顺序讨论用于估计相关函数的表达式。最终,研究这些相关函数的形式将提供对液晶物理启发的主轴结构的粗粒度模型有效性的定量测试。

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