Instituto de Biologia Molecular e Celular, Universidade do Porto, Rua do Campo Alegre, 4150-180 Porto, Portugal.
Methods. 2010 Jun;51(2):214-9. doi: 10.1016/j.ymeth.2010.01.016. Epub 2010 Jan 18.
Although applicability of kymographs is limited to nearly one-dimensional (1D) processes, they have been instrumental in the analysis and interpretation of a wide range of dynamic biological processes. We focus here on some applications of kymography in the study of one among the range of 'nearly-1D' processes -mitosis. Using this biological context, we suggest generalized procedures in kymograph assembly that allow a partial retrieval of spatial information which is typically lost or distorted in conventional kymography. These kymograph variations, namely guided-kymography and chromo-kymography, are helpful in the determination of actual velocities and discrimination of structures when using thick regions of interest (ROIs). The method used to generate chromo-kymographs is generalized to other (non-kymograph) projection techniques, which include time-stack and z-stack projections.
虽然动径迹图的适用性仅限于近一维(1D)过程,但它们在分析和解释广泛的动态生物过程中发挥了重要作用。我们在这里重点介绍动径迹图在研究一系列“近一维”过程之一——有丝分裂中的一些应用。在这个生物学背景下,我们提出了在动径迹图组装中通用的程序,这些程序允许部分恢复通常在传统动径迹图中丢失或扭曲的空间信息。这些动径迹图的变化,即引导动径迹图和染色质动径迹图,在使用厚的感兴趣区域(ROI)时有助于确定实际速度和区分结构。生成染色质动径迹图的方法被推广到其他(非动径迹图)投影技术,包括时间堆栈和 z 堆栈投影。