Centre for Plant Integrative Biology, University of Nottingham, Sutton Bonington Campus, Nottingham LE12 5RD, UK.
Plant Methods. 2012 Mar 2;8:7. doi: 10.1186/1746-4811-8-7.
The ability to quantify the geometry of plant organs at the cellular scale can provide novel insights into their structural organization. Hitherto manual methods of measurement provide only very low throughput and subjective solutions, and often quantitative measurements are neglected in favour of a simple cell count.
We present a tool to count and measure individual neighbouring cells along a defined file in confocal laser scanning microscope images. The tool allows the user to extract this generic information in a flexible and intuitive manner, and builds on the raw data to detect a significant change in cell length along the file. This facility can be used, for example, to provide an estimate of the position of transition into the elongation zone of an Arabidopsis root, traditionally a location sensitive to the subjectivity of the experimenter.
Cell-o-tape is shown to locate cell walls with a high degree of accuracy and estimate the location of the transition feature point in good agreement with human experts. The tool is an open source ImageJ/Fiji macro and is available online.
在细胞尺度上定量植物器官的几何形状可以为其结构组织提供新的见解。迄今为止,手动测量方法的通量非常低,并且提供的是主观的解决方案,而且通常为了简单的细胞计数而忽略了定量测量。
我们提出了一种工具,可以在共聚焦激光扫描显微镜图像中沿着定义的文件对相邻的单个细胞进行计数和测量。该工具允许用户以灵活直观的方式提取此通用信息,并基于原始数据检测文件中细胞长度的显著变化。例如,该功能可用于提供拟南芥根伸长区位置的估计值,传统上,该位置对实验者的主观性很敏感。
Cell-o-tape 被证明可以非常准确地定位细胞壁,并与人类专家的估计结果高度吻合。该工具是一个开放源代码的 ImageJ/Fiji 宏,可在线获取。