ColonyCountJ: A User-Friendly Image J Add-on Program forQuantification of Different Colony Parameters in Clonogenic Assay

D. Maurya
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引用次数: 14

Abstract

Objective: There are several commercial automatic colony counters available but they are relatively expensive and associated with several quantifications related problems. Some of the key problems in automated colony counting are clustering of colonies and edge effects. Thus the main objective of this study is to develop a user friendly program for determining colony parameters of clonogenic assay. Methods: In the present study, a watershed algorithm was employed along with other ImageJ tools to develop ImageJ based add-on program i.e ColonyCountJ to calculate various colony parameters. To test this program, we have used colonies obtained after exposure of MCF-7 cells to different doses of γ-radiation. Results: The results obtained using this program were compared with the manual counting as well as with automated counting provided by Oxford Optronix GelCount colony counter. It was found that our results corroborated well with the manual as well as with commercial program. As a whole, the performance of ColonyCountJ with regard to processing time and sensitivity was at par with the commercial colony counter. Conclusion: In conclusion, "ColonyCountJ" add-on program customized for ImageJ with optimized parameters is a reliable method for quantifying the colonies obtained from clonogenic assay. This program will be of great use for researchers working in the area of toxicology, radiation biology, and cancer biology.
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ColonyCountJ:一个用户友好的图像J附加程序,用于在克隆测定中定量不同的菌落参数
目的:市面上有几种自动菌落计数器,但它们都比较昂贵,并且存在一些与定量有关的问题。自动菌落计数的关键问题是菌落的聚类和边缘效应。因此,本研究的主要目的是开发一个用户友好的程序,以确定克隆测定菌落参数。方法:本研究采用分水岭算法与其他ImageJ工具一起开发基于ImageJ的附加程序ColonyCountJ来计算各种菌落参数。为了测试这个程序,我们使用了MCF-7细胞暴露于不同剂量的γ辐射后获得的菌落。结果:与人工计数和Oxford Optronix GelCount菌落计数仪的自动计数结果进行比较。结果表明,我们的结果与手册和商业程序相吻合。总体而言,ColonyCountJ在处理时间和灵敏度方面的表现与商业菌落计数器相当。结论:为ImageJ定制的“ColonyCountJ”附加程序具有优化的参数,是一种可靠的克隆测定菌落定量方法。该项目对毒理学、放射生物学、癌症生物学等领域的研究人员具有重要的指导意义。
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