Liu Tianming, Lu Jianfeng, Wang Ye, Campbell William A, Huang Ling, Zhu Jinmin, Xia Weiming, Wong Stephen T C
Center for Bioinformatics, Harvard Center for Neurodegeneration and Repair, Harvard Medical School, and Department of Radiology, Brigham and Women's Hospital, Boston, MA 02115, USA.
J Neurosci Methods. 2006 Jun 15;153(2):190-202. doi: 10.1016/j.jneumeth.2005.10.024. Epub 2005 Dec 20.
An integrated microscope image analysis pipeline is developed for automatic analysis and quantification of phenotypes in zebrafish with altered expression of Alzheimer's disease (AD)-linked genes. We hypothesize that a slight impairment of neuronal integrity in a large number of zebrafish carrying the mutant genotype can be detected through the computerized image analysis method. Key functionalities of our zebrafish image processing pipeline include quantification of neuron loss in zebrafish embryos due to knockdown of AD-linked genes, automatic detection of defective somites, and quantitative measurement of gene expression levels in zebrafish with altered expression of AD-linked genes or treatment with a chemical compound. These quantitative measurements enable the archival of analyzed results and relevant meta-data. The structured database is organized for statistical analysis and data modeling to better understand neuronal integrity and phenotypic changes of zebrafish under different perturbations. Our results show that the computerized analysis is comparable to manual counting with equivalent accuracy and improved efficacy and consistency. Development of such an automated data analysis pipeline represents a significant step forward to achieve accurate and reproducible quantification of neuronal phenotypes in large scale or high-throughput zebrafish imaging studies.
我们开发了一种集成显微镜图像分析流程,用于对阿尔茨海默病(AD)相关基因表达改变的斑马鱼的表型进行自动分析和定量。我们假设,通过计算机图像分析方法,可以检测出大量携带突变基因型的斑马鱼中神经元完整性的轻微损伤。我们的斑马鱼图像处理流程的关键功能包括:对因AD相关基因敲低导致的斑马鱼胚胎神经元损失进行定量,自动检测有缺陷的体节,以及对AD相关基因表达改变或经化合物处理的斑马鱼中的基因表达水平进行定量测量。这些定量测量使得能够存档分析结果和相关元数据。构建结构化数据库用于统计分析和数据建模,以更好地理解不同扰动下斑马鱼的神经元完整性和表型变化。我们的结果表明,计算机化分析在准确性相当的情况下,与人工计数相比,效率和一致性得到了提高。开发这样一个自动化数据分析流程代表了在大规模或高通量斑马鱼成像研究中实现神经元表型准确且可重复定量的重要一步。