Hans Charu, McCollum Catherine W, Bondesson Maria B, Gustafsson Jan-Ake, Shah Shishir K, Merchant Fatima A
Annu Int Conf IEEE Eng Med Biol Soc. 2013;2013:3004-7. doi: 10.1109/EMBC.2013.6610172.
An important factor facilitating the application of zebrafish in biomedical research is high throughput screening of vertebrate animal models. For example, being able to model the growth of blood vessel in the vasculature system is interesting for understanding both the circulatory system in humans, and for facilitating large scale screening of the influence of various chemicals on vascular development. Compared to other models, the zebrafish embryo is an attractive alternative for environmental risk assessment of chemicals since it offers the possibility to perform high-throughput analyses in vivo. However the lack of an automated image analysis framework restricts high throughput screening. In this paper, we provide a method for quantitative measurements of zebrafish blood vessel morphology since it is difficult to assess changes in vessel structure by visual inspection. The method presented is generalized, i.e. it is not restricted to any specific chemically treated zebrafish, and can be used with wide variety of chemicals.
促进斑马鱼在生物医学研究中应用的一个重要因素是脊椎动物模型的高通量筛选。例如,能够模拟脉管系统中血管的生长,对于理解人类循环系统以及促进大规模筛选各种化学物质对血管发育的影响都很有意义。与其他模型相比,斑马鱼胚胎是化学品环境风险评估的一个有吸引力的替代方案,因为它提供了在体内进行高通量分析的可能性。然而,缺乏自动化图像分析框架限制了高通量筛选。在本文中,我们提供了一种定量测量斑马鱼血管形态的方法,因为通过目视检查很难评估血管结构的变化。所提出的方法具有通用性,即它不限于任何特定化学处理的斑马鱼,并且可以与多种化学物质一起使用。