首页> 外文会议>SPIE biophotonics Australasia >Optical tracking of embryonic vertebrates behavioral responses using automated time-resolved video-microscopy system.
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Optical tracking of embryonic vertebrates behavioral responses using automated time-resolved video-microscopy system.

机译:使用自动时间分辨视频显微镜系统光学跟踪胚胎脊椎动物的行为反应。

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摘要

The fish embryo toxicity (FET) biotest performed on embryos of zebrafish (Danio rerio) has gained significant popularity as a rapid and inexpensive alternative approach in chemical hazard and risk assessment. The FET was designed to evaluate acute toxicity on embryonic stages of fish exposed to the test chemical. The current standard, similar to most traditional methods for evaluating aquatic toxicity provides, however, little understanding of effects of environmentally relevant concentrations of chemical stressors. We postulate that significant environmental effects such as altered motor functions, physiological alterations reflected in heart rate, effects on development and reproduction can occur at sub-lethal concentrations well below than LC_(10). Behavioral studies can, therefore, provide a valuable integrative link between physiological and ecological effects. Despite the advantages of behavioral analysis development of behavioral toxicity, biotests is greatly hampered by the lack of dedicated laboratory automation, in particular, user-friendly and automated video microscopy systems. In this work we present a proof-of-concept development of an optical system capable of tracking embryonic vertebrates behavioral responses using automated and vastly miniaturized time-resolved video-microscopy. We have employed miniaturized CMOS cameras to perform high definition video recording and analysis of earliest vertebrate behavioral responses. The main objective was to develop a biocompatible embryo positioning structures that were suitable for high-throughput imaging as well as video capture and video analysis algorithms. This system should support the development of sub-lethal and behavioral markers for accelerated environmental monitoring.
机译:作为一种快速,廉价的化学危害和风险评估方法,对斑马鱼(Danio rerio)胚胎进行的鱼胚胎毒性(FET)生物测试已获得广泛认可。 FET旨在评估暴露于测试化学品的鱼类胚胎阶段的急性毒性。目前的标准与大多数传统的评价水生毒性的方法相似,但是对环境相关浓度的化学应激源的影响了解甚少。我们假设在远低于LC_(10)的亚致死浓度下会发生重大的环境影响,例如运动功能改变,心率反映的生理变化,对发育和生殖的影响。因此,行为研究可以提供生理和生态影响之间的宝贵综合联系。尽管行为分析在行为毒性发展方面具有优势,但由于缺乏专用的实验室自动化技术,特别是用户友好型和自动化的视频显微镜系统,生物测试受到极大的阻碍。在这项工作中,我们提出了一种光学系统的概念验证开发,该光学系统能够使用自动化的且尺寸极大的时间分辨视频显微镜来跟踪胚胎脊椎动物的行为反应。我们已使用小型CMOS相机进行高清视频记录和最早的脊椎动物行为反应分析。主要目标是开发适合高通量成像以及视频捕获和视频分析算法的生物相容性胚胎定位结构。该系统应支持亚致死和行为标记的发展,以加快环境监测。

著录项

  • 来源
    《SPIE biophotonics Australasia》|2016年|1001327.1-1001327.6|共6页
  • 会议地点 Adelaide(AU)
  • 作者单位

    The BioMEMS Research Group, School of Science, RMIT University, Bundoora, Australia;

    ARMI, Monash University, Clayton, Australia;

    Ecotoxicology Research Group, School of Science, RMIT University, Bundoora, Australia,Centre for Environmental Sustainability and Remediation (EnSuRe), RMIT University, Melbourne, Australia;

    The BioMEMS Research Group, School of Science, RMIT University, Bundoora, Australia,Centre for Environmental Sustainability and Remediation (EnSuRe), RMIT University, Melbourne, Australia,Centre for Additive Manufacturing, School of Engineering, RMIT University, Melbourne, Australia;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    microfluidics; Lab-on-a-Chip; laser; fabrication; Zebrafish; embryo; behavior; video-microscopy;

    机译:微流体芯片实验室激光;制造;斑马鱼;胚胎行为;电子显微镜;

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