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一种开源机器人平台,可利用光相干断层扫描实现生物膜培养的自动复制监测。

An open-source robotic platform that enables automated monitoring of replicate biofilm cultivations using optical coherence tomography.

机构信息

Water Chemistry and Water Technology, Engler-Bunte-Institut, Karlsruhe Institute of Technology, Karlsruhe, Germany.

Robotics, Evolution and Art Lab, IT University of Copenhagen, Copenhagen, Denmark.

出版信息

NPJ Biofilms Microbiomes. 2020 Apr 1;6(1):18. doi: 10.1038/s41522-020-0129-y.

Abstract

The paper introduces a fully automated cultivation and monitoring tool to study biofilm development in replicate experiments operated in parallel. To gain a fundamental understanding of the relation between cultivation conditions and biofilm characteristics (e.g., structural, mechanical) a monitoring setup allowing for the standardization of methods is required. Optical coherence tomography (OCT) is an imaging modality ideal for biofilms since it allows for the monitoring of structure in real time. By integrating an OCT device into the open-source robotic platform EvoBot, a fully automated monitoring platform for investigating biofilm development in several flow cells at once was realized. Different positioning scenarios were tested and revealed that the positioning accuracy is within the optical resolution of the OCT. On that account, a reliable and accurate monitoring of biofilm development by means of OCT has become possible. With this robotic platform, reproducible biofilm experiments including a statistical analysis are achievable with only a small investment of operator time. Furthermore, a number of structural parameters calculated within this study confirmed the necessity to perform replicate biofilm cultivations.

摘要

本文介绍了一种全自动的培养和监测工具,用于在平行运行的重复实验中研究生物膜的发展。为了从根本上了解培养条件与生物膜特性(如结构、力学)之间的关系,需要一种能够标准化方法的监测设置。光学相干断层扫描(OCT)是一种非常适合生物膜的成像方式,因为它可以实时监测结构。通过将 OCT 设备集成到开源机器人平台 EvoBot 中,我们实现了一个全自动的监测平台,可以同时在多个流动池中研究生物膜的发展。我们测试了不同的定位方案,结果表明定位精度在 OCT 的光学分辨率范围内。因此,通过 OCT 可靠且准确地监测生物膜的发展成为可能。使用这个机器人平台,只需投入少量的操作人员时间,就可以进行可重复的生物膜实验,并进行统计分析。此外,本研究中计算的一些结构参数证实了进行重复生物膜培养的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bf5/7113294/4d3f2f005fb8/41522_2020_129_Fig1_HTML.jpg

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