Liquid HandlingLaboratory AutomationPipetting and dispensingRobotics and automationSupplemental record

EvoBot: An Open-Source, Modular, Liquid Handling Robot for Scientific Experiments

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Abstract

Commercial liquid handling robots are rarely appropriate when tasks change often, which is the case in the early stages of biochemical research. In order to address it, we have developed EvoBot, a liquid handling robot, which is open-source and employs a modular design. The combination of an open-source and a modular design is particularly powerful because functionality is divided into modules with simple, well-defined interfaces, hence customisation of modules is possible without detailed knowledge of the entire system. Furthermore, the modular design allows end-users to only produce and assemble the modules that are relevant for their specific application. Hence, time and money are not wasted on functionality that is not needed. Finally, modules can easily be reused. In this paper, we describe the EvoBot modular design and through scientific experiments such as basic liquid handling, nurturing of microbial fuel cells, and droplet chemotaxis experiments document how functionality is increased one module at a time with a significant amount of reuse. In addition to providing wet-labs with an extendible, open-source liquid handling robot, we also think that modularity is a key concept that is likely to be useful in other robots developed for scientific purposes.

Bibliographic details

Published
2020-01-23
Journal/source
Applied Sciences
Publisher
MDPI AG
DOI
10.3390/app10030814
Type
journal-article
Language
en
Volume / issue
10 / 3
Pages
814
ISSN
2076-3417

Access and metrics

Open access
Yes
OA status
gold
License
cc-by
Version
publishedVersion
Cited by
49
References
24
Retracted
No

Authors and affiliations

  1. Andrés FaíñaCorresponding authorIT University of Copenhagen
  2. Brian NejatiUniversity of Toronto
  3. Kasper StøyIT University of Copenhagen

Topics and keywords

Modular Robots and Swarm IntelligenceMicro and Nano RoboticsMicrobial Fuel Cells and BioremediationModular designModularity (biology)ReuseComputer scienceRobotSelf-reconfiguring modular robotKey (lock)Open sourceHuman–computer interactionSimple (philosophy)Systems engineeringEngineering

Funding

  • H2020 Future and Emerging Technologies · 611640