DocumentCode
2343195
Title
Development of a five degree-of-freedom biomanipulator for autonomous single cell electroporation
Author
Sakaki, Kelly ; Dechev, Nikolai ; Park, Edward J. ; Burke, Robert D.
Author_Institution
Univ. of Victoria, Victoria
fYear
2007
fDate
Oct. 29 2007-Nov. 2 2007
Firstpage
3137
Lastpage
3143
Abstract
Studies of individual cells via microscopy and microinjection are a key component in research on gene functions, cancer, stem cells, and reproductive technology. As biomedical experiments become more complex, there is an urgent need for robotic systems to: improve cell manipulation, increase throughput, reduce lost cells, and improve reaction detection. Automation of these tasks using visual servoing creates significant benefits for biomedical laboratories including repeatability of experiments, higher throughput, and a controlled environment capable of operating 24 hours a day. In this work the design and development of a new five degree-of- freedom biomanipulator designed for single-cell microinjection, is described. The biomanipulator employs three degrees of linear motion and two degrees of rotation. This provides the ability to manipulate/micro-inject cells at varying orientations, thereby increasing flexibility in dealing with complex operations such as injecting clustered cells. The capability of the biomanipulator is shown with preliminary experimental results using mouse myeloma cells.
Keywords
cellular biophysics; manipulators; medical robotics; visual servoing; autonomous single cell electroporation; cell manipulation; five degree-of-freedom biomanipulator; mouse myeloma cells; reaction detection; robotic systems; single-cell microinjection; visual servoing; Automatic control; Cancer; Mice; Microinjection; Microscopy; Robot vision systems; Robotics and automation; Stem cells; Throughput; Visual servoing;
fLanguage
English
Publisher
ieee
Conference_Titel
Intelligent Robots and Systems, 2007. IROS 2007. IEEE/RSJ International Conference on
Conference_Location
San Diego, CA
Print_ISBN
978-1-4244-0912-9
Electronic_ISBN
978-1-4244-0912-9
Type
conf
DOI
10.1109/IROS.2007.4399569
Filename
4399569
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