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Brian Ciruna

dblp:85/9924 · DBLP profile ↗
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2ranked-venue papers
0as first author
0since 2021 · last 2011
0000-0001-7918-0953ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Artificial intelligence and machine learning · 1Systems, architecture and hardware · 1Applied, interdisciplinary, general and emerging computing · 1

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Artificial intelligence
1 paper
Robot manipulation · 100%
Interdisciplinary, comprehensive, and emerging computing
1 paper
Bioinformatics and computational biology · 100%

Topics — the 3 heaviest of 3, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Robotics › Robot manipulation › micromanipulation
cell manipulation
0.112011
Automated batch transfer of zebrafish embryos using a multi-degrees-of-freedom system · ICRA 2011
Robotics › Robot manipulation
micro/nano manipulation
0.112011
Automated batch transfer of zebrafish embryos using a multi-degrees-of-freedom system · ICRA 2011
Bioinformatics and computational biology › drug discovery
drug screening
0.012011
Automated batch transfer of zebrafish embryos using a multi-degrees-of-freedom system · ICRA 2011

Methods — techniques the papers use, named apart from their topics

cooperative robotic system · 0.2computer vision · 0.2
YearPublicationVenuePosition
2011 Automated batch transfer of zebrafish embryos using a multi-degrees-of-freedom system
abstract
Biological experiments and drug screen require the transfer of individual zebrafish embryos into standard multi-well microplates. Manually pipetting embryos into wells is tedious and time consuming. This paper reports a prototype cooperative robotic system capable of transferring zebrafish embryos in parallel and depositing a single embryo per well in a 96-well microplate. A cell holding device was developed to trap multiple embryos in a regular pattern. The cell holding device and a microplate are positioned and aligned along multiple axes by the system. Embryo release strategies were systematically studied and compared. Experiments demonstrated that out of the 1,056 zebrafish embryos used in experiments (i.e., 44 times parallel transfer into 11 96-well plates), 996 wells were successfully filled with one and only one zebrafish embryo, representing a success rate of 94.3%. Further experiments confirmed that the transferred embryos were able to develop into zebrafish with 100% survival rate.
Xuping Zhang, Zhe Lu, Danielle Gelinas, Brian Ciruna, Yu Sun 0001
ICRA4
2011 Batch Transfer of Zebrafish Embryos Into Multiwell Plates
abstract
This paper reports a prototype cooperative robotic system capable of transferring zebrafish embryos in parallel and depositing a single embryo per well in a 96-well microplate. A cell holding device was developed to trap multiple embryos in a regular pattern. The cell holding device and a microplate were positioned and aligned along multiple axes by the system. Embryo release strategies were systematically studied and compared. Experiments demonstrated that out of the 1056 zebrafish embryos used in experiments (i.e., 44 times parallel transfer into 11 96-well plates), 996 wells were successfully filled with one and only one zebrafish embryo, representing a success rate of 94.3%. Further experiments confirmed that the transferred embryos were able to develop into zebrafish with 100% survival rate.
Xuping Zhang, Zhe Lu, Danielle Gelinas, Brian Ciruna, Yu Sun 0001
IEEE Trans Autom. Sci. Eng.4