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Characterization and Theoretical Analysis of Rapidly Prototyped Capillary Action Autonomous Microfluidic Systems

Author:
Mohammed, Mazher Iqbal
,
Desmulliez, Marc Philippe Y.
Publisher:
IEEE
Year
: 2014
DOI: 10.1109/JMEMS.2014.2314470
URI: https://libsearch.um.ac.ir:443/fum/handle/fum/1129523
Keyword(s): capillary waves,flow control,laser ablation,microchannel flow,prototypes,surface tension,autonomous microfluidic system,carbon dioxide laser ablated capillary system,complex interlinking channel pump-filling structure,flow control system,flow-based theoretical models,fluidic chip design,microfluidic channel networks,on-chip based biological analysis,on-chip based chemical analysis,rapidly prototyped capillary action,single manufacturing step,smooth fluidic velocity profile,stan
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    Characterization and Theoretical Analysis of Rapidly Prototyped Capillary Action Autonomous Microfluidic Systems

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contributor authorMohammed, Mazher Iqbal
contributor authorDesmulliez, Marc Philippe Y.
date accessioned2020-03-12T23:57:41Z
date available2020-03-12T23:57:41Z
date issued2014
identifier issn1057-7157
identifier other6786978.pdf
identifier urihttps://libsearch.um.ac.ir:443/fum/handle/fum/1129523
formatgeneral
languageEnglish
publisherIEEE
titleCharacterization and Theoretical Analysis of Rapidly Prototyped Capillary Action Autonomous Microfluidic Systems
typeJournal Paper
contenttypeMetadata Only
identifier padid8309867
subject keywordscapillary waves
subject keywordsflow control
subject keywordslaser ablation
subject keywordsmicrochannel flow
subject keywordsprototypes
subject keywordssurface tension
subject keywordsautonomous microfluidic system
subject keywordscarbon dioxide laser ablated capillary system
subject keywordscomplex interlinking channel pump-filling structure
subject keywordsflow control system
subject keywordsflow-based theoretical models
subject keywordsfluidic chip design
subject keywordsmicrofluidic channel networks
subject keywordson-chip based biological analysis
subject keywordson-chip based chemical analysis
subject keywordsrapidly prototyped capillary action
subject keywordssingle manufacturing step
subject keywordssmooth fluidic velocity profile
subject keywordsstan
identifier doi10.1109/JMEMS.2014.2314470
journal titleMicroelectromechanical Systems, Journal of
journal volume23
journal issue6
filesize2881787
citations0
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