Back to Results
First PageMeta Content
Materials science / Applied mathematics / Nanotechnology / Digital microfluidics / Search algorithms / Electrowetting / Shortest path problem / Algorithm / A* search algorithm / Microfluidics / Biotechnology / Mathematics


IEEE TRANSACTIONS ON COMPUTER-AIDED DESIGN OF INTEGRATED CIRCUITS AND SYSTEMS, VOL. 25, NO. 2, FEBRUARY[removed]Modeling and Controlling Parallel Tasks in Droplet-Based Microfluidic Systems
Add to Reading List

Document Date: 2006-02-09 21:28:58


Open Document

File Size: 585,53 KB

Share Result on Facebook

City

Brunnthal / München / New York / Washington / DC / Weinheim / New Orleans / Munich / Miami Beach / Electrowetting / Nice / Droplet / /

Company

DROPLET-BASED MICROFLUIDIC SYSTEMS / Micro Total Analysis Systems / McGraw-Hill / Advalytix AG / Micro Electro Mechanical Systems / Biochemical Analysis Systems / /

Country

Germany / France / Japan / United States / /

Currency

pence / USD / /

/

Event

FDA Phase / Reorganization / /

Facility

University of Washington / /

IndustryTerm

control algorithms / much smaller systems / microfluidic device / task planning algorithm / software aspects / lab-on-a-chip / microfluidic systems / digital microfluidic systems / introduced algorithms / hardware/software / earlier software version / software tools / microfluidic applications / graph search problem / real time / final solution / manufacturing systems / presents algorithms / search graph / microelectromechanical systems / on-chip sample processing / partial prioritized solution / real-time detection / control hardware / microelectronic chip / path planning algorithms / laboratory protocol / algorithmic solutions / knowledgeable human operator / approximation algorithms / optimization tools / microfluidics hardware / embedded hardware / planar array digital microfluidics systems / particular droplet path planning algorithm / graph search / lower processing rates / straightforward algorithm / graph search problems / greedy algorithm / diagnostic tools / microfluidic hardware / intermediate products / search techniques / laboratory protocols / microelectrofluidic systems / software control / /

Organization

Lab on a Chip / U.S. National Science Foundation / Royal Society of Chemistry / Patent Office / Japanese Society for the Promotion of Science / European Patent Office / European Union / University of Washington / Seattle / Department of Electrical Engineering / /

Person

K. Chakrabarty / L. I. Jong / V / A. D. Shenderov / B. S. Gallardo / V / J. Ding / M. J. Feldman / M. G. Pollack / Nat / M. Washizu / Ai / R. B. Fair / M. Gunji / P. Paik / V / T. Zhang / T. B. Jones / R. B. Fair / V / V. K. Pamula / /

Position

Editor / ACKNOWLEDGMENT The author / researcher / hardware controller / salesman / author / chemical engineer / DMFS controller / /

Product

for / /

ProgrammingLanguage

FL / /

ProvinceOrState

Florida / /

PublishedMedium

Elsevier / IEEE TRANSACTIONS ON COMPUTER-AIDED DESIGN OF INTEGRATED CIRCUITS AND SYSTEMS / Lab on a Chip / /

Technology

prioritized A∗ algorithm / electrophoresis / path planning algorithms / microelectronic chip / antibodies / presents algorithms / laboratory protocol / lab-on-a-chip / C. Parallel Droplet Motion The algorithms / microfluidics / INTEGRATED CIRCUITS / electrohydrodynamics / previously introduced algorithms / laser / microelectromechanical systems / lab on a chip / control algorithms / artificial intelligence / Java / A∗ algorithm / particular droplet path planning algorithm / dielectric / analysis protocol / straightforward algorithm / greedy algorithm / decreasing priority order BEGIN call Algorithm / modified Algorithm / Polynomial approximation algorithms / DMFS protocol / task planning algorithm / prioritized algorithm / Digital Object Identifier / Lab Chip / laboratory protocols / /

URL

www.nanolytics.com / www.dielectrophoresis.org / /

SocialTag