DocumentCode
49150
Title
Communications and Switching in Microfluidic Systems: Pure Hydrodynamic Control for Networking Labs-on-a-Chip
Author
De Leo, Eva ; Donvito, L. ; Galluccio, Laura ; Lombardo, Alfio ; Morabito, Giacomo ; Zanoli, L.M.
Author_Institution
University of Catania
Volume
61
Issue
11
fYear
2013
fDate
Nov-13
Firstpage
4663
Lastpage
4677
Abstract
Microfluidics deals with manipulation and control of fluids which flow in constrained sub-millimetric media. In this paper communication concepts and networking approaches, typical of telecommunications, are extended to the microfluidic domain. The work illustrated in this paper investigates on possible approaches to information encoding and evaluation of the corresponding channel capacity as well as design of switching solutions. Based on the results of this study, the Hydrodynamic Controlled Microfluidic Network (HCN) paradigm is proposed, which is based on a pure hydrodynamic microfluidic switching function. The HCN paradigm can be applied to interconnect Labs-on-a-Chip (LoCs) in a microfluidic network in which chemical/biological samples are routed between the LoCs by exploiting hydrodynamic effects only. The resulting LoCs are expected to be highly flexible and inexpensive, and thus to become extremely useful in chemical/biological analysis and synthesis.
Keywords
Biological information theory; Chemicals; Encoding; Hydrodynamics; Noise; Switches; Molecular communication; communication switching; microfluidics;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/TCOMM.2013.100813.130332
Filename
6630482
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