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BioViz: An Interactive Visualization Engine for the Design of Digital Microfluidic Biochips

  • Jannis Stoppe
  • , Oliver Keszöcze
  • , Maximilian Luenert
  • , Robert Wille
  • , Rolf Drechsler

Publikation: Beitrag in Buch/Bericht/KonferenzbandKonferenzbeitragBegutachtung

Abstract

In order to shorten the required time for the analysis of medical substances, Digital Microfluidic Biochips (DMFBs) have been suggested. They allow for handling small amounts of samples and reagents on a circuit board and, thus, automatically execute medical experiments that are usually conducted manually in laboratories. However, there are various challenges in the design of DMFBs. Issues such as routing and layouting are complex and currently being investigated by various researchers and engineers. Although first automatic solutions assist them, the obtained results are usually provided in a complex and non-intuitive fashion. This makes the utilization and evaluation of existing approaches for DMFB design a tedious task. In this paper, we present a solution for this problem by proposing a visualization scheme for DMFBs that explicitly addresses these problems. To this end, a grammar is proposed which allows the description of resulting designs and their properties. The contributions of this work allow for a design methodology which is easy to use and provides a hassle-free environment for the involved researchers and engineers.
OriginalspracheEnglisch
TitelIEEE Computer Society Annual Symposium on VLSI (ISVLSI)
Herausgeber*innenRicardo Reis, Mircea Stan, Michael Huebner, Nikolaos Voros
Seiten170-175
Seitenumfang6
ISBN (elektronisch)9781509067626
DOIs
PublikationsstatusVeröffentlicht - 20 Juli 2017

Publikationsreihe

NameProceedings of IEEE Computer Society Annual Symposium on VLSI, ISVLSI
Band2017-July
ISSN (Print)2159-3469
ISSN (elektronisch)2159-3477

Wissenschaftszweige

  • 102 Informatik
  • 202 Elektrotechnik, Elektronik, Informationstechnik

JKU-Schwerpunkte

  • Computation in Informatics and Mathematics
  • Mechatronics and Information Processing
  • Nano-, Bio- and Polymer-Systems: From Structure to Function

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