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Luo / Chakrabarty / Ho

Hardware/Software Co-Design and Optimization for Cyberphysical Integration in Digital Microfluidic Biochips

Medium: Buch
ISBN: 978-3-319-09005-4
Verlag: Palgrave Macmillan
Erscheinungstermin: 22.08.2014
Lieferfrist: bis zu 10 Tage

This book describes a comprehensive framework for hardware/software co-design, optimization, and use of robust, low-cost, and cyberphysical digital microfluidic systems. Readers with a background in electronic design automation will find this book to be a valuable reference for leveraging conventional VLSI CAD techniques for emerging technologies, e.g., biochips or bioMEMS. Readers from the circuit/system design community will benefit from methods presented to extend design and testing techniques from microelectronics to mixed-technology microsystems. For readers from the microfluidics domain, this book presents a new design and development strategy for cyberphysical microfluidics-based biochips suitable for large-scale bioassay applications.

• Takes a transformative, “cyberphysical” approach towards achieving closed-loop and sensor feedback-driven biochip operation under program control;
• Presents a “physically-aware” system reconfiguration technique that uses sensor data at intermediate checkpoints to dynamically reconfigure biochips;
• Enables readers to simplify the structure of biochips, while facilitating the “general-purpose” use of digital microfluidic biochips for a wider range of applications.


Produkteigenschaften


  • Artikelnummer: 9783319090054
  • Medium: Buch
  • ISBN: 978-3-319-09005-4
  • Verlag: Palgrave Macmillan
  • Erscheinungstermin: 22.08.2014
  • Sprache(n): Englisch
  • Auflage: 2015
  • Produktform: Gebunden, HC runder Rücken kaschiert
  • Gewicht: 4823 g
  • Seiten: 197
  • Format (B x H x T): 160 x 241 x 18 mm
  • Ausgabetyp: Kein, Unbekannt

Themen


Autoren/Hrsg.

Autoren

Introduction.- Error-Recovery in Cyberphysical Biochips.- Real-Time Error Recovery Using a Compact Dictionary.- Biochemistry Synthesis under Completion-Time Uncertainties in Fluidic Operations.- Optimization of On-Chip Polymerase Chain Reaction.- Pin-Count Minimization for Application-Independent Chips.- Pro-Limited Cyberphysical Microfluidic Biochip.- Conclusions.