Micro-Electrode-Dot-Array Digital Microfluidic Biochips

Design Automation, Optimization, and Test Techniques

Nonfiction, Science & Nature, Technology, Electronics, Circuits, Engineering
Cover of the book Micro-Electrode-Dot-Array Digital Microfluidic Biochips by Zipeng Li, Krishnendu Chakrabarty, Tsung-Yi Ho, Chen-Yi Lee, Springer International Publishing
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Author: Zipeng Li, Krishnendu Chakrabarty, Tsung-Yi Ho, Chen-Yi Lee ISBN: 9783030029647
Publisher: Springer International Publishing Publication: December 14, 2018
Imprint: Springer Language: English
Author: Zipeng Li, Krishnendu Chakrabarty, Tsung-Yi Ho, Chen-Yi Lee
ISBN: 9783030029647
Publisher: Springer International Publishing
Publication: December 14, 2018
Imprint: Springer
Language: English

This book provides an insightful guide to the design, testing and optimization of micro-electrode-dot-array (MEDA) digital microfluidic biochips.  The authors focus on the characteristics specific for MEDA biochips, e.g., real-time sensing and advanced microfluidic operations like lamination mixing and droplet shape morphing. Readers will be enabled to enhance the automated design and use of MEDA and to develop a set of solutions to facilitate the full exploitation of design complexities that are possible with standard CMOS fabrication techniques. The book provides the first set of design automation and test techniques for MEDA biochips. The methods described in this book have been validated using fabricated MEDA biochips in the laboratory. Readers will benefit from an in-depth look at the MEDA platform and how to combine microfluidics with software, e.g., applying biomolecular protocols to software-controlled and cyberphysical microfluidic biochips.

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This book provides an insightful guide to the design, testing and optimization of micro-electrode-dot-array (MEDA) digital microfluidic biochips.  The authors focus on the characteristics specific for MEDA biochips, e.g., real-time sensing and advanced microfluidic operations like lamination mixing and droplet shape morphing. Readers will be enabled to enhance the automated design and use of MEDA and to develop a set of solutions to facilitate the full exploitation of design complexities that are possible with standard CMOS fabrication techniques. The book provides the first set of design automation and test techniques for MEDA biochips. The methods described in this book have been validated using fabricated MEDA biochips in the laboratory. Readers will benefit from an in-depth look at the MEDA platform and how to combine microfluidics with software, e.g., applying biomolecular protocols to software-controlled and cyberphysical microfluidic biochips.

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