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Secure and Trustworthy Cyberphysical Microfluidic Biochips: A practical guide to cutting-edge design techniques for implementing secure and trustworth [Paperback]

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  • Category: Books (Technology & Engineering)
  • Author:  Tang, Jack, Ibrahim, Mohamed, Chakrabarty, Krishnendu, Karri, Ramesh
  • Author:  Tang, Jack, Ibrahim, Mohamed, Chakrabarty, Krishnendu, Karri, Ramesh
  • ISBN-10:  3030181650
  • ISBN-10:  3030181650
  • ISBN-13:  9783030181659
  • ISBN-13:  9783030181659
  • Publisher:  Springer
  • Publisher:  Springer
  • Binding:  Paperback
  • Binding:  Paperback
  • Pub Date:  01-Apr-2020
  • Pub Date:  01-Apr-2020
  • SKU:  3030181650-11-SPRI
  • SKU:  3030181650-11-SPRI
  • Pages:  144
  • Pages:  144
  • Item ID: 105295131
  • List Price: $89.99
  • Seller: ShopSpell
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  • Delivery by: Oct 01 to Oct 03
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This book describes novel hardware security and microfluidic biochip design methodologies to protect against tampering attacks in cyberphysical microfluidic biochips (CPMBs). It also provides a general overview of this nascent area of research, which will prove to be a vital resource for practitioners in the field.This book shows how hardware-based countermeasures and design innovations can be a simple and effective last line of defense, demonstrating that it is no longer justifiable to ignore security and trust in the design phase of biochips.

Chapter 1. Cyberphysical Microfluidic Biochips.- Chapter 2. Security and Trust.- Chapter 3. Prevention: Tamper-Resistant Pin-Constrained Digital Microfluidic Biochips.- Chapter 4. Detection: Randomizing Checkpoints on Cyberphysical Digital Microfluidic Biochips.- Chapter 5. Mitigation: Tamper-Mitigating Routing Fabrics.- Chapter 6. Conclusions.

Jack Tang is a consultant at New York University in Brooklyn, New York.

 

Mohamed Ibrahim is a SoC Design Engineer at Intel Corporation in Hillsboro, Oregon.

 

Krish Chakrabarty is the William H. Younger Distinguished Professor of Engineering in the Department of Electrical and Computer Engineering, at Duke University in Durham, NC.  He has been at Duke University since 1998. His current research is focused on: testing and design-for-testability of integrated circuits (especially 3D and multicore chips); digital microfluidics, biochips, and cyberphysical systems; optimization of digital print and production system infrastructure. His research projects in the recent past have also included chip cooling using digital microfluidics, wireless sensor networks, and real-time embedded systems. Research support is provided by the National Science Foundation, the Semiconductor Research Corporation, Cisco Systems, HP Labs, Huawei Technologies, alĂ/
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