Microfluidic Very Large Scale Integration (VLSI)
Title | Microfluidic Very Large Scale Integration (VLSI) PDF eBook |
Author | Paul Pop |
Publisher | Springer |
Pages | 277 |
Release | 2016-02-08 |
Genre | Technology & Engineering |
ISBN | 3319295993 |
This book presents the state-of-the-art techniques for the modeling, simulation, testing, compilation and physical synthesis of mVLSI biochips. The authors describe a top-down modeling and synthesis methodology for the mVLSI biochips, inspired by microelectronics VLSI methodologies. They introduce a modeling framework for the components and the biochip architecture, and a high-level microfluidic protocol language. Coverage includes a topology graph-based model for the biochip architecture, and a sequencing graph to model for biochemical application, showing how the application model can be obtained from the protocol language. The techniques described facilitate programmability and automation, enabling developers in the emerging, large biochip market.
Computer-Aided Design of Microfluidic Very Large Scale Integration (mVLSI) Biochips
Title | Computer-Aided Design of Microfluidic Very Large Scale Integration (mVLSI) Biochips PDF eBook |
Author | Kai Hu |
Publisher | Springer |
Pages | 151 |
Release | 2017-04-05 |
Genre | Technology & Engineering |
ISBN | 331956255X |
This book provides a comprehensive overview of flow-based, microfluidic VLSI. The authors describe and solve in a comprehensive and holistic manner practical challenges such as control synthesis, wash optimization, design for testability, and diagnosis of modern flow-based microfluidic biochips. They introduce practical solutions, based on rigorous optimization and formal models. The technical contributions presented in this book will not only shorten the product development cycle, but also accelerate the adoption and further development of modern flow-based microfluidic biochips, by facilitating the full exploitation of design complexities that are possible with current fabrication techniques.
Highly Integrated Microfluidics Design
Title | Highly Integrated Microfluidics Design PDF eBook |
Author | Dan E. Angelescu |
Publisher | Artech House |
Pages | 269 |
Release | 2011 |
Genre | Technology & Engineering |
ISBN | 159693980X |
The recent development of microfluidics has lead to the concept of lab-on-a-chip, where several functional blocks are combined into a single device that can perform complex manipulations and characterizations on the microscopic fluid sample. However, integration of multiple functionalities on a single device can be complicated. This a cutting-edge resource focuses on the crucial aspects of integration in microfluidic systems. It serves as a one-stop guide to designing microfluidic systems that are highly integrated and scalable. This practical book covers a wide range of critical topics, from fabrication techniques and simulation tools, to actuation and sensing functional blocks and their inter-compatibility. This unique reference outlines the benefits and drawbacks of different approaches to microfluidic integration and provides a number of clear examples of highly integrated microfluidic systems.
Digital Microfluidic Biochips
Title | Digital Microfluidic Biochips PDF eBook |
Author | Krishnendu Chakrabarty |
Publisher | CRC Press |
Pages | 216 |
Release | 2018-10-03 |
Genre | Technology & Engineering |
ISBN | 1351837532 |
Digital Microfluidic Biochips focuses on the automated design and production of microfluidic-based biochips for large-scale bioassays and safety-critical applications. Bridging areas of electronic design automation with microfluidic biochip research, the authors present a system-level design automation framework that addresses key issues in the design, analysis, and testing of digital microfluidic biochips. The book describes a new generation of microfluidic biochips with more complex designs that offer dynamic reconfigurability, system scalability, system integration, and defect tolerance. Part I describes a unified design methodology that targets design optimization under resource constraints. Part II investigates cost-effective testing techniques for digital microfluidic biochips that include test resource optimization and fault detection while running normal bioassays. Part III focuses on different reconfiguration-based defect tolerance techniques designed to increase the yield and dependability of digital microfluidic biochips. Expanding upon results from ongoing research on CAD for biochips at Duke University, this book presents new design methodologies that address some of the limitations in current full-custom design techniques. Digital Microfluidic Biochips is an essential resource for achieving the integration of microfluidic components in the next generation of system-on-chip and system-in-package designs.
Bio-Engineering Approaches to Cancer Diagnosis and Treatment
Title | Bio-Engineering Approaches to Cancer Diagnosis and Treatment PDF eBook |
Author | Azadeh Shahidian |
Publisher | Academic Press |
Pages | 276 |
Release | 2020-05-14 |
Genre | Technology & Engineering |
ISBN | 0128178108 |
Bioengineering Approaches to Cancer Diagnosis and Treatment is written for an audience of senior undergraduate students and graduate students in mechanical, electrical and biomedical engineering fields and other professionals in medicine. It is ideally structured for teaching and for those who are working in cancer bioengineering or interdisciplinary projects. The book's authors bring a unique perspective from their expertise in immunology, nanobiomaterials and heat transfer. Topical coverage includes an introduction to the fundamentals of bioengineering and engineering approaches for cancer diagnosis, cancer treatment via case studies, and sections on imaging, immunotherapy, cell therapy, drug delivery, ultrasound and microfluidics in cancer treatment. - Provides fully supported case studies relating to cancer diagnosis and therapy - Pairs the basic fundamentals of engineering and biomedical engineering and applies them to the diagnosis of cancer
Microfluidics and Microfabrication
Title | Microfluidics and Microfabrication PDF eBook |
Author | Suman Chakraborty |
Publisher | Springer Science & Business Media |
Pages | 345 |
Release | 2009-12-15 |
Genre | Technology & Engineering |
ISBN | 1441915435 |
Microfluidics and Microfabrication discusses the interconnect between microfluidics, microfabrication and the life sciences. Specifically, this includes fundamental aspects of fluid mechanics in micro-scale and nano-scale confinements and microfabrication. Material is also presented discussing micro-textured engineered surfaces, high-performance AFM probe-based, micro-grooving processes, fabrication with metals and polymers in bio-micromanipulation and microfluidic applications. Editor Suman Chakraborty brings together leading minds in both fields who also: Cover the fundamentals of microfluidics in a manner accessible to multi-disciplinary researchers, with a balance of mathematical details and physical principles Discuss the explicit interconnection between microfluiodics and microfabrication from an application perspective Detail the amalgamation of microfluidics with logic circuits and applications in micro-electronics Microfluidics and Microfabrication is an ideal book for researchers, engineers and senior-level graduate students interested in learning more about the two fields.
Security of Biochip Cyberphysical Systems
Title | Security of Biochip Cyberphysical Systems PDF eBook |
Author | Shayan Mohammed |
Publisher | Springer Nature |
Pages | 135 |
Release | 2022-03-28 |
Genre | Technology & Engineering |
ISBN | 3030932745 |
This book provides readers with a valuable guide to understanding security and the interplay of computer science, microfluidics, and biochemistry in a biochip cyberphysical system (CPS). The authors uncover new, potential threat and trust-issues to address, as this emerging technology is poised to be adapted at a large scale. Readers will learn how to secure biochip CPS by leveraging the available resources in different application contexts, as well as how to ensure intellectual property (IP) is protected against theft and counterfeits. This book enables secure biochip CPS design by helping bridge the knowledge gap at the intersection of the multi-disciplinary technology that drives biochip CPS.