About this book
VLSI (very large scale integration) is the process of creating integrated circuits by combining thousands of transistor based circuits into a single chip. Written by top-notch international experts in industry and academia, this groundbreaking resource presents a comprehensive, state-of-the-art overview of VLSI circuit design for a wide range of applications in biology and medicine. Supported with over 280 illustrations and over 160 equations, the book offers cutting-edge guidance on designing integrated circuits for wireless biosensing, body implants, biosensing interfaces, and molecular biology. You discover innovative design techniques and novel materials to help you achieve higher levels circuit and system performance. This invaluable volume is essential reading for anyone with a serious interest in circuit design and future biomedical technology, whether you're a seasoned practitioner or graduate student preparing for work in this challenging field.
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Table of contents
- CHAPTER 8 Integrated Circuits for Neural Interfacing: Neuroelectrical Recording
- Contents
- Preface
- CHAPTER 1 Wireless Integrated Neurochemical and Neuropotential Sensing
- CHAPTER 2 Visual Cortical Neuroprosthesis: A System Approach
- CHAPTER 3 CMOS Circuits for Biomedical Implantable Devices
- CHAPTER 4 Toward Self-Powered Sensors and Circuits for Biomechanical Implants
- CHAPTER 5 CMOS Circuits for Wireless Medical Applications
- CHAPTER 6 Error-Correcting Codes for In Vivo RF Wireless Links
- CHAPTER 7 Microneedles: A Solid-State Interface with the Human Body
- CHAPTER 8 Integrated Circuits for Neural Interfacing: Neuroelectrical Recording
- CHAPTER 9 Integrated Circuits for Neural Interfacing: Neurochemical Recording
- CHAPTER 10 Integrated Circuits for Neural Interfacing: Neural Stimulation
- CHAPTER 11 Circuits for Implantable Neural Recording and Stimulation
- CHAPTER 12 Neuromimetic Integrated Circuits
- CHAPTER 13 Circuits for Amperometric Electrochemical Sensors
- CHAPTER 14 ADC Circuits for Biomedical Applications
- CHAPTER 15 CMOS Circuit Design for Label-Free Medical Diagnostics
- CHAPTER 16 Silicon-Based Microfluidic Systems for Nucleic Acid Analysis
- CHAPTER 17 Architectural Optimizations for Digital Microfluidic Biochips
- CHAPTER 18 Magnetotactic Bacteria as Functional Components in CMOS Microelectronic Systems
- List of Contributors
- About the Editor
- Index
