Microfluidics is the science that studies the behavior of fluids through microchannels. Microfluidic technology is involved in manufacturing systems that manipulate small amounts of fluidics using micro-channels. It deals with the behavior, precise control, and manipulation of fluids that are constrained in small spaces in the range of sub-millimeters, where the surface forces dominate volumetric forces. It plays an important role in the design of systems which process low volumes of fluids to achieve multiplexing, automation, and high-throughput screening. It is used in the development of lab-on-a-chip (LOC) technology, DNA chips, micro-propulsion, inkjet print heads, and micro-thermal technologies. LOC devices are a part of microelectromechanical systems devices performing analyses on micro-amounts of fluids. They integrate and automate multiple high-resolution laboratory techniques such as synthesis and analysis of chemicals or fluid testing into a system that fits on a chip. This book outlines the processes and applications of microfluidics and lab-on-a-chip in detail. While understanding the long-term perspectives of the topics, the book makes an effort to highlight their impact as a modern tool for the growth of the discipline.
Microfluidics is the science that studies the behavior of fluids through microchannels. Microfluidic technology is involved in manufacturing systems that manipulate small amounts of fluidics using micro-channels. It deals with the behavior, precise control, and manipulation of fluids that are constrained in small spaces in the range of sub-millimeters, where the surface forces dominate volumetric forces. It plays an important role in the design of systems which process low volumes of fluids to achieve multiplexing, automation, and high-throughput screening. It is used in the development of lab-on-a-chip (LOC) technology, DNA chips, micro-propulsion, inkjet print heads, and micro-thermal technologies. LOC devices are a part of microelectromechanical systems devices performing analyses on micro-amounts of fluids. They integrate and automate multiple high-resolution laboratory techniques such as synthesis and analysis of chemicals or fluid testing into a system that fits on a chip. This book outlines the processes and applications of microfluidics and lab-on-a-chip in detail. While understanding the long-term perspectives of the topics, the book makes an effort to highlight their impact as a modern tool for the growth of the discipline.