Piezoelectricity and Application to the Excitation of Acoustic Fields for Ultrasonic Particle Manipulation
Building Microfluidic Acoustic Resonators
Modelling and Applications of Planar Resonant Devices for Acoustic Particle Manipulation
Applications in Continuous Flow Acoustophoresis
Ultrasonic Microrobotics in Cavities: Devices and Numerical Simulation
Acoustic Manipulation Combined with Other Force Fields
Theory of Surface Acoustic Wave Devices for Particle Manipulation
Lab-on-a-chip Technologies Enabled by Surface Acoustic Waves
Surface Acoustic Wave Based Microfluidics and Droplet Applications
Ultrasound-Enhanced Immunoassays and Particle Sensors
Multi-Wavelength Resonators, Applications and Considerations
Microscopy for Acoustofluidic Micro-Devices
Experimental Characterization of Ultrasonic Particle Manipulation Devices
About this book
The manipulation of cells and microparticles within microfluidic systems using external forces is valuable for many microscale analytical and bioanalytical applications. Acoustofluidics is the ultrasound-based external forcing of microparticles with microfluidic systems. It has gained much interest because it allows for the simple label-free separation of microparticles based on their mechanical properties without affecting the microparticles themselves.
Microscale Acoustofluidics provides an introduction to the field providing the background to the fundamental physics including chapters on governing equations in microfluidics and perturbation theory and ultrasound resonances, acoustic radiation force on small particles, continuum mechanics for ultrasonic particle manipulation, and piezoelectricity and application to the excitation of acoustic fields for ultrasonic particle manipulation. The book also provides information on the design and characterization of ultrasonic particle manipulation devices as well as applications in acoustic trapping and immunoassays.
Written by leading experts in the field, the book will appeal to postgraduate students and researchers interested in microfluidics and lab-on-a-chip applications.