Manipulation of micro and nano particles in microfluidic devices with high resolution is a challenge especially in bioengineering applications where bio-particles (BPs) are separated or patterned. While acoustic forces have been used to control the position of BPs, its theoretical aspects need further investigation particularly for high-resolution manipulation where the wavelength and particle size are comparable. In this study, we used a finite element method (FEM) to amend analytical calculations of acoustic radiation force (ARF) arising from an imposed standing ultrasound field. First, an acoustic solid interaction (ASI) approach was implemented to calculate the ARF exerted on BPs and resultant deformation induced to them. The results we...
Particles held in a fluid suspension and within an acoustic standing wave experience an acoustic rad...
A finite element based method is presented for calculating the acoustic radiation force on arbitrari...
There is an increasing interest in acoustics for microfluidic applications. This field, commonly kno...
Manipulation of micro and nano particles in microfluidic devices with high resolution is a challenge...
Manipulation of micro and nano particles in microfluidic devices with high resolution is a challenge...
Acoustophoresis is generation of force fields by using sound waves. In microfluidics, micro-scale fl...
Acoustophoresis is generation of force fields by using sound waves. In microfluidics, micro-scale fl...
Waves can transport momentum over large distances. Encountering an obstacle leads to a scattering ev...
Ultrasonic standing wave fields are able to trap and manipulate biological cells and other micron sc...
Acoustic standing waves have been widely used in trapping, patterning, and manipulating particles, w...
The sensing of cells within micro-fluidic components can be greatly enhanced by maximizing the conce...
15 páginas; 9 figuras; 1 tablaParticles or cells in suspension and exposed to ultrasonic waves exper...
AbstractThe use of primary acoustic radiation forces has been shown to be a valid technique for the ...
Ultrasonic standing wave fields are able to trap and manipulate biological cells and other micron sc...
The use of ultrasound for trapping and patterning particles or cells in microfluidic systems is usua...
Particles held in a fluid suspension and within an acoustic standing wave experience an acoustic rad...
A finite element based method is presented for calculating the acoustic radiation force on arbitrari...
There is an increasing interest in acoustics for microfluidic applications. This field, commonly kno...
Manipulation of micro and nano particles in microfluidic devices with high resolution is a challenge...
Manipulation of micro and nano particles in microfluidic devices with high resolution is a challenge...
Acoustophoresis is generation of force fields by using sound waves. In microfluidics, micro-scale fl...
Acoustophoresis is generation of force fields by using sound waves. In microfluidics, micro-scale fl...
Waves can transport momentum over large distances. Encountering an obstacle leads to a scattering ev...
Ultrasonic standing wave fields are able to trap and manipulate biological cells and other micron sc...
Acoustic standing waves have been widely used in trapping, patterning, and manipulating particles, w...
The sensing of cells within micro-fluidic components can be greatly enhanced by maximizing the conce...
15 páginas; 9 figuras; 1 tablaParticles or cells in suspension and exposed to ultrasonic waves exper...
AbstractThe use of primary acoustic radiation forces has been shown to be a valid technique for the ...
Ultrasonic standing wave fields are able to trap and manipulate biological cells and other micron sc...
The use of ultrasound for trapping and patterning particles or cells in microfluidic systems is usua...
Particles held in a fluid suspension and within an acoustic standing wave experience an acoustic rad...
A finite element based method is presented for calculating the acoustic radiation force on arbitrari...
There is an increasing interest in acoustics for microfluidic applications. This field, commonly kno...