Controlling the relative positions and coalescence of independent cells or microparticles is of particular importance for studying many physical phenomena, biological research, pharmaceutical tests, and chemical material processing. In this work, contactless maneuvering of two independent microparticles initially lying on a rigid surface was performed at a stable levitation height within a water-filled ultrasonic chamber. Three lead zirconate titanate transducers with 2 MHz thickness resonance frequency were obliquely mounted in a homemade device to form a sound field in a half space. By modulating the excitation voltage of a single transducer and the subsequent combination of amplitude and phase modulation, two separate 80 μm diameter sili...
The experimental setup for ultrasonic controlled levitation in the air has been developed. Two phase...
Ultrasonic standing wave fields are able to trap and manipulate biological cells and other micron sc...
The experimental setup for ultrasonic controlled levitation in the air has been developed. Two phase...
Controlling the relative positions and coalescence of independent cells or microparticles is of part...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
The use of ultrasonic standing waves for contactless manipulation of microparticles in microfluidic ...
There has been considerable interest in the noninvasive manipulation of particles in dispersions dur...
Rotation and transportation of micro-particles using ultrasonically-driven devices shows promising a...
Rotation and transportation of micro-particles using ultrasonically-driven devices shows promising a...
Advanced particle manipulation techniques with synergistic effects of low cost, high degrees of cont...
An emerging demand for the precise manipulation of cells and particles for applications in cell biol...
Ultrasonic fields can be used to trap and manipulate micron-scale particles and second-phase fluids,...
The experimental setup for ultrasonic controlled levitation in the air has been developed. Two phase...
Ultrasonic standing wave fields are able to trap and manipulate biological cells and other micron sc...
The experimental setup for ultrasonic controlled levitation in the air has been developed. Two phase...
Controlling the relative positions and coalescence of independent cells or microparticles is of part...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
The use of ultrasonic standing waves for contactless manipulation of microparticles in microfluidic ...
There has been considerable interest in the noninvasive manipulation of particles in dispersions dur...
Rotation and transportation of micro-particles using ultrasonically-driven devices shows promising a...
Rotation and transportation of micro-particles using ultrasonically-driven devices shows promising a...
Advanced particle manipulation techniques with synergistic effects of low cost, high degrees of cont...
An emerging demand for the precise manipulation of cells and particles for applications in cell biol...
Ultrasonic fields can be used to trap and manipulate micron-scale particles and second-phase fluids,...
The experimental setup for ultrasonic controlled levitation in the air has been developed. Two phase...
Ultrasonic standing wave fields are able to trap and manipulate biological cells and other micron sc...
The experimental setup for ultrasonic controlled levitation in the air has been developed. Two phase...