Interest in microfluidics is rapidly expanding and the use of microchips as miniature chemical reactors is increasingly common. Microfluidic channels are now complex and combine several functions on a single chip. Fluid flow details are important but relatively few experimental methods are available to probe the flow in confined geometry. We use optical trapping of a small dielectric particle to probe the fluid flow. A highly focused laser beam attracts particles suspended in a liquid to its focal point. A particle can be trapped and then repositioned. From the displacement of the trapped particle away from its equilibrium position one estimates the external force acting on the particle. The stiffness (spring constant) of the optical trap i...
Trapping and manipulation of microscale and nanoscale particles is demonstrated using the sole actio...
Many spectacular successes have resulted from the use of laser trapped particles as force-sensing pr...
We introduce a novel technique that enables pressure measurements to be made in microfluidic chips u...
Interest in microfluidics is rapidly expanding and the use of microchips as miniature chemical react...
A strongly focused laser beam through an objective microscope with high NA allows the trapping of di...
This paper describes techniques for generating and measuring fluid flow in microfluidic devices. The...
Abstract Optofluidics is an emerging field which combines microfluidics and optics, having widespre...
We demonstrate a method for generating flow within a microfluidic channel using an optically driven ...
The method of optical manipulation of micro particles using optical tweezers was discovered many yea...
The ability to trap and control single particles in free solution has led to major advances in scien...
In this study, we investigated the effects of size and surrounding media viscosity on trapping of mi...
Video 1 - The video shows the flow-focusing and trapping of 1.84 μm bacteria-sized particles flowing...
Several technologies and biotechnologies employing small-sized particles in microfluidics and nanofl...
We show how holographic optical trapping can be used for the multipoint measurement of fluid flow in...
The realm of microfluidics deals with the study, control and manipulation of fluids that are geometr...
Trapping and manipulation of microscale and nanoscale particles is demonstrated using the sole actio...
Many spectacular successes have resulted from the use of laser trapped particles as force-sensing pr...
We introduce a novel technique that enables pressure measurements to be made in microfluidic chips u...
Interest in microfluidics is rapidly expanding and the use of microchips as miniature chemical react...
A strongly focused laser beam through an objective microscope with high NA allows the trapping of di...
This paper describes techniques for generating and measuring fluid flow in microfluidic devices. The...
Abstract Optofluidics is an emerging field which combines microfluidics and optics, having widespre...
We demonstrate a method for generating flow within a microfluidic channel using an optically driven ...
The method of optical manipulation of micro particles using optical tweezers was discovered many yea...
The ability to trap and control single particles in free solution has led to major advances in scien...
In this study, we investigated the effects of size and surrounding media viscosity on trapping of mi...
Video 1 - The video shows the flow-focusing and trapping of 1.84 μm bacteria-sized particles flowing...
Several technologies and biotechnologies employing small-sized particles in microfluidics and nanofl...
We show how holographic optical trapping can be used for the multipoint measurement of fluid flow in...
The realm of microfluidics deals with the study, control and manipulation of fluids that are geometr...
Trapping and manipulation of microscale and nanoscale particles is demonstrated using the sole actio...
Many spectacular successes have resulted from the use of laser trapped particles as force-sensing pr...
We introduce a novel technique that enables pressure measurements to be made in microfluidic chips u...