Optoelectronic Tweezers (OET) creates patterned electrical fields by selectively illuminating a photoconductive layer sandwiched between two electrodes. The resulting electrical gradients are used to manipulate microscopic particles, including biological cells, using the dielectrophoresis (DEP) force. Previously it has been shown that up to 15,000 traps can be created with just 1 mW of optical power1, and that OET traps are 470 times stiffer than traps created with optical tweezers of the same power2. In this paper we explore the use of OET for trapping HeLa cells. First, experiments are performed using glass beads as a model particle, and the results are compared with numerical simulations to confirm our ability to model the electrical fie...
In this paper we describe the first use of Optoelectronic Tweezers (OET), an optically controlled mi...
In this paper we describe the first use of Optoelectronic Tweezers (OET), an optically controlled mi...
Light induced dielectrophoresis ( LIDEP) is a variant of the dielectrophoresis ( DEP) mechanism that...
In this paper we present trap profile measurements for HeLa cells in Optoelectronic Tweezers (OET) b...
In this paper we present trap profile measurements for HeLa cells in Optoelectronic Tweezers (OET) b...
Micro- and nano-particles can be trapped in locally strong or weak regions of a non-uniform electric...
Micro- and nano-particles can be trapped in locally strong or weak regions of a non-uniform electric...
Abstract: Optoelectronic tweezers is a new tool for parallel optical manipulation of colloids and ce...
Optoelectronic tweezers (OET), based on light-induced dielectrophoresis, has been shown as a versati...
This paper reports on cell and microparticle manipulation using optically induced dielectrophoresis....
This paper reports on cell and microparticle manipulation using optically induced dielectrophoresis....
Abstract—This paper reports on cell and microparticle ma-nipulation using optically induced dielectr...
Optoelectronic tweezers (OET) allows the spatial patterning of electric fields through selected illu...
Optoelectronic tweezers (OET) allows the spatial patterning of electric fields through selected illu...
We report the experimental measurement of the relationship between the size of particles being moved...
In this paper we describe the first use of Optoelectronic Tweezers (OET), an optically controlled mi...
In this paper we describe the first use of Optoelectronic Tweezers (OET), an optically controlled mi...
Light induced dielectrophoresis ( LIDEP) is a variant of the dielectrophoresis ( DEP) mechanism that...
In this paper we present trap profile measurements for HeLa cells in Optoelectronic Tweezers (OET) b...
In this paper we present trap profile measurements for HeLa cells in Optoelectronic Tweezers (OET) b...
Micro- and nano-particles can be trapped in locally strong or weak regions of a non-uniform electric...
Micro- and nano-particles can be trapped in locally strong or weak regions of a non-uniform electric...
Abstract: Optoelectronic tweezers is a new tool for parallel optical manipulation of colloids and ce...
Optoelectronic tweezers (OET), based on light-induced dielectrophoresis, has been shown as a versati...
This paper reports on cell and microparticle manipulation using optically induced dielectrophoresis....
This paper reports on cell and microparticle manipulation using optically induced dielectrophoresis....
Abstract—This paper reports on cell and microparticle ma-nipulation using optically induced dielectr...
Optoelectronic tweezers (OET) allows the spatial patterning of electric fields through selected illu...
Optoelectronic tweezers (OET) allows the spatial patterning of electric fields through selected illu...
We report the experimental measurement of the relationship between the size of particles being moved...
In this paper we describe the first use of Optoelectronic Tweezers (OET), an optically controlled mi...
In this paper we describe the first use of Optoelectronic Tweezers (OET), an optically controlled mi...
Light induced dielectrophoresis ( LIDEP) is a variant of the dielectrophoresis ( DEP) mechanism that...