<div><p>The use of optical dielectrophoresis (ODEP) to manipulate microparticles and biological cells has become increasingly popular due to its tremendous flexibility in providing reconfigurable electrode patterns and flow channels. ODEP enables the parallel and free manipulation of small particles on a photoconductive surface on which light is projected, thus eliminating the need for complex electrode design and fabrication processes. In this paper, we demonstrate that mouse cells comprising melan-a cells, RAW 267.4 macrophage cells, peripheral white blood cells and lymphocytes, can be manipulated in an opto-electrokinetics (OEK) device with appropriate DEP parameters. Our OEK device generates a non-rotating electric field and exerts a lo...
We report a novel, to the best of our knowledge, method to rapidly characterize different kinds of c...
We report a label-free approach toward the object of characterizing the self-rotational motions of r...
In this paper we describe the first use of Optoelectronic Tweezers (OET), an optically controlled mi...
The use of optical dielectrophoresis (ODEP) to manipulate microparticles and biological cells has be...
The use of optical dielectrophoresis (ODEP) to manipulate microparticles and biological cells has be...
The use of optical dielectrophoresis (ODEP) to manipulate microparticles and biological cells has be...
In this paper, the translational motion and self-rotational behaviors of the Raji cells, a type of B...
In this paper, the translational motion and self-rotational behaviors of the Raji cells, a type of B...
The phenomenon of self-rotation observed in naturally and artificially pigmented cells under an appl...
This paper presents our discovery that self-rotation of Melan-a pigment cells can be induced by ap...
This paper presents our discovery that self-rotation of Melan-a pigment cells can be induced by ap...
<div><p>AC electrokinetics is a versatile tool for contact-less manipulation or characterization of ...
AC electrokinetics is a versatile tool for contact-less manipulation or characterization of cells an...
AC electrokinetics is a versatile tool for contact-less manipulation or characterization of cells an...
We report a novel, to the best of our knowledge, method to rapidly characterize different kinds of c...
We report a novel, to the best of our knowledge, method to rapidly characterize different kinds of c...
We report a label-free approach toward the object of characterizing the self-rotational motions of r...
In this paper we describe the first use of Optoelectronic Tweezers (OET), an optically controlled mi...
The use of optical dielectrophoresis (ODEP) to manipulate microparticles and biological cells has be...
The use of optical dielectrophoresis (ODEP) to manipulate microparticles and biological cells has be...
The use of optical dielectrophoresis (ODEP) to manipulate microparticles and biological cells has be...
In this paper, the translational motion and self-rotational behaviors of the Raji cells, a type of B...
In this paper, the translational motion and self-rotational behaviors of the Raji cells, a type of B...
The phenomenon of self-rotation observed in naturally and artificially pigmented cells under an appl...
This paper presents our discovery that self-rotation of Melan-a pigment cells can be induced by ap...
This paper presents our discovery that self-rotation of Melan-a pigment cells can be induced by ap...
<div><p>AC electrokinetics is a versatile tool for contact-less manipulation or characterization of ...
AC electrokinetics is a versatile tool for contact-less manipulation or characterization of cells an...
AC electrokinetics is a versatile tool for contact-less manipulation or characterization of cells an...
We report a novel, to the best of our knowledge, method to rapidly characterize different kinds of c...
We report a novel, to the best of our knowledge, method to rapidly characterize different kinds of c...
We report a label-free approach toward the object of characterizing the self-rotational motions of r...
In this paper we describe the first use of Optoelectronic Tweezers (OET), an optically controlled mi...