Recently, we have reported self-rotation of normal red blood cells (RBC), suspended in hypertonic buffer, and trapped in unpolarized laser tweezers. Here, we report use of such an optically driven RBC-motor for microfluidic applications such as pumping/centrifugation of fluids. Since the speed of rotation of the RBC-motor was found to vary with the power of the trapping beam, the flow rate could be controlled by controlling the laser power. In polarized optical tweezers, preferential alignment of trapped RBC was observed. The aligned RBC (simulating a disk) in isotonic buffer, could be rotated in a controlled manner for use as a microfluidic valve by rotation of the plane of polarization of the trapping beam. The thickness of the discotic R...
Red blood cells (RBCs) or erythrocytes are essential for oxygenating the peripherical tissue in the ...
Most work on the dynamic response of red blood cells (RBCs) to hydrodynamic stress has focused on li...
A simple and sensitive approach for detection of malarial parasite in blood samples is demonstrated....
We have constructed a dual trap optical tweezers set-up around an inverted microscope where both the...
We have constructed a dual trap optical tweezers set-up around an inverted microscope where both the...
We have constructed a dual trap optical tweezers set-up around an inverted microscope where both the...
It has recently been shown that a red blood cell (RBC) can be used as optically driven motor. The me...
We have developed a technique to manipulate human red blood cells (RBCs) in hydrodynamic flows. This...
We report the conversion of optical energy into mechanical energy by naturally occurring red blood c...
We report the observation of an optically driven micromotor of biological origin. A single red blood...
We report a label-free approach toward the object of characterizing the self-rotational motions of r...
A combined experimental and theoretical study is carried out to probe the rotational behavior of red...
We have used optical tweezers to trap normal and Plasmodiuminfected red blood cells (iRBCs). Two dif...
Restricted Access. An open-access version is available at arXiv.org (one of the alternative location...
We investigate the physics of an optically trapped red blood cell under physiological conditions. Wh...
Red blood cells (RBCs) or erythrocytes are essential for oxygenating the peripherical tissue in the ...
Most work on the dynamic response of red blood cells (RBCs) to hydrodynamic stress has focused on li...
A simple and sensitive approach for detection of malarial parasite in blood samples is demonstrated....
We have constructed a dual trap optical tweezers set-up around an inverted microscope where both the...
We have constructed a dual trap optical tweezers set-up around an inverted microscope where both the...
We have constructed a dual trap optical tweezers set-up around an inverted microscope where both the...
It has recently been shown that a red blood cell (RBC) can be used as optically driven motor. The me...
We have developed a technique to manipulate human red blood cells (RBCs) in hydrodynamic flows. This...
We report the conversion of optical energy into mechanical energy by naturally occurring red blood c...
We report the observation of an optically driven micromotor of biological origin. A single red blood...
We report a label-free approach toward the object of characterizing the self-rotational motions of r...
A combined experimental and theoretical study is carried out to probe the rotational behavior of red...
We have used optical tweezers to trap normal and Plasmodiuminfected red blood cells (iRBCs). Two dif...
Restricted Access. An open-access version is available at arXiv.org (one of the alternative location...
We investigate the physics of an optically trapped red blood cell under physiological conditions. Wh...
Red blood cells (RBCs) or erythrocytes are essential for oxygenating the peripherical tissue in the ...
Most work on the dynamic response of red blood cells (RBCs) to hydrodynamic stress has focused on li...
A simple and sensitive approach for detection of malarial parasite in blood samples is demonstrated....