We investigate the physics of an optically trapped red blood cell under physiological conditions. When a single, live red blood cell, is placed in an optical trap, the normal biconcave disk shaped cell is observed to undergo a folding action and thereby take up a rod like shape. If such an RBC has any shape anisotropies due to perturbation through malarial infection or hyperosmotic stress, it is observed to rotate in the linearly polarised laser field. Finally when such an optically trapped RBC is exposed to a shear flow, a tank treading like behaviour of the red blood cell membrane is visualised (wherein the RBC membrane revolves around the central body of the cell). The tank treading motion of a red blood cell held stationary in the optic...
Second, a method is necessary to monitor the chemical changes of the Hb under such a stress. Optical...
190 p.In this dissertation, the mechanical properties of RBC membrane and the deformability of eryth...
We have constructed a dual trap optical tweezers set-up around an inverted microscope where both the...
We report here on studies of reorientation of human red blood cells (RBCs) in an optical trap. We ha...
We report on the trapping dynamics of single red blood cells (RBCs) in an optical trap. The optical ...
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...
A normal human red blood cell (RBC) when trapped with a linearly polarized laser, reorients about th...
Restricted Access.A normal human red blood cell (RBC) when trapped with a linearly polarized laser, ...
A combined experimental and theoretical study is carried out to probe the rotational behavior of red...
We have developed a technique to manipulate human red blood cells (RBCs) in hydrodynamic flows. This...
A microscopic object finds an equilibrium orientation under a laser tweezer such that a maximum of i...
Red blood cells (RBCs) or erythrocytes are essential for oxygenating the peripherical tissue in the ...
In this new method for studying the shape recovery of deformed red blood cells, three optical traps ...
We report the conversion of optical energy into mechanical energy by naturally occurring red blood c...
Second, a method is necessary to monitor the chemical changes of the Hb under such a stress. Optical...
190 p.In this dissertation, the mechanical properties of RBC membrane and the deformability of eryth...
We have constructed a dual trap optical tweezers set-up around an inverted microscope where both the...
We report here on studies of reorientation of human red blood cells (RBCs) in an optical trap. We ha...
We report on the trapping dynamics of single red blood cells (RBCs) in an optical trap. The optical ...
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...
A normal human red blood cell (RBC) when trapped with a linearly polarized laser, reorients about th...
Restricted Access.A normal human red blood cell (RBC) when trapped with a linearly polarized laser, ...
A combined experimental and theoretical study is carried out to probe the rotational behavior of red...
We have developed a technique to manipulate human red blood cells (RBCs) in hydrodynamic flows. This...
A microscopic object finds an equilibrium orientation under a laser tweezer such that a maximum of i...
Red blood cells (RBCs) or erythrocytes are essential for oxygenating the peripherical tissue in the ...
In this new method for studying the shape recovery of deformed red blood cells, three optical traps ...
We report the conversion of optical energy into mechanical energy by naturally occurring red blood c...
Second, a method is necessary to monitor the chemical changes of the Hb under such a stress. Optical...
190 p.In this dissertation, the mechanical properties of RBC membrane and the deformability of eryth...
We have constructed a dual trap optical tweezers set-up around an inverted microscope where both the...