A dual-beam fiber laser trap, termed the optical stretcher when used to deform objects, has been combined with a capillary-based microfluidic system in order to serially trap and deform biological cells. The design allows for control over the size and position of the trap relative to the flow channel. Data is recorded using video phase contrast microscopy and is subsequently analyzed using a custom edge fitting routine. This setup has been regularly used with measuring rates of 50-100 cells/h. One such experiment is presented to compare the distribution of deformability found within a normal epithelial cell line to that of a cancerous one. In general, this microfluidic optical stretcher can be used for the characterization of cells by their...
The measurement of the mechanical properties of individual cells has received much attention in rece...
Optical stretchers have been recently used to identity cell types and to detect disease states. In t...
For almost half a century, optical tweezers have successfully been used to micromanipulate micrometr...
The combination of microfluidic systems with laser optical manipulation of suspended objects extends...
The cytoskeleton is a major determinant of the mechanical strength and morphology of most cells. The...
ABSTRACT The relationship between the mechanical properties of cells and their molecular architectur...
ABSTRACT When a dielectric object is placed between two opposed, nonfocused laser beams, the total f...
When a dielectric object is placed between two opposed, nonfocused laser beams, the total force acti...
The mechanical parameters of biological cells are relevant indicators of their function or of diseas...
AbstractWhen a dielectric object is placed between two opposed, nonfocused laser beams, the total fo...
Background: Elasticity of cells is determined by their cytoskeleton. Changes in cellular function ar...
Optical stretcher is a tool in which two counter-propagating, slightly diverging, and identical lase...
In an optical stretcher, infrared laser light is used to exert surface stress on biological cells, c...
This invention concerns a novel optical micromanipulation tool, referred to as the optical stretcher...
textWhen a laser beam is incident on the surface of a transparent object, the optical surface force...
The measurement of the mechanical properties of individual cells has received much attention in rece...
Optical stretchers have been recently used to identity cell types and to detect disease states. In t...
For almost half a century, optical tweezers have successfully been used to micromanipulate micrometr...
The combination of microfluidic systems with laser optical manipulation of suspended objects extends...
The cytoskeleton is a major determinant of the mechanical strength and morphology of most cells. The...
ABSTRACT The relationship between the mechanical properties of cells and their molecular architectur...
ABSTRACT When a dielectric object is placed between two opposed, nonfocused laser beams, the total f...
When a dielectric object is placed between two opposed, nonfocused laser beams, the total force acti...
The mechanical parameters of biological cells are relevant indicators of their function or of diseas...
AbstractWhen a dielectric object is placed between two opposed, nonfocused laser beams, the total fo...
Background: Elasticity of cells is determined by their cytoskeleton. Changes in cellular function ar...
Optical stretcher is a tool in which two counter-propagating, slightly diverging, and identical lase...
In an optical stretcher, infrared laser light is used to exert surface stress on biological cells, c...
This invention concerns a novel optical micromanipulation tool, referred to as the optical stretcher...
textWhen a laser beam is incident on the surface of a transparent object, the optical surface force...
The measurement of the mechanical properties of individual cells has received much attention in rece...
Optical stretchers have been recently used to identity cell types and to detect disease states. In t...
For almost half a century, optical tweezers have successfully been used to micromanipulate micrometr...