Collagen, the most abundant protein in the body, assembles into an extra-cellular fibrillar gel, which has both viscous and elastic properties. These properties can be determined by using optical tweezers to hold a micron-sized bead within the sample. Measurement of the bead’s thermally induced motion enables the determination of the frequency-dependent viscoelasticity. Rather than only probing response at a single location, holographic optical tweezers create multiple, independent traps, permitting simultaneous tracking of multiple embedded beads and characterization of their correlated motion. By using this technique in a collagen gel, we will be able to determine local and cross-correlated viscoelastic properties, which vary at different...
The increasing interest in the mechanical properties of complex systems at mesoscopic scale has rece...
The increasing interest in the mechanical properties of complex systems at mesoscopic scale has rece...
Since the first proposal and demonstration of an optical trap to hold micron sized particles by Ashk...
In this work, I aimed to develop and apply a technique capable of measuring the viscoelastic propert...
We use passive and active techniques to study microrheology of a biopolymer solution. The passive te...
Collagen is the main component of human connective tissue and extracellular matrix. Here we report m...
Mechanical properties of the extracellular matrix affect the growth of tissue, the integrity of bloo...
Microrheology is the study of the flow of materials over small scales. It is of particular interest ...
Microrheology is the study of the flow of materials over small scales. It is of particular interest ...
Microrheology is the study of the flow of materials over small scales. It is of particular interest ...
The increasing interest in the mechanical properties of complex systems at mesoscopic scale has rece...
Microrheology is the study of the flow of materials over small scales. It is of particular interest ...
Mechanical properties of the extracellular matrix affect the growth of tissue, the integrity of bloo...
Mechanical properties of the extracellular matrix affect the growth of tissue, the integrity of bloo...
The increasing interest in the mechanical properties of complex systems at mesoscopic scale has rece...
The increasing interest in the mechanical properties of complex systems at mesoscopic scale has rece...
The increasing interest in the mechanical properties of complex systems at mesoscopic scale has rece...
Since the first proposal and demonstration of an optical trap to hold micron sized particles by Ashk...
In this work, I aimed to develop and apply a technique capable of measuring the viscoelastic propert...
We use passive and active techniques to study microrheology of a biopolymer solution. The passive te...
Collagen is the main component of human connective tissue and extracellular matrix. Here we report m...
Mechanical properties of the extracellular matrix affect the growth of tissue, the integrity of bloo...
Microrheology is the study of the flow of materials over small scales. It is of particular interest ...
Microrheology is the study of the flow of materials over small scales. It is of particular interest ...
Microrheology is the study of the flow of materials over small scales. It is of particular interest ...
The increasing interest in the mechanical properties of complex systems at mesoscopic scale has rece...
Microrheology is the study of the flow of materials over small scales. It is of particular interest ...
Mechanical properties of the extracellular matrix affect the growth of tissue, the integrity of bloo...
Mechanical properties of the extracellular matrix affect the growth of tissue, the integrity of bloo...
The increasing interest in the mechanical properties of complex systems at mesoscopic scale has rece...
The increasing interest in the mechanical properties of complex systems at mesoscopic scale has rece...
The increasing interest in the mechanical properties of complex systems at mesoscopic scale has rece...
Since the first proposal and demonstration of an optical trap to hold micron sized particles by Ashk...