AbstractThe results of mechanical measurements on single cultured epithelial cells using both magnetic twisting cytometry (MTC) and laser tracking microrheology (LTM) are described. Our unique approach uses laser deflection for high-performance tracking of cell-adhered magnetic beads either in response to an oscillatory magnetic torque (MTC) or due to random Brownian or ATP-dependent forces (LTM). This approach is well suited for accurately determining the rheology of single cells, the study of temporal and cell-to-cell variations in the MTC signal amplitude, and assessing the statistical character of the tracers’ random motion in detail. The temporal variation of the MTC rocking amplitude is surprisingly large and manifests as a frequency-...
AbstractAlthough actin and myosin are important contributors to cell-force generation, shape change,...
We present spectral domain phase microscopy (SDPM) as a new tool for measurements at the cellular sc...
We present spectral domain phase microscopy (SDPM) as a new tool for measurements at the cellular sc...
The results of mechanical measurements on single cultured epithelial cells using both magnetic twist...
The results of mechanical measurements on single cultured epithelial cells using both magnetic twist...
AbstractThe results of mechanical measurements on single cultured epithelial cells using both magnet...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Biological Engineering Division, 2007.Includ...
AbstractTo establish laser-tracking microrheology (LTM) as a new technique for quantifying cytoskele...
AbstractTo establish laser-tracking microrheology (LTM) as a new technique for quantifying cytoskele...
AbstractFluorescence laser tracking microrheometry (FLTM) is what we believe to be a novel method ab...
ABSTRACT To establish laser-tracking microrheology (LTM) as a new technique for quantifying cytoskel...
Understanding the viscoelastic properties of living cells and their relation to cell state and morph...
Magnetic twisting cytometry (MTC) (Wang N, Butler JP, and Ingber DE, Science260: 1124–1127, 1993) is...
AbstractThis paper introduces the method of live-cell multiple-particle-tracking microrheology (MPTM...
AbstractFluorescence laser tracking microrheometry (FLTM) is what we believe to be a novel method ab...
AbstractAlthough actin and myosin are important contributors to cell-force generation, shape change,...
We present spectral domain phase microscopy (SDPM) as a new tool for measurements at the cellular sc...
We present spectral domain phase microscopy (SDPM) as a new tool for measurements at the cellular sc...
The results of mechanical measurements on single cultured epithelial cells using both magnetic twist...
The results of mechanical measurements on single cultured epithelial cells using both magnetic twist...
AbstractThe results of mechanical measurements on single cultured epithelial cells using both magnet...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Biological Engineering Division, 2007.Includ...
AbstractTo establish laser-tracking microrheology (LTM) as a new technique for quantifying cytoskele...
AbstractTo establish laser-tracking microrheology (LTM) as a new technique for quantifying cytoskele...
AbstractFluorescence laser tracking microrheometry (FLTM) is what we believe to be a novel method ab...
ABSTRACT To establish laser-tracking microrheology (LTM) as a new technique for quantifying cytoskel...
Understanding the viscoelastic properties of living cells and their relation to cell state and morph...
Magnetic twisting cytometry (MTC) (Wang N, Butler JP, and Ingber DE, Science260: 1124–1127, 1993) is...
AbstractThis paper introduces the method of live-cell multiple-particle-tracking microrheology (MPTM...
AbstractFluorescence laser tracking microrheometry (FLTM) is what we believe to be a novel method ab...
AbstractAlthough actin and myosin are important contributors to cell-force generation, shape change,...
We present spectral domain phase microscopy (SDPM) as a new tool for measurements at the cellular sc...
We present spectral domain phase microscopy (SDPM) as a new tool for measurements at the cellular sc...