AbstractElectrical activity may cause observable changes in a cell's structure in the absence of exogenous reporter molecules. In this work, we report a low-coherence interferometric microscopy technique that can detect an optical signal correlated with the membrane potential changes in individual mammalian cells without exogenous labels. By measuring milliradian-scale phase shifts in the transmitted light, we can detect changes in the cells' membrane potential. We find that the observed optical signals are due to membrane electromotility, which causes the cells to deform in response to the membrane potential changes. We demonstrate wide-field imaging of the propagation of electrical stimuli in gap-junction-coupled cell networks. Membrane e...
In the past it has not been possible to measure optically the membrane potential of cells and collec...
AbstractAn experimental method has been established to measure the electric properties of a cell mem...
In the past it has not been possible to measure optically the membrane potential of cells and collec...
Electrical activity may cause observable changes in a cell's structure in the absence of exogenous r...
AbstractElectrical activity may cause observable changes in a cell's structure in the absence of exo...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2010.Cataloged from PDF ve...
We report the first imaging of the spatial distributions of transmembrane potential changes induced ...
The ability to directly observe membrane potential charging dynamics across a full microscopic field...
The ability to directly observe membrane potential charging dynamics across a full microscopic field...
The spatial distribution of depolarized patches of membrane during the excitation of single neurons ...
Membrane potential is a fundamental property of biological cells. Changes in membrane potential char...
Stimuli to excitable cells and various cellular processes can cause cell surface deformations; for e...
Optogenetics has emerged as an exciting tool for manipulating neural activity, which in turn, can mo...
Optogenetics has emerged as an exciting tool for manipulating neural activity, which in turn, can mo...
Using a novel noncontact technique based on optical interferometry, we quantify the nanoscale therma...
In the past it has not been possible to measure optically the membrane potential of cells and collec...
AbstractAn experimental method has been established to measure the electric properties of a cell mem...
In the past it has not been possible to measure optically the membrane potential of cells and collec...
Electrical activity may cause observable changes in a cell's structure in the absence of exogenous r...
AbstractElectrical activity may cause observable changes in a cell's structure in the absence of exo...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2010.Cataloged from PDF ve...
We report the first imaging of the spatial distributions of transmembrane potential changes induced ...
The ability to directly observe membrane potential charging dynamics across a full microscopic field...
The ability to directly observe membrane potential charging dynamics across a full microscopic field...
The spatial distribution of depolarized patches of membrane during the excitation of single neurons ...
Membrane potential is a fundamental property of biological cells. Changes in membrane potential char...
Stimuli to excitable cells and various cellular processes can cause cell surface deformations; for e...
Optogenetics has emerged as an exciting tool for manipulating neural activity, which in turn, can mo...
Optogenetics has emerged as an exciting tool for manipulating neural activity, which in turn, can mo...
Using a novel noncontact technique based on optical interferometry, we quantify the nanoscale therma...
In the past it has not been possible to measure optically the membrane potential of cells and collec...
AbstractAn experimental method has been established to measure the electric properties of a cell mem...
In the past it has not been possible to measure optically the membrane potential of cells and collec...