There is currently a great need to develop live-cell compatible optical microscopy tools that can provide super-resolution information on biomolecules, in particular for the study of membrane receptors. We present a novel imaging technique, which employs a nanoplasmonic substrate in combination with conventional confocal fluorescence lifetime microscopy, to deliver an axial position sensitivity of order 10 nm in whole cell imaging. The technique exploits the Purcell effect experienced by fluorescent molecules in the vicinity of noble metal nanoparticles, leading to a reduction of the radiative lifetime and a commensurate increase in fluorescence intensity. We employ this technique to map the topography of the cellular membrane, by imaging t...
Single-molecule imaging pushes fluorescence microscopy beyond the diffraction limit of traditional m...
Analysing dynamics of a single biomolecule using high-resolution imaging techniques has been had sig...
AbstractWe present a method to resolve components within a diffraction-limited object by tracking si...
The study of endocytosis, which encompasses diverse mechanisms in biology, requires the utilization ...
Extraordinary transmission based axial imaging (EOT-AIM) for cell microscopy is reported. EOT-AIM us...
Understanding mammalian cell functions has been a key factor for medical diagnostics and treatment. ...
In the discussion of resolution in optical microscopy, axial precision has often come second to its ...
Fluorescence nanoscopy uniquely combines minimally invasive optical access to the internal nanoscale...
Fluorescence nanoscopy uniquely combines minimally invasive optical access to the internal nanoscale...
textFluorescence from endogenous molecules and exogenous contrast agents can provide morphological, ...
Thesis (Ph.D.)--Boston University PLEASE NOTE: Boston University Libraries did not receive an Autho...
International audienceSurface plasmon resonance imaging (SPRI) is a powerful label-free imaging moda...
Thesis (Ph.D.)--Boston University PLEASE NOTE: Boston University Libraries did not receive an Autho...
This paper reports our original technique for visualizing cell-attached nanointerfaces with extremel...
A form of microscopy based on the unique optical properties of a photonic crystal (PC) biosensor pro...
Single-molecule imaging pushes fluorescence microscopy beyond the diffraction limit of traditional m...
Analysing dynamics of a single biomolecule using high-resolution imaging techniques has been had sig...
AbstractWe present a method to resolve components within a diffraction-limited object by tracking si...
The study of endocytosis, which encompasses diverse mechanisms in biology, requires the utilization ...
Extraordinary transmission based axial imaging (EOT-AIM) for cell microscopy is reported. EOT-AIM us...
Understanding mammalian cell functions has been a key factor for medical diagnostics and treatment. ...
In the discussion of resolution in optical microscopy, axial precision has often come second to its ...
Fluorescence nanoscopy uniquely combines minimally invasive optical access to the internal nanoscale...
Fluorescence nanoscopy uniquely combines minimally invasive optical access to the internal nanoscale...
textFluorescence from endogenous molecules and exogenous contrast agents can provide morphological, ...
Thesis (Ph.D.)--Boston University PLEASE NOTE: Boston University Libraries did not receive an Autho...
International audienceSurface plasmon resonance imaging (SPRI) is a powerful label-free imaging moda...
Thesis (Ph.D.)--Boston University PLEASE NOTE: Boston University Libraries did not receive an Autho...
This paper reports our original technique for visualizing cell-attached nanointerfaces with extremel...
A form of microscopy based on the unique optical properties of a photonic crystal (PC) biosensor pro...
Single-molecule imaging pushes fluorescence microscopy beyond the diffraction limit of traditional m...
Analysing dynamics of a single biomolecule using high-resolution imaging techniques has been had sig...
AbstractWe present a method to resolve components within a diffraction-limited object by tracking si...