The integration of a range of technologies including microfluidics, surface-enhanced Raman scattering and confocal microspectroscopy has been successfully used to characterize in situ single living CHO (Chinese hamster ovary) cells with a high degree of spatial (in three dimensions) and temporal (1 s per spectrum) resolution. Following the introduction of a continuous flow of ionomycin, the real time spectral response from the cell was monitored during the agonist-evoked Ca2+ flux process. The methodology described has the potential to be used for the study of the cellular dynamics of a range of signalling processes
Analyzing the cells in various body fluids can greatly deepen the understanding of the mechanisms go...
AbstractCell fates change dynamically in response to various extracellular signals, including growth...
Although diverse endogenous biomolecules involved in life processes are of major interest in cell bi...
The integration of a range of technologies including microfluidics, surface-enhanced Raman scatterin...
Using a lab-on-a-chip approach we demonstrate the possibility of selecting a single cell with certai...
The average environmental response of red blood cells (RBCs) is routinely measured in ensemble studi...
Observations of material and cellular systems in response to time-varying chemical stimuli can aid t...
Most research on optical manipulation aims towards investigation and development of the system itsel...
Here we demonstrate the capacity of the spatially resolved Raman microspectroscopy for the analysis ...
The combination of Raman spectroscopy and optical trapping holds great promise for single-cell studi...
Chan J, Fore S, Wachsman-Hogiu S, Huser T. Raman spectroscopy and microscopy of individual cells and...
We present the development of microbioreactors with a sensitive and accurate optical coupling to a c...
We present the development of microbioreactors with a sensitive and accurate optical coupling to a c...
In this work a Raman flow cytometer is presented. It consists of a microfluidic device that takes ad...
The objective of this thesis is to present the development of Raman microscopy for biochemical imagi...
Analyzing the cells in various body fluids can greatly deepen the understanding of the mechanisms go...
AbstractCell fates change dynamically in response to various extracellular signals, including growth...
Although diverse endogenous biomolecules involved in life processes are of major interest in cell bi...
The integration of a range of technologies including microfluidics, surface-enhanced Raman scatterin...
Using a lab-on-a-chip approach we demonstrate the possibility of selecting a single cell with certai...
The average environmental response of red blood cells (RBCs) is routinely measured in ensemble studi...
Observations of material and cellular systems in response to time-varying chemical stimuli can aid t...
Most research on optical manipulation aims towards investigation and development of the system itsel...
Here we demonstrate the capacity of the spatially resolved Raman microspectroscopy for the analysis ...
The combination of Raman spectroscopy and optical trapping holds great promise for single-cell studi...
Chan J, Fore S, Wachsman-Hogiu S, Huser T. Raman spectroscopy and microscopy of individual cells and...
We present the development of microbioreactors with a sensitive and accurate optical coupling to a c...
We present the development of microbioreactors with a sensitive and accurate optical coupling to a c...
In this work a Raman flow cytometer is presented. It consists of a microfluidic device that takes ad...
The objective of this thesis is to present the development of Raman microscopy for biochemical imagi...
Analyzing the cells in various body fluids can greatly deepen the understanding of the mechanisms go...
AbstractCell fates change dynamically in response to various extracellular signals, including growth...
Although diverse endogenous biomolecules involved in life processes are of major interest in cell bi...