Using a lab-on-a-chip approach we demonstrate the possibility of selecting a single cell with certain properties and following its dynamics after an environmental stimulation in real time using Raman spectroscopy. This is accomplished by combining a micro Raman set-up with optical tweezers and a microfluidic system. The latter gives full control over the media surrounding the cell, and it consists of a pattern of channels and reservoirs defined by electron beam lithography that is moulded into rubber silicon (PDMS). Different buffers can be transported through the channels using electro-osmotic flow, while the resonance Raman response of an optically trapped red blood cell (RBC) is simultaneously registered. This makes it possible to monito...
Acute hypoxia changes the redox-state of pulmonary arterial smooth muscle cells (PASMCs). This might...
Analyzing the cells in various body fluids can greatly deepen the understanding of the mechanisms go...
Raman spectroscopy exploits inelastic scattering of monochromatic light via transitions in molecular...
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...
Existing approaches to red blood cell (RBC) experiments on the single-cell level usually rely on che...
Recent advances in microbiology and biomedicine require development of tools to monitor the response...
Most research on optical manipulation aims towards investigation and development of the system itsel...
In this work a Raman flow cytometer is presented. It consists of a microfluidic device that takes ad...
Second, a method is necessary to monitor the chemical changes of the Hb under such a stress. Optical...
The combination of Raman spectroscopy and optical trapping holds great promise for single-cell studi...
An optical trap has been combined with a Raman spectrometer to make high-resolution measurements of ...
The integration of a range of technologies including microfluidics, surface-enhanced Raman scatterin...
We introduce a novel setup combining a micro-Raman spectrometer with external optical tweezers, suit...
The combination of Raman spectroscopy and optical trapping holds great promise for single-cell studi...
Acute hypoxia changes the redox-state of pulmonary arterial smooth muscle cells (PASMCs). This might...
Analyzing the cells in various body fluids can greatly deepen the understanding of the mechanisms go...
Raman spectroscopy exploits inelastic scattering of monochromatic light via transitions in molecular...
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...
Existing approaches to red blood cell (RBC) experiments on the single-cell level usually rely on che...
Recent advances in microbiology and biomedicine require development of tools to monitor the response...
Most research on optical manipulation aims towards investigation and development of the system itsel...
In this work a Raman flow cytometer is presented. It consists of a microfluidic device that takes ad...
Second, a method is necessary to monitor the chemical changes of the Hb under such a stress. Optical...
The combination of Raman spectroscopy and optical trapping holds great promise for single-cell studi...
An optical trap has been combined with a Raman spectrometer to make high-resolution measurements of ...
The integration of a range of technologies including microfluidics, surface-enhanced Raman scatterin...
We introduce a novel setup combining a micro-Raman spectrometer with external optical tweezers, suit...
The combination of Raman spectroscopy and optical trapping holds great promise for single-cell studi...
Acute hypoxia changes the redox-state of pulmonary arterial smooth muscle cells (PASMCs). This might...
Analyzing the cells in various body fluids can greatly deepen the understanding of the mechanisms go...
Raman spectroscopy exploits inelastic scattering of monochromatic light via transitions in molecular...