We present a new Coherent Anti-Stokes Raman Scattering (CARS) microscopy technique for label-free imaging of bio-molecules in living cells; dual-CARS microscopy. The use of three synchronized laser pulses in a dual-pump/dual-detection configuration enables imaging of two species with different molecular vibrations simultaneously, as well as acquisition of images free of non-resonant background. We show the power of the method by imaging deuterated nonadecane slowly diffusing into a suspension of living yeast cells in medium, clearly distinguishing the medium and the lipid droplets in the cells by probing the CH2 vibration from the D-nonadecane by probing the CD vibration. In addition, images of lipid stores in living C. elegans nematodes fr...
Nonlinear microscopy techniques provide abilities for noninvasive and selective imaging of structura...
Microalgae are capable of producing lipids from CO2 and sunlight and as such the primary producers o...
We have developed a protocol for sub-micrometer resolved and chemically specific imaging of lipid st...
We present a new Coherent Anti-Stokes Raman Scattering (CARS) microscopy technique for label-free im...
Live cell microscopy using fluorescent proteins and small fluorescent probes is a well-established a...
With the increasing number of studies using nonlinear microscopy in the biosciences, an awareness fo...
Cellular biomolecules contain unique molecular vibrations that can be visualized by coherent anti-St...
textCoherent anti-Stokes Raman scattering (CARS) microscopy allows fast, label-free and chemically s...
Optical microscopy is an indispensable tool that is driving progress in cell biology. It still is th...
AbstractLaser-scanning coherent anti-Stokes Raman scattering (CARS) microscopy with fast data acquis...
Glucose is one of the most fundamental molecules within life and bioengineering sciences. Present un...
Optical microscopy is an indispensable tool that is driving progress in cell biology, and is still ...
this paper, we report a multiphoton vibrational imaging study of onion-like structures which consist...
Coherent anti-Stokes Raman scattering (CARS) microscopy is a label-free imaging technique that is ca...
Nonlinear microscopy techniques provide abilities for noninvasive and selective imaging of structura...
Microalgae are capable of producing lipids from CO2 and sunlight and as such the primary producers o...
We have developed a protocol for sub-micrometer resolved and chemically specific imaging of lipid st...
We present a new Coherent Anti-Stokes Raman Scattering (CARS) microscopy technique for label-free im...
Live cell microscopy using fluorescent proteins and small fluorescent probes is a well-established a...
With the increasing number of studies using nonlinear microscopy in the biosciences, an awareness fo...
Cellular biomolecules contain unique molecular vibrations that can be visualized by coherent anti-St...
textCoherent anti-Stokes Raman scattering (CARS) microscopy allows fast, label-free and chemically s...
Optical microscopy is an indispensable tool that is driving progress in cell biology. It still is th...
AbstractLaser-scanning coherent anti-Stokes Raman scattering (CARS) microscopy with fast data acquis...
Glucose is one of the most fundamental molecules within life and bioengineering sciences. Present un...
Optical microscopy is an indispensable tool that is driving progress in cell biology, and is still ...
this paper, we report a multiphoton vibrational imaging study of onion-like structures which consist...
Coherent anti-Stokes Raman scattering (CARS) microscopy is a label-free imaging technique that is ca...
Nonlinear microscopy techniques provide abilities for noninvasive and selective imaging of structura...
Microalgae are capable of producing lipids from CO2 and sunlight and as such the primary producers o...
We have developed a protocol for sub-micrometer resolved and chemically specific imaging of lipid st...