Combining fluorescence and transmitted light sources for microscopy is an invaluable method in cellular neuroscience to probe the molecular and cellular mechanisms of cells. This approach enables the targeted recording from fluorescent reporter protein expressing neurons or glial cells in brain slices and fluorescence-assisted electrophysiological recordings from subcellular structures. However, the existing tools to mix multiple light sources in one-photon microscopy are limited. Here, we present the development of several microcontroller devices that provide temporal and intensity control of light emitting diodes (LEDs) for computer controlled microscopy illumination. We interfaced one microcontroller with μManager for rapid and dynamic o...
In this study, we demonstrate a novel platform for optical stimulation of neural circuits combined w...
We report the first demonstration of a fast wavelength-switchable 340/380 nm light emitting diode (L...
Research in photobiology is currently limited by a lack of devices capable of delivering precise and...
Combining fluorescence and transmitted light sources for microscopy is an invaluable method in cellu...
Combining fluorescence and transmitted light sources for microscopy is an invaluable method in cellu...
Combining fluorescence and transmitted light sources for microscopy is an invaluable method in cellu...
<div><p>Dual-color live cell fluorescence microscopy of fast intracellular trafficking processes, su...
Dual-color live cell fluorescence microscopy of fast intracellular trafficking processes, such as ax...
International audienceABSTRACT. In recent years, the use of light emitting diodes (LEDs) has become ...
International audienceIn the recent years, the use of light emitting diodes (LEDs) has become common...
Neuroscience research increasingly relies on optical methods for evoking neuronal activity as well a...
The use of light-activated proteins represents a powerful tool to control biological processes with ...
Stimulating neuron cells with light is an exciting new technology that is revolutionizing the neuros...
Neuroscience research increasingly relies on optical methods for evoking neuronal activity as well a...
The light microscope is traditionally an instrument of substantial size and expense. Its miniaturize...
In this study, we demonstrate a novel platform for optical stimulation of neural circuits combined w...
We report the first demonstration of a fast wavelength-switchable 340/380 nm light emitting diode (L...
Research in photobiology is currently limited by a lack of devices capable of delivering precise and...
Combining fluorescence and transmitted light sources for microscopy is an invaluable method in cellu...
Combining fluorescence and transmitted light sources for microscopy is an invaluable method in cellu...
Combining fluorescence and transmitted light sources for microscopy is an invaluable method in cellu...
<div><p>Dual-color live cell fluorescence microscopy of fast intracellular trafficking processes, su...
Dual-color live cell fluorescence microscopy of fast intracellular trafficking processes, such as ax...
International audienceABSTRACT. In recent years, the use of light emitting diodes (LEDs) has become ...
International audienceIn the recent years, the use of light emitting diodes (LEDs) has become common...
Neuroscience research increasingly relies on optical methods for evoking neuronal activity as well a...
The use of light-activated proteins represents a powerful tool to control biological processes with ...
Stimulating neuron cells with light is an exciting new technology that is revolutionizing the neuros...
Neuroscience research increasingly relies on optical methods for evoking neuronal activity as well a...
The light microscope is traditionally an instrument of substantial size and expense. Its miniaturize...
In this study, we demonstrate a novel platform for optical stimulation of neural circuits combined w...
We report the first demonstration of a fast wavelength-switchable 340/380 nm light emitting diode (L...
Research in photobiology is currently limited by a lack of devices capable of delivering precise and...