International audienceThe use of wavefront shaping to generate extended optical excitation patterns which are confined to a predetermined volume has become commonplace on various microscopy applications. For multiphoton excitation, three-dimensional confinement can be achieved by combining the technique of temporal focusing of ultra-short pulses with different approaches for lateral light shaping, including computer generated holography or generalized phase contrast. Here we present a theoretical and experimental study on the effect of scattering on the propagation of holographic beams with and without temporal focusing. Results from fixed and acute cortical slices show that temporally focused spatial patterns are extremely robust against t...
International audienceLight-gated ion channels and pumps have made it possible to probe intact neura...
With the discovery of optogenetics, using light becomes essential to study and control neural activi...
Optogenetics ushered in a revolution in how neuroscientists interrogate brain function. Because of t...
International audienceStochastic distortion of light beams in scattering samples makes in-depth phot...
International audienceLight patterning through spatial light modulators, whether they modulate ampli...
International audienceTemporal focusing (TF) allows for axially confined wide-field multi-photon exc...
The spectral dispersion of ultrashort pulses allows the simultaneous focusing of light in both space...
Spatiotemporal focussing has enabled widefield, axially confined multiphoton excitation. Its main ad...
International audienceTemporal focusing of ultrashort pulses has been shown to enable wide-field dep...
International audienceTo better examine circuit mechanisms underlying perception and behavior, resea...
International audienceMultiphoton excitation by temporally focused pulses can be combined with spati...
A contemporary challenge across the natural sciences is the simultaneous optical imaging or stimulat...
Optical methods capable of manipulating neural activity with cellular resolution and millisecond pre...
International audienceOptogenetics provides a unique approach to remotely manipulate brain activity ...
International audienceIn the past 10 years, the use of light has become irreplaceable for the optoge...
International audienceLight-gated ion channels and pumps have made it possible to probe intact neura...
With the discovery of optogenetics, using light becomes essential to study and control neural activi...
Optogenetics ushered in a revolution in how neuroscientists interrogate brain function. Because of t...
International audienceStochastic distortion of light beams in scattering samples makes in-depth phot...
International audienceLight patterning through spatial light modulators, whether they modulate ampli...
International audienceTemporal focusing (TF) allows for axially confined wide-field multi-photon exc...
The spectral dispersion of ultrashort pulses allows the simultaneous focusing of light in both space...
Spatiotemporal focussing has enabled widefield, axially confined multiphoton excitation. Its main ad...
International audienceTemporal focusing of ultrashort pulses has been shown to enable wide-field dep...
International audienceTo better examine circuit mechanisms underlying perception and behavior, resea...
International audienceMultiphoton excitation by temporally focused pulses can be combined with spati...
A contemporary challenge across the natural sciences is the simultaneous optical imaging or stimulat...
Optical methods capable of manipulating neural activity with cellular resolution and millisecond pre...
International audienceOptogenetics provides a unique approach to remotely manipulate brain activity ...
International audienceIn the past 10 years, the use of light has become irreplaceable for the optoge...
International audienceLight-gated ion channels and pumps have made it possible to probe intact neura...
With the discovery of optogenetics, using light becomes essential to study and control neural activi...
Optogenetics ushered in a revolution in how neuroscientists interrogate brain function. Because of t...