International audienceIn the past 10 years, the use of light has become irreplaceable for the optogenetic study and control of neurons and neural circuits. Optical techniques are however limited by scattering and can only see through a depth of few hundreds µm in living tissues. GRIN lens based micro-endoscopes represent a powerful solution to reach deeper regions. In this work we demonstrate that cutting edge optical methods for the precise photostimulation of multiple neurons in three dimensions can be performed through a GRIN lens. By spatio-temporally shaping a laser beam in the two-photon regime we project several tens of spatially confined targets in a volume of at least 100 × 150 × 300 µm3. We then apply such approach to the optogene...
Neuronal networks process information in a distributed, spatially heterogeneous manner that transcen...
Summary: Sensory information is encoded within the brain in distributed spatiotemporal patterns of n...
International audienceWe developed a flexible two-photon microendoscope (2P-FENDO) capable of all-op...
International audienceIn the past 10 years, the use of light has become irreplaceable for the optoge...
With the discovery of optogenetics, using light becomes essential to study and control neural activi...
International audienceOptogenetics neuronal targeting combined with single-photon wide-field illumin...
Optical control of neural ensemble activity is crucial for understanding brain function and disease,...
We demonstrate a two-photon optogenetic method that generates action potentials in neurons with sing...
Optical methods capable of manipulating neural activity with cellular resolution and millisecond pre...
The simultaneous imaging and manipulating of neural activity could enable the functional dissection ...
International audienceBrain intricacies and the difficulty that scientists encounter in revealing it...
International audienceLight patterning through spatial light modulators, whether they modulate ampli...
SummaryOptical stimulation and silencing of neural activity is a powerful technique for elucidating ...
In vivo two-photon microscopy utilizing a nonlinear optical process enables, in living mouse brains,...
Light activation and inactivation of neurons by optogenetic techniques has emerged as an important t...
Neuronal networks process information in a distributed, spatially heterogeneous manner that transcen...
Summary: Sensory information is encoded within the brain in distributed spatiotemporal patterns of n...
International audienceWe developed a flexible two-photon microendoscope (2P-FENDO) capable of all-op...
International audienceIn the past 10 years, the use of light has become irreplaceable for the optoge...
With the discovery of optogenetics, using light becomes essential to study and control neural activi...
International audienceOptogenetics neuronal targeting combined with single-photon wide-field illumin...
Optical control of neural ensemble activity is crucial for understanding brain function and disease,...
We demonstrate a two-photon optogenetic method that generates action potentials in neurons with sing...
Optical methods capable of manipulating neural activity with cellular resolution and millisecond pre...
The simultaneous imaging and manipulating of neural activity could enable the functional dissection ...
International audienceBrain intricacies and the difficulty that scientists encounter in revealing it...
International audienceLight patterning through spatial light modulators, whether they modulate ampli...
SummaryOptical stimulation and silencing of neural activity is a powerful technique for elucidating ...
In vivo two-photon microscopy utilizing a nonlinear optical process enables, in living mouse brains,...
Light activation and inactivation of neurons by optogenetic techniques has emerged as an important t...
Neuronal networks process information in a distributed, spatially heterogeneous manner that transcen...
Summary: Sensory information is encoded within the brain in distributed spatiotemporal patterns of n...
International audienceWe developed a flexible two-photon microendoscope (2P-FENDO) capable of all-op...