Patterned two-photon (2P) photolysis via holographic illumination is a powerful method to investigate neuronal function because of its capability to emulate multiple synaptic inputs in three dimensions (3D) simultaneously. However, like any optical system, holographic projectors have a finite space-bandwidth product that restricts the spatial range of patterned illumination or field-of-view (FOV) for a desired resolution. Such trade-off between holographic FOV and resolution restricts the coverage within a limited domain of the neuron's dendritic tree to perform highly resolved patterned 2P photolysis on individual spines. Here, we integrate a holographic projector into a commercial 2P galvanometer-based 2D scanning microscope with an uncag...
Recording the activity of large populations of neurons is an important step toward understanding the...
Two-photon bidirectional control and imaging of neuronal excitability with cellular resolution in vi...
International audienceLight-gated ion channels and pumps have made it possible to probe intact neura...
Patterned two-photon (2P) photolysis via holographic illumination is a powerful method to investigat...
Patterned two-photon (2P) photolysis via holographic illumination is a powerful method to investigat...
Neurons receive thousands of synaptic inputs that are distributed in space and time. The systematic ...
Holographic microscopy is increasingly recognized as a promising tool for the study of the central n...
This thesis presents two optical techniques for manipulating neurons in the analysis of their functi...
Optical control of neural ensemble activity is crucial for understanding brain function and disease,...
The optical monitoring of multiple single neuron activities requires high-throughput parallel acquis...
The simultaneous imaging and manipulating of neural activity could enable the functional dissection ...
We aim to understand how brain circuits, learn, memorize or process information. To achieve this aim...
We demonstrate simultaneous multi-site two-photon photolysis of caged neurotransmitters with close t...
The progress of neuroscience is limited by the instrumentation available to it for studying the bra...
Summary: Sensory information is encoded within the brain in distributed spatiotemporal patterns of n...
Recording the activity of large populations of neurons is an important step toward understanding the...
Two-photon bidirectional control and imaging of neuronal excitability with cellular resolution in vi...
International audienceLight-gated ion channels and pumps have made it possible to probe intact neura...
Patterned two-photon (2P) photolysis via holographic illumination is a powerful method to investigat...
Patterned two-photon (2P) photolysis via holographic illumination is a powerful method to investigat...
Neurons receive thousands of synaptic inputs that are distributed in space and time. The systematic ...
Holographic microscopy is increasingly recognized as a promising tool for the study of the central n...
This thesis presents two optical techniques for manipulating neurons in the analysis of their functi...
Optical control of neural ensemble activity is crucial for understanding brain function and disease,...
The optical monitoring of multiple single neuron activities requires high-throughput parallel acquis...
The simultaneous imaging and manipulating of neural activity could enable the functional dissection ...
We aim to understand how brain circuits, learn, memorize or process information. To achieve this aim...
We demonstrate simultaneous multi-site two-photon photolysis of caged neurotransmitters with close t...
The progress of neuroscience is limited by the instrumentation available to it for studying the bra...
Summary: Sensory information is encoded within the brain in distributed spatiotemporal patterns of n...
Recording the activity of large populations of neurons is an important step toward understanding the...
Two-photon bidirectional control and imaging of neuronal excitability with cellular resolution in vi...
International audienceLight-gated ion channels and pumps have made it possible to probe intact neura...