The strength of synaptic connections in the brain is not fixed, but can be modulated by numerous mechanisms. Traditionally, electrophysiology has been used to characterize connections between neurons. Electrophysiology typically reports the activity of populations of synapses, while most mechanisms of plasticity are thought to operate at the level of single synapses. Recently, two-photon laser scanning microscopy has enabled us to perform optical quantal analysis of individual synapses in intact brain tissue. Here we introduce the basic principle of the two-photon microscope and discuss its main differences compared to the confocal microscope. Using calcium imaging in dendritic spines as an example, we explain the advantages of simult...
Recent years have witnessed major improvements in our understanding of the brain, thanks to technolo...
Calcium imaging has been widely used to address questions of neuronal function and development. To g...
During the past two decades, two-photon microscopy has become a powerful tool in neuroscience. Unlik...
Two-photon excitation laser scanning microscopy (TPLSM) has become the tool of choice for high-resol...
Two-photon microscopy might be the silver bullet to image calcium in individual dendritic spines, an...
The brain is complex and dynamic. The spatial scales of interest to the neurobiologist range from in...
The brain is complex and dynamic. The spatial scales of interest to the neurobiologist range from in...
In the mammalian cortex, neurons form extremely complicated networks and exchange information at syn...
Light scattering by brain tissue and phototoxicity are major obstacles to the use of high-resolution...
International audienceThis chapter presents three examples of imaging brain activity with voltage- o...
AbstractMany cellular structures and organelles are too small to be properly resolved by conventiona...
Optical imaging of neuronal activity offers new possibilities for understanding brain physiology. Th...
AbstractBackgroundTwo-photon microscopy is widely used to study brain function, but conventional mic...
Neurons and neural networks often extend hundreds of micrometers in three dimensions. Capturing the ...
Neural computations are implemented in densely interconnected networks of excitable neurons as tempo...
Recent years have witnessed major improvements in our understanding of the brain, thanks to technolo...
Calcium imaging has been widely used to address questions of neuronal function and development. To g...
During the past two decades, two-photon microscopy has become a powerful tool in neuroscience. Unlik...
Two-photon excitation laser scanning microscopy (TPLSM) has become the tool of choice for high-resol...
Two-photon microscopy might be the silver bullet to image calcium in individual dendritic spines, an...
The brain is complex and dynamic. The spatial scales of interest to the neurobiologist range from in...
The brain is complex and dynamic. The spatial scales of interest to the neurobiologist range from in...
In the mammalian cortex, neurons form extremely complicated networks and exchange information at syn...
Light scattering by brain tissue and phototoxicity are major obstacles to the use of high-resolution...
International audienceThis chapter presents three examples of imaging brain activity with voltage- o...
AbstractMany cellular structures and organelles are too small to be properly resolved by conventiona...
Optical imaging of neuronal activity offers new possibilities for understanding brain physiology. Th...
AbstractBackgroundTwo-photon microscopy is widely used to study brain function, but conventional mic...
Neurons and neural networks often extend hundreds of micrometers in three dimensions. Capturing the ...
Neural computations are implemented in densely interconnected networks of excitable neurons as tempo...
Recent years have witnessed major improvements in our understanding of the brain, thanks to technolo...
Calcium imaging has been widely used to address questions of neuronal function and development. To g...
During the past two decades, two-photon microscopy has become a powerful tool in neuroscience. Unlik...