Optical imaging has become a powerful tool for studying brains in vivo. The opacity of adult brains makes microendoscopy, with an optical probe such as a gradient index (GRIN) lens embedded into brain tissue to provide optical relay, the method of choice for imaging neurons and neural activity in deeply buried brain structures. Incorporating a Bessel focus scanning module into two-photon fluorescence microendoscopy, we extended the excitation focus axially and improved its lateral resolution. Scanning the Bessel focus in 2D, we imaged volumes of neurons at high-throughput while resolving fine structures such as synaptic terminals. We applied this approach to the volumetric anatomical imaging of dendritic spines and axonal boutons in the mou...
Two-photon microscopy has revolutionized functional cellular imaging in tissue, but although the hig...
A major open challenge in neuroscience is the ability to measure and perturb neural activity in vivo...
The brain is complex and dynamic. The spatial scales of interest to the neurobiologist range from in...
Optical imaging has become a powerful tool for studying brains in vivo. The opacity of adult brains ...
Optical imaging has become a powerful tool for studying brains in vivo. The opacity of adult brains ...
Optical imaging has become a powerful tool for studying brains in vivo. The opacity of adult brains ...
Brain is composed of complex neural networks that work in concert to underlie the animal’s cognition...
Studying neuronal activity at synapses requires high spatiotemporal resolution. For high spatial res...
Imaging neurons and neural circuits over large volumes at high speed and subcellular resolution is a...
Imaging neurons and neural circuits over large volumes at high speed and subcellular resolution is a...
The ability to visualize deep brain structures in vivo with high spatial resolution is of rising int...
Two-photon excitation laser scanning microscopy (TPLSM) has become the tool of choice for high-resol...
Neurons and neural networks often extend hundreds of micrometers in three dimensions. Capturing the ...
Neurons and neural networks often extend hundreds of micrometers in three dimensions. Capturing the ...
Volumetric imaging tools that are simple to adopt, flexible, and robust are in high demand in the fi...
Two-photon microscopy has revolutionized functional cellular imaging in tissue, but although the hig...
A major open challenge in neuroscience is the ability to measure and perturb neural activity in vivo...
The brain is complex and dynamic. The spatial scales of interest to the neurobiologist range from in...
Optical imaging has become a powerful tool for studying brains in vivo. The opacity of adult brains ...
Optical imaging has become a powerful tool for studying brains in vivo. The opacity of adult brains ...
Optical imaging has become a powerful tool for studying brains in vivo. The opacity of adult brains ...
Brain is composed of complex neural networks that work in concert to underlie the animal’s cognition...
Studying neuronal activity at synapses requires high spatiotemporal resolution. For high spatial res...
Imaging neurons and neural circuits over large volumes at high speed and subcellular resolution is a...
Imaging neurons and neural circuits over large volumes at high speed and subcellular resolution is a...
The ability to visualize deep brain structures in vivo with high spatial resolution is of rising int...
Two-photon excitation laser scanning microscopy (TPLSM) has become the tool of choice for high-resol...
Neurons and neural networks often extend hundreds of micrometers in three dimensions. Capturing the ...
Neurons and neural networks often extend hundreds of micrometers in three dimensions. Capturing the ...
Volumetric imaging tools that are simple to adopt, flexible, and robust are in high demand in the fi...
Two-photon microscopy has revolutionized functional cellular imaging in tissue, but although the hig...
A major open challenge in neuroscience is the ability to measure and perturb neural activity in vivo...
The brain is complex and dynamic. The spatial scales of interest to the neurobiologist range from in...