In vivo two-photon microscopy utilizing a nonlinear optical process enables, in living mouse brains, not only the visualization of morphologies and functions of neural networks in deep regions but also their optical manipulation at targeted sites with high spatial precision. Because the two-photon excitation efficiency is proportional to the square of the photon density of the excitation laser light at the focal position, optical aberrations induced by specimens mainly limit the maximum depth of observations or that of manipulations in the microscopy. To increase the two-photon excitation efficiency, we developed a method for evaluating the focal volume in living mouse brains. With this method, we modified the beam diameter of the excitatio...
Two-photon microscopy is a fundamental tool for neuroscience as it permits investigation of the brai...
In vivo two-photon microscopy has revealed vital information on neural activity for brain function, ...
The brain is complex and dynamic. The spatial scales of interest to the neurobiologist range from in...
Two-photon microscopy is a fundamental tool for neuroscience as it permits investigation of the brai...
Two-photon microscopy is a fundamental tool for neuroscience as it permits investigation of the brai...
Two-photon microscopy has enabled high-resolution imaging of single cells in the brain of anaestheti...
A two-photon microscope is basically a scanning confocal microscope that uses for excitation near-in...
A two-photon microscope is basically a scanning confocal microscope that uses for excitation near-in...
Two-photon microscopy has been used to perform high spatial resolution imaging of spine plasticity i...
Two-photon excitation scanning microscopy has sev-eral advantages for imaging brain cells and other ...
Two-photon imaging is becoming one of the most widely used technique in Neuroscience. Combined with ...
Two-photon microscopy has had an enormous influence on animal studies of in vivo brain activity prov...
Two-photon microscopy has had an enormous influence on animal studies of in vivo brain activity prov...
The ability to visualize deep brain structures in vivo with high spatial resolution is of rising int...
This article describes the development and application of miniaturized two-photon-excited fluorescen...
Two-photon microscopy is a fundamental tool for neuroscience as it permits investigation of the brai...
In vivo two-photon microscopy has revealed vital information on neural activity for brain function, ...
The brain is complex and dynamic. The spatial scales of interest to the neurobiologist range from in...
Two-photon microscopy is a fundamental tool for neuroscience as it permits investigation of the brai...
Two-photon microscopy is a fundamental tool for neuroscience as it permits investigation of the brai...
Two-photon microscopy has enabled high-resolution imaging of single cells in the brain of anaestheti...
A two-photon microscope is basically a scanning confocal microscope that uses for excitation near-in...
A two-photon microscope is basically a scanning confocal microscope that uses for excitation near-in...
Two-photon microscopy has been used to perform high spatial resolution imaging of spine plasticity i...
Two-photon excitation scanning microscopy has sev-eral advantages for imaging brain cells and other ...
Two-photon imaging is becoming one of the most widely used technique in Neuroscience. Combined with ...
Two-photon microscopy has had an enormous influence on animal studies of in vivo brain activity prov...
Two-photon microscopy has had an enormous influence on animal studies of in vivo brain activity prov...
The ability to visualize deep brain structures in vivo with high spatial resolution is of rising int...
This article describes the development and application of miniaturized two-photon-excited fluorescen...
Two-photon microscopy is a fundamental tool for neuroscience as it permits investigation of the brai...
In vivo two-photon microscopy has revealed vital information on neural activity for brain function, ...
The brain is complex and dynamic. The spatial scales of interest to the neurobiologist range from in...