Two-photon microscopy has enabled anatomical and functional fluorescence imaging in the intact brain of rats. Here, we extend two-photon imaging from anesthetized, head-stabilized to awake, freely moving animals by using a miniaturized head-mounted microscope. Excitation light is conducted to the microscope in a single-mode optical fiber, and images are scanned using vibrations of the fiber tip. Microscope performance was first characterized in the neocortex of anesthetized rats. We readily obtained images of vasculature filled with fluorescently labeled blood and of layer 2/3 pyramidal neurons filled with a calcium indicator. Capillary blood flow and dendritic calcium transients were measured with high time resolution using line scans. In ...
Two-photon microscopy has enabled high-resolution imaging of single cells in the brain of anaestheti...
We developed a miniaturized two-photon microscope (MINI2P) for fast, high-resolution, multiplane cal...
Developments in miniaturized microscopes have enabled visualization of brain activities and structur...
Two-photon microscopy has enabled anatomical and functional fluorescence imaging in the intact brain...
Two-photon microscopy has enabled anatomical and functional fluorescence imaging in the intact brain...
Two-photon microscopy has enabled anatomical and functional fluorescence imaging in the intact brain...
AbstractTwo-photon microscopy has enabled anatomical and functional fluorescence imaging in the inta...
Two−photon microscopy has enabled anatomical and functional fluorescence imaging in the intact brain...
Two−photon microscopy has enabled anatomical and functional fluorescence imaging in the intact brain...
AbstractTwo-photon microscopy has enabled anatomical and functional fluorescence imaging in the inta...
This article describes the development and application of miniaturized two-photon-excited fluorescen...
While the neuronal basis of certain behaviors and sensory modalities can be studied under anesthesia...
This article describes the development and application of miniaturized two-photon-excited fluorescen...
This article describes the development and application of miniaturized two-photon-excited fluorescen...
This article describes the development and application of miniaturized two-photon-excited fluorescen...
Two-photon microscopy has enabled high-resolution imaging of single cells in the brain of anaestheti...
We developed a miniaturized two-photon microscope (MINI2P) for fast, high-resolution, multiplane cal...
Developments in miniaturized microscopes have enabled visualization of brain activities and structur...
Two-photon microscopy has enabled anatomical and functional fluorescence imaging in the intact brain...
Two-photon microscopy has enabled anatomical and functional fluorescence imaging in the intact brain...
Two-photon microscopy has enabled anatomical and functional fluorescence imaging in the intact brain...
AbstractTwo-photon microscopy has enabled anatomical and functional fluorescence imaging in the inta...
Two−photon microscopy has enabled anatomical and functional fluorescence imaging in the intact brain...
Two−photon microscopy has enabled anatomical and functional fluorescence imaging in the intact brain...
AbstractTwo-photon microscopy has enabled anatomical and functional fluorescence imaging in the inta...
This article describes the development and application of miniaturized two-photon-excited fluorescen...
While the neuronal basis of certain behaviors and sensory modalities can be studied under anesthesia...
This article describes the development and application of miniaturized two-photon-excited fluorescen...
This article describes the development and application of miniaturized two-photon-excited fluorescen...
This article describes the development and application of miniaturized two-photon-excited fluorescen...
Two-photon microscopy has enabled high-resolution imaging of single cells in the brain of anaestheti...
We developed a miniaturized two-photon microscope (MINI2P) for fast, high-resolution, multiplane cal...
Developments in miniaturized microscopes have enabled visualization of brain activities and structur...