AbstractAs a means to automate the three-dimensional histological analysis of brain tissue, we demonstrate the use of femtosecond laser pulses to iteratively cut and image fixed as well as fresh tissue. Cuts are accomplished with 1 to 10 μJ pulses to ablate tissue with micron precision. We show that the permeability, immunoreactivity, and optical clarity of the tissue is retained after pulsed laser cutting. Further, samples from transgenic mice that express fluorescent proteins retained their fluorescence to within microns of the cut surface. Imaging of exogenous or endogenous fluorescent labels down to 100 μm or more below the cut surface is accomplished with 0.1 to 1 nJ pulses and conventional two-photon laser scanning microscopy. In one ...
We present a prototype and verification of a multichannel laser system applicable to optogenetic res...
Modern clearing techniques for the three-dimensional (3D) visualization of neural tissue microstruct...
Combining tightly focused laser beams with surface-treated microtools enables injection and surface ...
AbstractAs a means to automate the three-dimensional histological analysis of brain tissue, we demon...
Abstract: We demonstrate the first use of femtosecond laser pulses for serial histology. Successive ...
omy, which form the core of our ability to map cellular phenotypes, are still typically very slow. T...
Recently, two-photon microscopy has been used for high spatial resolution imaging of the intact neoc...
Tightly focusing femtosecond laser pulses into bulk media, such as brain tissue, can generate high i...
Recent advances in microscopy have enabled cellular-resolution imaging of thick tissue samples or ev...
The ability to visualize deep brain structures in vivo with high spatial resolution is of rising int...
We report on the development of a ultrafast fiber lasermicroscope system for femtosecond photodisrup...
Three-dimensional live imaging has become an indispensable technique in the fields of cell, developm...
The microvasculature is the network of blood vessels involved in delivering nutrients and gases nece...
Noninvasive light focusing deep inside living biological tissue has long been a goal in biomedical o...
Ultrashort laser pulses can be used to produce lesions in single blood vessels located in the cortex...
We present a prototype and verification of a multichannel laser system applicable to optogenetic res...
Modern clearing techniques for the three-dimensional (3D) visualization of neural tissue microstruct...
Combining tightly focused laser beams with surface-treated microtools enables injection and surface ...
AbstractAs a means to automate the three-dimensional histological analysis of brain tissue, we demon...
Abstract: We demonstrate the first use of femtosecond laser pulses for serial histology. Successive ...
omy, which form the core of our ability to map cellular phenotypes, are still typically very slow. T...
Recently, two-photon microscopy has been used for high spatial resolution imaging of the intact neoc...
Tightly focusing femtosecond laser pulses into bulk media, such as brain tissue, can generate high i...
Recent advances in microscopy have enabled cellular-resolution imaging of thick tissue samples or ev...
The ability to visualize deep brain structures in vivo with high spatial resolution is of rising int...
We report on the development of a ultrafast fiber lasermicroscope system for femtosecond photodisrup...
Three-dimensional live imaging has become an indispensable technique in the fields of cell, developm...
The microvasculature is the network of blood vessels involved in delivering nutrients and gases nece...
Noninvasive light focusing deep inside living biological tissue has long been a goal in biomedical o...
Ultrashort laser pulses can be used to produce lesions in single blood vessels located in the cortex...
We present a prototype and verification of a multichannel laser system applicable to optogenetic res...
Modern clearing techniques for the three-dimensional (3D) visualization of neural tissue microstruct...
Combining tightly focused laser beams with surface-treated microtools enables injection and surface ...