Determination of blood flow velocity and related hemodynamic parameters is an important aspect of physiological studies which in many settings requires fluorescent labeling. Here we show that Third Harmonic Generation (THG) microscopy is a suitable tool for label-free intravital investigations of the microcirculation in widely-used physiological model systems. THG microscopy is a non-fluorescent multi-photon scanning technique combining the advantages of label-free imaging with restriction of signal generation to a focal spot. Blood flow was visualized and its velocity was measured in adult mouse cremaster muscle vessels, non-invasively in mouse ear vessels and in Xenopus tadpoles. In arterioles, THG line scanning allowed determination of t...
In vivo microcirculatory imaging facilitates the fundamental understanding of many major diseases. H...
The ability to measure blood velocities is critical for studying vascular development, physiology, a...
We have enhanced photoacoustic microscopy with three-dimensional arbitrary trajectory (3-DAT) scanni...
Determination of blood flow velocity and related hemodynamic parameters is an important aspect of ph...
Determination of blood flow velocity and related hemodynamic parameters is an important aspect of ph...
Determination of blood flow velocity and related hemodynamic parameters is an important aspect of ph...
Determination of blood flow velocity and related hemodynamic parameters is an important aspect of ph...
<div><p>Determination of blood flow velocity and related hemodynamic parameters is an important aspe...
Determination of blood flow velocity and related hemodynamic parameters is an important aspect of ph...
Determination of blood flow velocity and related hemodynamic parameters is an important aspect of ph...
Second and Third Harmonic Generation (SHG and THG) microscopy is based on optical effects which are ...
Second and Third Harmonic Generation (SHG and THG) microscopy is based on optical effects which are ...
Second and Third Harmonic Generation (SHG and THG) microscopy is based on optical effects which are ...
Second and Third Harmonic Generation (SHG and THG) microscopy is based on optical effects which are ...
In vivo microcirculatory imaging facilitates the fundamental understanding of many major diseases. H...
In vivo microcirculatory imaging facilitates the fundamental understanding of many major diseases. H...
The ability to measure blood velocities is critical for studying vascular development, physiology, a...
We have enhanced photoacoustic microscopy with three-dimensional arbitrary trajectory (3-DAT) scanni...
Determination of blood flow velocity and related hemodynamic parameters is an important aspect of ph...
Determination of blood flow velocity and related hemodynamic parameters is an important aspect of ph...
Determination of blood flow velocity and related hemodynamic parameters is an important aspect of ph...
Determination of blood flow velocity and related hemodynamic parameters is an important aspect of ph...
<div><p>Determination of blood flow velocity and related hemodynamic parameters is an important aspe...
Determination of blood flow velocity and related hemodynamic parameters is an important aspect of ph...
Determination of blood flow velocity and related hemodynamic parameters is an important aspect of ph...
Second and Third Harmonic Generation (SHG and THG) microscopy is based on optical effects which are ...
Second and Third Harmonic Generation (SHG and THG) microscopy is based on optical effects which are ...
Second and Third Harmonic Generation (SHG and THG) microscopy is based on optical effects which are ...
Second and Third Harmonic Generation (SHG and THG) microscopy is based on optical effects which are ...
In vivo microcirculatory imaging facilitates the fundamental understanding of many major diseases. H...
In vivo microcirculatory imaging facilitates the fundamental understanding of many major diseases. H...
The ability to measure blood velocities is critical for studying vascular development, physiology, a...
We have enhanced photoacoustic microscopy with three-dimensional arbitrary trajectory (3-DAT) scanni...