In vivo (molecular) imaging of the vessel wall of large arteries at subcellular resolution is crucial for unraveling vascular pathophysiology. We previously showed the applicability of two-photon laser scanning microscopy (TPLSM) in mounted arteries ex vivo. However, in vivo TPLSM has thus far suffered from in-frame and between-frame motion artifacts due to arterial movement with cardiac and respiratory activity. Now, motion artifacts are suppressed by accelerated image acquisition triggered on cardiac and respiratory activity. In vivo TPLSM is performed on rat renal and mouse carotid arteries, both surgically exposed and labeled fluorescently (cell nuclei, elastin, and collagen). The use of short acquisition times consistently limit in-fra...
International audienceWe characterize the application of multiphoton microscopy to the observation o...
International audienceWe characterize the application of multiphoton microscopy to the observation o...
International audienceWe characterize the application of multiphoton microscopy to the observation o...
In vivo (molecular) imaging of the vessel wall of large arteries at subcellular resolution is crucia...
In vivo (molecular) imaging of the vessel wall of large arteries at subcellular resolution is crucia...
In vivo (molecular) imaging of the vessel wall of large arteries at subcellular resolution is crucia...
In vivo (molecular) imaging of the vessel wall of large arteries at subcellular resolution is crucia...
In vivo (molecular) imaging of the vessel wall of large arteries at subcellular resolution is crucia...
In vivo (molecular) imaging of the vessel wall of large arteries at subcellular resolution is crucia...
In vivo (molecular) imaging of the vessel wall of large arteries at subcellular resolution is crucia...
We used two-photon laser scanning microscopy (TPLSM) to demonstrate for the first time its potential...
We used two-photon laser scanning microscopy (TPLSM) to demonstrate for the first time its potential...
We used two-photon laser scanning microscopy (TPLSM) to demonstrate for the first time its potential...
Preliminary investigations were carried out in order to explore the potential of laser-stimulated ca...
A functional brain vascular supply is crucial for delivery of life-essential nutrients and removal o...
International audienceWe characterize the application of multiphoton microscopy to the observation o...
International audienceWe characterize the application of multiphoton microscopy to the observation o...
International audienceWe characterize the application of multiphoton microscopy to the observation o...
In vivo (molecular) imaging of the vessel wall of large arteries at subcellular resolution is crucia...
In vivo (molecular) imaging of the vessel wall of large arteries at subcellular resolution is crucia...
In vivo (molecular) imaging of the vessel wall of large arteries at subcellular resolution is crucia...
In vivo (molecular) imaging of the vessel wall of large arteries at subcellular resolution is crucia...
In vivo (molecular) imaging of the vessel wall of large arteries at subcellular resolution is crucia...
In vivo (molecular) imaging of the vessel wall of large arteries at subcellular resolution is crucia...
In vivo (molecular) imaging of the vessel wall of large arteries at subcellular resolution is crucia...
We used two-photon laser scanning microscopy (TPLSM) to demonstrate for the first time its potential...
We used two-photon laser scanning microscopy (TPLSM) to demonstrate for the first time its potential...
We used two-photon laser scanning microscopy (TPLSM) to demonstrate for the first time its potential...
Preliminary investigations were carried out in order to explore the potential of laser-stimulated ca...
A functional brain vascular supply is crucial for delivery of life-essential nutrients and removal o...
International audienceWe characterize the application of multiphoton microscopy to the observation o...
International audienceWe characterize the application of multiphoton microscopy to the observation o...
International audienceWe characterize the application of multiphoton microscopy to the observation o...