Optical microscopy, when applied to living animals, provides a powerful means of studying cell biology in the most physiologically relevant setting. The ability of two-photon microscopy to collect optical sections deep into biological tissues has opened up the field of intravital microscopy to high-resolution studies of the brain, lens, skin, and tumors. Here we present examples of the way in which two-photon microscopy can be applied to intravital studies of kidney physiology. Because the kidney is easily externalized without compromising its function, microscopy can be used to evaluate various aspects of renal function in vivo. These include cell vitality and apoptosis, fluid transport, receptor-mediated endocytosis, blood flow, and leuko...
Abstract Intravital multiphoton microscopy is a powerful tool to study kidney physiology in living a...
Multiphoton excitation fluorescence microscopy is a state-of-the-art confocal imaging technique idea...
Intravital multiphoton microscopy is a powerful tool to study kidney physiology in living animals. H...
Fluorescence microscopy has represented a crucial technique to explore the cellular and molecular me...
Fluorescence microscopy has represented a crucial technique to explore the cellular and molecular me...
Two-photon intravital microscopy is a powerful tool that allows the examination of dynamic cellular ...
Intravital two-photon microscopy is a powerful imaging tool for investigating various biological pro...
The kidney is a complex and dynamic organ with over 40 cell types, and tremendous structural and fun...
The introduction of two-photon microscopy, along with the development of new fluorescent probes and ...
Purpose of review Intravital imaging with multiphoton microscopy enables the detailed study of dynam...
In the live animal, tissue autofluorescence arises from a number of biologically important metabolit...
Purpose of review Intravital imaging with multiphoton microscopy enables the detailed study of dynam...
The development of intravital imaging with multiphoton microscopy has had a major impact on kidney r...
The development of intravital imaging with multiphoton microscopy has had a major impact on kidney r...
The development of intravital imaging with multiphoton microscopy has had a major impact on kidney r...
Abstract Intravital multiphoton microscopy is a powerful tool to study kidney physiology in living a...
Multiphoton excitation fluorescence microscopy is a state-of-the-art confocal imaging technique idea...
Intravital multiphoton microscopy is a powerful tool to study kidney physiology in living animals. H...
Fluorescence microscopy has represented a crucial technique to explore the cellular and molecular me...
Fluorescence microscopy has represented a crucial technique to explore the cellular and molecular me...
Two-photon intravital microscopy is a powerful tool that allows the examination of dynamic cellular ...
Intravital two-photon microscopy is a powerful imaging tool for investigating various biological pro...
The kidney is a complex and dynamic organ with over 40 cell types, and tremendous structural and fun...
The introduction of two-photon microscopy, along with the development of new fluorescent probes and ...
Purpose of review Intravital imaging with multiphoton microscopy enables the detailed study of dynam...
In the live animal, tissue autofluorescence arises from a number of biologically important metabolit...
Purpose of review Intravital imaging with multiphoton microscopy enables the detailed study of dynam...
The development of intravital imaging with multiphoton microscopy has had a major impact on kidney r...
The development of intravital imaging with multiphoton microscopy has had a major impact on kidney r...
The development of intravital imaging with multiphoton microscopy has had a major impact on kidney r...
Abstract Intravital multiphoton microscopy is a powerful tool to study kidney physiology in living a...
Multiphoton excitation fluorescence microscopy is a state-of-the-art confocal imaging technique idea...
Intravital multiphoton microscopy is a powerful tool to study kidney physiology in living animals. H...