textabstractNonlinear spectral imaging microscopy (NSIM) allows simultaneous morphological and spectroscopic investigation of intercellular events within living animals. In this study we used NSIM for in vivo timelapse in-depth spectral imaging and monitoring of protein-bound and free reduced nicotinamide adenine dinucleotide (NADH) in mouse keratinocytes following total acute ischemia for 3.3 h at ~3 min time intervals. The high spectral resolution of NSIM images allows discrimination between the twophoton excited fluorescence emission of protein-bound and free NAD(P)H by applying linear spectral unmixing to the spectral image data. Results reveal the difference in the dynamic response between protein-bound and free NAD(P)H to ischemia-ind...
We describe a metabolic imaging system based on simultaneous recording of lifetime images of NAD(P)H...
Investigating cerebral metabolism in vivo at a microscopic level is essential for understanding brai...
In this study, we demonstrate a noninvasive imaging approach based on multimodal nonlinear optical m...
Nonlinear spectral imaging microscopy (NSIM) allows simultaneous morphological and spectroscopic inv...
Reduced nicotinamide adenine dinucleotide (NADH) is a well-known metabolic coenzyme and endogenous f...
A time-resolved spectroscopic imaging system is built to study the fluorescence characteristics of n...
Cellular metabolism plays a critical role in human health and homeostasis and is implicated in a lar...
We employ a clinical multiphoton microscope to monitor in vivo and noninvasively the changes in redu...
AbstractThe redox states of the NAD and NADP pyridine nucleotide pools play critical roles in defini...
AbstractReduced nicotine adenine dinucleotide (NADH) is a key metabolite involved in cellular energy...
Study of cellular metabolism and its influence on physiological functions and pathology along with i...
NADH and NADPH are redox cofactors, primarily involved in catabolic and anabolic metabolic processes...
AbstractWe employ a clinical multiphoton microscope to monitor in vivo and noninvasively the changes...
This paper describes the experimental monitoring of pancreatic oxidative metabolism in laboratory mi...
To examine the process of endothelial cell aging we utilised hyperspectral imaging to collect broad ...
We describe a metabolic imaging system based on simultaneous recording of lifetime images of NAD(P)H...
Investigating cerebral metabolism in vivo at a microscopic level is essential for understanding brai...
In this study, we demonstrate a noninvasive imaging approach based on multimodal nonlinear optical m...
Nonlinear spectral imaging microscopy (NSIM) allows simultaneous morphological and spectroscopic inv...
Reduced nicotinamide adenine dinucleotide (NADH) is a well-known metabolic coenzyme and endogenous f...
A time-resolved spectroscopic imaging system is built to study the fluorescence characteristics of n...
Cellular metabolism plays a critical role in human health and homeostasis and is implicated in a lar...
We employ a clinical multiphoton microscope to monitor in vivo and noninvasively the changes in redu...
AbstractThe redox states of the NAD and NADP pyridine nucleotide pools play critical roles in defini...
AbstractReduced nicotine adenine dinucleotide (NADH) is a key metabolite involved in cellular energy...
Study of cellular metabolism and its influence on physiological functions and pathology along with i...
NADH and NADPH are redox cofactors, primarily involved in catabolic and anabolic metabolic processes...
AbstractWe employ a clinical multiphoton microscope to monitor in vivo and noninvasively the changes...
This paper describes the experimental monitoring of pancreatic oxidative metabolism in laboratory mi...
To examine the process of endothelial cell aging we utilised hyperspectral imaging to collect broad ...
We describe a metabolic imaging system based on simultaneous recording of lifetime images of NAD(P)H...
Investigating cerebral metabolism in vivo at a microscopic level is essential for understanding brai...
In this study, we demonstrate a noninvasive imaging approach based on multimodal nonlinear optical m...