Multi-modal label-free imaging of cellular metabolism and oxidative stress in 3D brain tissue models
Label-free, two-photon fluorescence imaging enables non-destructive, single-cell metabolic assessments that capture metabolic reprogramming and heterogeneity. Here, we use intensity and lifetime ...
Label-free detection of biological events at single-cell resolution in the brain can non-invasively capture brain status for medical diagnosis and basic neuroscience research. NADH is an universal ...
The potential to create personalised digital “twins” of your brain and body is a hot topic in neuroscience and medicine today. These computer models are designed to simulate how parts of your brain ...
Figure 1. Conceptual illustration of label-free, multiphoton photoacoustic microscope (LF-MP-PAM). Near-infrared femtosecond laser enable us to observe endogenous NAD(P)H of neurons in brain slice and ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results