Detection of biological features at the cellular level with sufcient sensitivity in complex tissue remains a major challenge. To appreciate this challenge, this would require fnding tens to hundreds of cells (a 0.1 mm tumor has ~125 cells), out of ~37 trillion cells in the human body. Near-infrared optical imaging holds promise for high-resolution, deep-tissue imaging, but is limited by autofuorescence and scattering. To date, the maximum reported depth using second-window near-infrared (NIR-II: 1000–1700 nm) fuorophores is 3.2 cm through tissue. Here, we design an NIR-II imaging system, “Detection of Optically Luminescent Probes using Hyperspectral and difuse Imaging in Near-infrared” (DOLPHIN), that resolves these challenges. DOLPHIN achi...
197 pagesImaging with high spatial resolution and high specificity within intact tissues at depth ha...
Non-invasive deep-tissue three-dimensional optical imaging of live mammals with high spatiotemporal ...
We constructed an advanced detection system for two-photon fluorescence microscopy that allows us to...
Detection of biological features at the cellular level with sufficient sensitivity in complex tissue...
PURPOSE: A primary enabling feature of near-infrared fluorescent proteins (FPs) and fluorescent prob...
Purpose: A primary enabling feature of near-infrared fluorescent proteins (FPs) and fluorescent prob...
Optical imaging methods help researchers interrogate complex biological and medical processes with t...
Fluorescence-enhanced optical imaging using near-infrared (NIR) light developed for in vivo molecula...
Fluorescence imaging technique, characterized by high sensitivity, non-invasiveness and no radiation...
he spatial resolution and light detected in fluorescence imaging for small animals are limited by li...
ABSTRACT: Small animal fluorescence molecular imaging (FMI) can be a powerful tool for preclinical d...
AbstractReal-time in vivo imaging of molecular targets at (sub)cellular resolution is essential in b...
Skin-deep: The combination of a near-infrared fluorescent protein (iRFP) and deep-tissue photoacoust...
Translation of fluorescence imaging using molecularly targeted imaging agents for real-time assessme...
Abstract.We describe a novel technical approach with enhanced fluorescence detection capabilities in...
197 pagesImaging with high spatial resolution and high specificity within intact tissues at depth ha...
Non-invasive deep-tissue three-dimensional optical imaging of live mammals with high spatiotemporal ...
We constructed an advanced detection system for two-photon fluorescence microscopy that allows us to...
Detection of biological features at the cellular level with sufficient sensitivity in complex tissue...
PURPOSE: A primary enabling feature of near-infrared fluorescent proteins (FPs) and fluorescent prob...
Purpose: A primary enabling feature of near-infrared fluorescent proteins (FPs) and fluorescent prob...
Optical imaging methods help researchers interrogate complex biological and medical processes with t...
Fluorescence-enhanced optical imaging using near-infrared (NIR) light developed for in vivo molecula...
Fluorescence imaging technique, characterized by high sensitivity, non-invasiveness and no radiation...
he spatial resolution and light detected in fluorescence imaging for small animals are limited by li...
ABSTRACT: Small animal fluorescence molecular imaging (FMI) can be a powerful tool for preclinical d...
AbstractReal-time in vivo imaging of molecular targets at (sub)cellular resolution is essential in b...
Skin-deep: The combination of a near-infrared fluorescent protein (iRFP) and deep-tissue photoacoust...
Translation of fluorescence imaging using molecularly targeted imaging agents for real-time assessme...
Abstract.We describe a novel technical approach with enhanced fluorescence detection capabilities in...
197 pagesImaging with high spatial resolution and high specificity within intact tissues at depth ha...
Non-invasive deep-tissue three-dimensional optical imaging of live mammals with high spatiotemporal ...
We constructed an advanced detection system for two-photon fluorescence microscopy that allows us to...