We have previously demonstrated that the use of a commercially-available immersion-based optical clearing agent (OCA) enables, within 3–6 hours, three-dimensional visualization of subsurface exogenous fluorescent and absorbing markers of vascular architecture and neurodegenerative disease in thick (0.5–1.0mm) mouse brain sections. Nonetheless, the relative performance of immersion-based OCAs has remained unknown. Here, we show that immersion of brain sections in specific OCAs (FocusClear, RIMS, sRIMS, or ScaleSQ) affects both their transparency and volume; the optical clearing effect occurs over the entire visible spectrum and is reversible; and that ScaleSQ had the highest optical clearing potential and increase in imaging depth of the fou...
Background: Three-dimensional visualization of the brain vasculature and its interactions with surro...
Elucidation of neural circuit functions requires visualization of the fine structure of neurons in t...
Blood vessels are three-dimensional (3D) in structure and precisely connected. Conventional histolog...
We have previously demonstrated that the use of a commercially-available immersion-based optical cle...
We have previously demonstrated that the use of a commercially-available immersion-based optical cle...
Author listMathew Loren, Christian Crouzet, Adrian Bahani, Vitaly Vasilevko, Bernard ChoiAbstractWe ...
Fluorescence microscopy is commonly used to investigate disease progression in biological tissues. B...
Fluorescence microscopy is commonly used to investigate disease progression in biological tissues. B...
Recent advances in optical clearing techniques have dramatically improved deep tissue imaging by red...
Abstract. Optical clearing, in combination with recently developed optical imaging techniques, enabl...
Ex vivo 2-photon fluorescence microscopy (2PFM) with optical clearing enables vascular imaging deep ...
Large volumes imaging with microscopic resolution is limited by light scattering. In the last few ye...
Large volumes imaging with microscopic resolution is limited by light scattering. In the last few ye...
<div><h3>Background</h3><p>The microvasculature is the network of blood vessels involved in deliveri...
The development, refinement, and use of techniques that allow high-throughput imaging of whole brain...
Background: Three-dimensional visualization of the brain vasculature and its interactions with surro...
Elucidation of neural circuit functions requires visualization of the fine structure of neurons in t...
Blood vessels are three-dimensional (3D) in structure and precisely connected. Conventional histolog...
We have previously demonstrated that the use of a commercially-available immersion-based optical cle...
We have previously demonstrated that the use of a commercially-available immersion-based optical cle...
Author listMathew Loren, Christian Crouzet, Adrian Bahani, Vitaly Vasilevko, Bernard ChoiAbstractWe ...
Fluorescence microscopy is commonly used to investigate disease progression in biological tissues. B...
Fluorescence microscopy is commonly used to investigate disease progression in biological tissues. B...
Recent advances in optical clearing techniques have dramatically improved deep tissue imaging by red...
Abstract. Optical clearing, in combination with recently developed optical imaging techniques, enabl...
Ex vivo 2-photon fluorescence microscopy (2PFM) with optical clearing enables vascular imaging deep ...
Large volumes imaging with microscopic resolution is limited by light scattering. In the last few ye...
Large volumes imaging with microscopic resolution is limited by light scattering. In the last few ye...
<div><h3>Background</h3><p>The microvasculature is the network of blood vessels involved in deliveri...
The development, refinement, and use of techniques that allow high-throughput imaging of whole brain...
Background: Three-dimensional visualization of the brain vasculature and its interactions with surro...
Elucidation of neural circuit functions requires visualization of the fine structure of neurons in t...
Blood vessels are three-dimensional (3D) in structure and precisely connected. Conventional histolog...