Novel clearing techniques have revolutionized three-dimensional confocal imaging of the brain without the need for physical tissue sectioning. We evaluated three clearing methods, ScaleA2, Clear(T2), and 3DISCO for visualizing native and tissue engineered muscle by confocal microscopy. We found that Clear(T2) treatment improved the depth of visualization of immunohistochemical staining slightly, but did not improve depth of visualization of endogenous green fluorescent protein (GFP). ScaleA2 preserved endogenous GFP signal better and permitted significantly deeper GFP imaging, but it was incompatible with tropomyosin immunohistochemical staining. 3DISCO treatment preserved both endogenous GFP and immunohistochemical staining, and permitted ...
Three-dimensional (3D) optical imaging techniques can expand our knowledge about physiological and p...
BACKGROUND: High-resolution 3D imaging of intact tissue facilitates cellular and subcellular analyse...
The development, refinement, and use of techniques that allow high-throughput imaging of whole brain...
Novel clearing techniques have revolutionized three-dimensional confocal imaging of the brain withou...
Aim Recently, several clearing techniques have been published or revisited, aiming at 3D visualizat...
Objective: Passive CLARITY is a whole-tissue clearing protocol, based on sodium dodecyl sulfate (SDS...
1 ABSTRACT Many variants of microscopic techniques are the key methods for tissue structure examinat...
State-of-the-art tissue-clearing methods provide subcellular-level optical access to intact tissues ...
State-of-the-art tissue-clearing methods provide subcellular-level optical access to intact tissues ...
State-of-the-art tissue-clearing methods provide subcellular-level optical access to intact tissues ...
State-of-the-art tissue-clearing methods provide subcellular-level optical access to intact tissues ...
The development of tissue clearing technologies allows 3D imaging of whole tissues and organs, espec...
Background: High-resolution 3D imaging of intact tissue facilitates cellular and subcellular analyse...
doi:10.3791/51382 (2014). Tissue clearing and subsequent imaging of transparent organs is a powerful...
The combination of tissue clearing techniques with advanced optical microscopy facilitates the achie...
Three-dimensional (3D) optical imaging techniques can expand our knowledge about physiological and p...
BACKGROUND: High-resolution 3D imaging of intact tissue facilitates cellular and subcellular analyse...
The development, refinement, and use of techniques that allow high-throughput imaging of whole brain...
Novel clearing techniques have revolutionized three-dimensional confocal imaging of the brain withou...
Aim Recently, several clearing techniques have been published or revisited, aiming at 3D visualizat...
Objective: Passive CLARITY is a whole-tissue clearing protocol, based on sodium dodecyl sulfate (SDS...
1 ABSTRACT Many variants of microscopic techniques are the key methods for tissue structure examinat...
State-of-the-art tissue-clearing methods provide subcellular-level optical access to intact tissues ...
State-of-the-art tissue-clearing methods provide subcellular-level optical access to intact tissues ...
State-of-the-art tissue-clearing methods provide subcellular-level optical access to intact tissues ...
State-of-the-art tissue-clearing methods provide subcellular-level optical access to intact tissues ...
The development of tissue clearing technologies allows 3D imaging of whole tissues and organs, espec...
Background: High-resolution 3D imaging of intact tissue facilitates cellular and subcellular analyse...
doi:10.3791/51382 (2014). Tissue clearing and subsequent imaging of transparent organs is a powerful...
The combination of tissue clearing techniques with advanced optical microscopy facilitates the achie...
Three-dimensional (3D) optical imaging techniques can expand our knowledge about physiological and p...
BACKGROUND: High-resolution 3D imaging of intact tissue facilitates cellular and subcellular analyse...
The development, refinement, and use of techniques that allow high-throughput imaging of whole brain...