Biological specimens are intrinsically three dimensional; however, because of the obscuring effects of light scatter, imaging deep into a tissue volume is problematic. Although efforts to eliminate the scatter by “clearing” the tissue have been ongoing for over a century, there have been a large number of recent innovations. This Review introduces the physical basis for light scatter in tissue, describes the mechanisms underlying various clearing techniques, and discusses several of the major advances in light microscopy for imaging cleared tissue
Tissue clearing methods promise to provide exquisite three-dimensional imaging information; however,...
The high scattering and absorption of opaque tissues limit the penetration of light into deep tissue...
Three-dimensional (3D) optical imaging techniques can expand our knowledge about physiological and p...
Abstract Tissue optical clearing technique provides a prospec-tive solution for the application of a...
Tissue clearing of gross anatomical samples was first described more than a century ago and has only...
The last decade has seen a proliferation of tissue clearing methods that render large biological sam...
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 ...
Observation of complex cellular shapes in three-dimensional (3D) tissue context requires the use of ...
State-of-the-art tissue-clearing methods provide subcellular-level optical access to intact tissues ...
Recent advances in microscopy have enabled cellular-resolution imaging of thick tissue samples or ev...
State-of-the-art tissue-clearing methods provide subcellular-level optical access to intact tissues ...
Understanding the inner morphology of intact tissues is one of the most competitive challenges in mo...
Abstract Tissue-clearing techniques have received great attention for volume imaging and for the pot...
This paper aims to review recent progress in optical clearing of the skin and over naturally turbid ...
Tissue clearing methods promise to provide exquisite three-dimensional imaging information; however,...
The high scattering and absorption of opaque tissues limit the penetration of light into deep tissue...
Three-dimensional (3D) optical imaging techniques can expand our knowledge about physiological and p...
Abstract Tissue optical clearing technique provides a prospec-tive solution for the application of a...
Tissue clearing of gross anatomical samples was first described more than a century ago and has only...
The last decade has seen a proliferation of tissue clearing methods that render large biological sam...
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 ...
Observation of complex cellular shapes in three-dimensional (3D) tissue context requires the use of ...
State-of-the-art tissue-clearing methods provide subcellular-level optical access to intact tissues ...
Recent advances in microscopy have enabled cellular-resolution imaging of thick tissue samples or ev...
State-of-the-art tissue-clearing methods provide subcellular-level optical access to intact tissues ...
Understanding the inner morphology of intact tissues is one of the most competitive challenges in mo...
Abstract Tissue-clearing techniques have received great attention for volume imaging and for the pot...
This paper aims to review recent progress in optical clearing of the skin and over naturally turbid ...
Tissue clearing methods promise to provide exquisite three-dimensional imaging information; however,...
The high scattering and absorption of opaque tissues limit the penetration of light into deep tissue...
Three-dimensional (3D) optical imaging techniques can expand our knowledge about physiological and p...