Recent advances in microscopy have enabled cellular-resolution imaging of thick tissue samples or even whole organs. The natural opacity of organs and tissues acts as a barrier to light penetration and must be removed to visualise structures of interest on a three-dimensional scale. Tissue optical clearing methods achieve sample transparency while also preserving fluorescently labelled epitopes. This innovative approach to sample preparation effectively enhances traditional histological sections and, with the aid of light sheet microscopy, enables optical sectioning and three-dimensional reconstruction of entire organs, even whole brains. Light sheet microscopy of optically cleared brain samples is a valuable method in neuroscience that is ...
The accessibility of new wide-scale multimodal imaging techniques led to numerous clearing technique...
3D imaging of the central nervous system at the microscopic level is essential to investigate morpho...
Modern clearing techniques for the three-dimensional (3D) visualization of neural tissue microstruct...
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 ...
State-of-the-art tissue-clearing methods provide subcellular-level optical access to intact tissues ...
The last decade has seen a proliferation of tissue clearing methods that render large biological sam...
Three-dimensional (3D) optical imaging techniques can expand our knowledge about physiological and p...
Three-dimensional (3D) optical imaging techniques can expand our knowledge about physiological and p...
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 ...
1 ABSTRACT Many variants of microscopic techniques are the key methods for tissue structure examinat...
The development, refinement, and use of techniques that allow high-throughput imaging of whole brain...
The accessibility of new wide-scale multimodal imaging techniques led to numerous clearing technique...
The development of advanced light microscopes, capable of imaging samples at ever-higher spatial res...
The accessibility of new wide-scale multimodal imaging techniques led to numerous clearing technique...
3D imaging of the central nervous system at the microscopic level is essential to investigate morpho...
Modern clearing techniques for the three-dimensional (3D) visualization of neural tissue microstruct...
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 ...
State-of-the-art tissue-clearing methods provide subcellular-level optical access to intact tissues ...
The last decade has seen a proliferation of tissue clearing methods that render large biological sam...
Three-dimensional (3D) optical imaging techniques can expand our knowledge about physiological and p...
Three-dimensional (3D) optical imaging techniques can expand our knowledge about physiological and p...
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 ...
1 ABSTRACT Many variants of microscopic techniques are the key methods for tissue structure examinat...
The development, refinement, and use of techniques that allow high-throughput imaging of whole brain...
The accessibility of new wide-scale multimodal imaging techniques led to numerous clearing technique...
The development of advanced light microscopes, capable of imaging samples at ever-higher spatial res...
The accessibility of new wide-scale multimodal imaging techniques led to numerous clearing technique...
3D imaging of the central nervous system at the microscopic level is essential to investigate morpho...
Modern clearing techniques for the three-dimensional (3D) visualization of neural tissue microstruct...