Revealing the 3D composition of intact tissue specimens is essential for understanding cell and organ biology in health and disease. State-of-the-art 3D microscopy techniques aim to capture tissue volumes on an ever-increasing scale, while also retaining sufficient resolution for single-cell analysis. Furthermore, spatial profiling through multi-marker imaging is fast developing, providing more context and better distinction between cell types. Following these lines of technological advance, we here present a protocol based on FUnGI (fructose, urea and glycerol clearing solution for imaging) optical clearing of tissue before multispectral large-scale single-cell resolution 3D (mLSR-3D) imaging, which implements 'on-the-fly' linear unmixing ...
The rapid development of super-resolution microscopy (SRM) techniques opens new avenues to examine c...
Tissue clearing methods promise to provide exquisite three-dimensional imaging information; however,...
Image cytometry technology has been extended to 3D based on high-speed multiphoton microscopy. This ...
Tissues contain a variety of interconnected cells with different functional states and shapes and th...
Nowadays, three dimensional (3D) cell cultures are widely used in the biological laboratories and se...
This review delves into the rapidly evolving field of deep tissue imaging at cellular resolution, re...
The ability to image human tissue samples in 3D, with both cellular resolution and a large field of ...
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...
3D microscopy of large biological samples (>0.5 cm3) is transforming biological research. Many exist...
Significance: Currently, tissue biopsies are sectioned into 3- to 5-μm-thick slices that are used f...
doi:10.3791/51382 (2014). Tissue clearing and subsequent imaging of transparent organs is a powerful...
Three-dimensional cell cultures are able to better mimic the physiology and cellular environments fo...
Three-dimensional (3D) optical imaging techniques can expand our knowledge about physiological and p...
The combination of optical tissue transparency with immunofluorescence allows the molecular characte...
The rapid development of super-resolution microscopy (SRM) techniques opens new avenues to examine c...
Tissue clearing methods promise to provide exquisite three-dimensional imaging information; however,...
Image cytometry technology has been extended to 3D based on high-speed multiphoton microscopy. This ...
Tissues contain a variety of interconnected cells with different functional states and shapes and th...
Nowadays, three dimensional (3D) cell cultures are widely used in the biological laboratories and se...
This review delves into the rapidly evolving field of deep tissue imaging at cellular resolution, re...
The ability to image human tissue samples in 3D, with both cellular resolution and a large field of ...
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...
3D microscopy of large biological samples (>0.5 cm3) is transforming biological research. Many exist...
Significance: Currently, tissue biopsies are sectioned into 3- to 5-μm-thick slices that are used f...
doi:10.3791/51382 (2014). Tissue clearing and subsequent imaging of transparent organs is a powerful...
Three-dimensional cell cultures are able to better mimic the physiology and cellular environments fo...
Three-dimensional (3D) optical imaging techniques can expand our knowledge about physiological and p...
The combination of optical tissue transparency with immunofluorescence allows the molecular characte...
The rapid development of super-resolution microscopy (SRM) techniques opens new avenues to examine c...
Tissue clearing methods promise to provide exquisite three-dimensional imaging information; however,...
Image cytometry technology has been extended to 3D based on high-speed multiphoton microscopy. This ...