Figure S1. LSTM microscopy implementation. (a) Image of the physical LSTM setup. (b) 3D model of LSTM and the sample mounting system. The 3D-printed sample chamber is designed to accommodate large biological samples of virtually any dimensions, while still allowing the objectives to be immersed in the immersion oil. Two transparent glass windows, located on the lateral sides, provide visual view of the sample for ease of positioning. An additional window is realized at the bottom part of the chamber to allow the illumination light to pass through. An additional adapter was designed to allow mounting a prism mirror at about approximately 10° from the normal surface to facilitate the optical alignment of the system. (PDF 1623 kb
The combination of biological tissue clearing methods with light-sheet fluorescence microscopy (LSFM...
This video visualizes an image stack acquired from a large rat brain slice (stained for vasculature ...
<div><p>The 3D rendering visualizes the image stacks acquired from the same sample (human brain sect...
Figure S2. Detailed annotation of LSTM optical path shown in Fig. 2a. (PDF 571 kb
Video 1. 3D model of LSTM implementation. The 3D modeling and rendering was performed using Autodes...
Video 2. Comparison of image volumes acquired with LSTM in 1-axis scan (1-AS) and 2-axis scan (2-AS...
Figure S4. Comparison of maximum illumination path lengths in LSTM and LSM. The graphs plot the bina...
<div>The 3D modelling and rendering was performed using Autodesk Inventor 2017, and the animation wa...
Video 3. High-resolution LSTM imaging of intact Thy1-eYFP mouse central nervous system. The bounding...
Video 4. High-resolution LSTM imaging of a large tissue of Thy1-eYFP mouse brain. The bounding box i...
Video 6. High-resolution LSTM imaging of a large expanded section of Thy1-eYFP mouse brain. A thin (...
Background Advances in tissue clearing and molecular labeling methods are enabling ...
Video 5. Visualization of an image stack of vasculature-stained rat brain tissue. This video visuali...
Figure S3. Physical constraints of positioning illumination and detection objectives. (a) Schematics...
The bounding box is 9.6mm x 13.5 mm x 5.34 mm. The raw data was down-sampled 4x4 fold to make the vo...
The combination of biological tissue clearing methods with light-sheet fluorescence microscopy (LSFM...
This video visualizes an image stack acquired from a large rat brain slice (stained for vasculature ...
<div><p>The 3D rendering visualizes the image stacks acquired from the same sample (human brain sect...
Figure S2. Detailed annotation of LSTM optical path shown in Fig. 2a. (PDF 571 kb
Video 1. 3D model of LSTM implementation. The 3D modeling and rendering was performed using Autodes...
Video 2. Comparison of image volumes acquired with LSTM in 1-axis scan (1-AS) and 2-axis scan (2-AS...
Figure S4. Comparison of maximum illumination path lengths in LSTM and LSM. The graphs plot the bina...
<div>The 3D modelling and rendering was performed using Autodesk Inventor 2017, and the animation wa...
Video 3. High-resolution LSTM imaging of intact Thy1-eYFP mouse central nervous system. The bounding...
Video 4. High-resolution LSTM imaging of a large tissue of Thy1-eYFP mouse brain. The bounding box i...
Video 6. High-resolution LSTM imaging of a large expanded section of Thy1-eYFP mouse brain. A thin (...
Background Advances in tissue clearing and molecular labeling methods are enabling ...
Video 5. Visualization of an image stack of vasculature-stained rat brain tissue. This video visuali...
Figure S3. Physical constraints of positioning illumination and detection objectives. (a) Schematics...
The bounding box is 9.6mm x 13.5 mm x 5.34 mm. The raw data was down-sampled 4x4 fold to make the vo...
The combination of biological tissue clearing methods with light-sheet fluorescence microscopy (LSFM...
This video visualizes an image stack acquired from a large rat brain slice (stained for vasculature ...
<div><p>The 3D rendering visualizes the image stacks acquired from the same sample (human brain sect...