and Analysis Protocols for Knife-edge Scanning Microscopy. J. Vis. Exp. (58), e3248, doi:10.3791/3248 (2011). Major advances in high-throughput, high-resolution, 3D microscopy techniques have enabled the acquisition of large volumes of neuroanatomical data at submicrometer resolution. One of the first such instruments producing whole-brain-scale data is the Knife-Edge Scanning Microscope (KESM)7, 5, 9, developed and hosted in the authors ' lab. KESM has been used to section and image whole mouse brains at submicrometer resolution, revealing the intricate details of the neuronal networks (Golgi)1, 4, 8, vascular networks (India ink)1, 4, and cell body distribution (Nissl)3. The use of KESM is not restricted to the mouse nor the brain. W...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
This video presentation was created to show a method of harvesting the two most important highly vas...
Building and studying 3D representations of anatomical structures, such as the brain, plays an impor...
Connectomics is the study of the full connection matrix of the brain.Recent advances in high-through...
Mapping the microvascular networks in the brain can lead to significant scientific and clinical insi...
Charting out the complete brain microstructure of a mammalian species is a grand challenge. Recent a...
Advances in high-throughput, high-volume microscopy techniques have enabled the acquisition of extre...
The zebrafish spinal cord is an effective investigative model for nervous system research for severa...
Quantitative analysis of three dimensional image datasets in microscopy has the potential to assist ...
Over the last ten years, developments in whole-brain microscopy now allow for high-resolution imagin...
Volume correlative light and electron microscopy (CLEM) image data of (i) 9 serial sections of rat p...
Studies in the mammalian neocortex have enabled unprecedented resolution of cortical structure, acti...
The Knife-Edge Scanning Microscope (KESM) enables imaging of an entire mouse brain at sub-micrometer...
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 number of physiological investigations in the mouse, mus musculus, has experienced a recent surg...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
This video presentation was created to show a method of harvesting the two most important highly vas...
Building and studying 3D representations of anatomical structures, such as the brain, plays an impor...
Connectomics is the study of the full connection matrix of the brain.Recent advances in high-through...
Mapping the microvascular networks in the brain can lead to significant scientific and clinical insi...
Charting out the complete brain microstructure of a mammalian species is a grand challenge. Recent a...
Advances in high-throughput, high-volume microscopy techniques have enabled the acquisition of extre...
The zebrafish spinal cord is an effective investigative model for nervous system research for severa...
Quantitative analysis of three dimensional image datasets in microscopy has the potential to assist ...
Over the last ten years, developments in whole-brain microscopy now allow for high-resolution imagin...
Volume correlative light and electron microscopy (CLEM) image data of (i) 9 serial sections of rat p...
Studies in the mammalian neocortex have enabled unprecedented resolution of cortical structure, acti...
The Knife-Edge Scanning Microscope (KESM) enables imaging of an entire mouse brain at sub-micrometer...
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 number of physiological investigations in the mouse, mus musculus, has experienced a recent surg...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
This video presentation was created to show a method of harvesting the two most important highly vas...
Building and studying 3D representations of anatomical structures, such as the brain, plays an impor...