Journal ArticleComplete mapping of neuronal networks requires data acquisition at synaptic resolution with canonical coverage of tissues and robust neuronal classification. Transmission electron microscopy (TEM) remains the optimal tool for network mapping. However, capturing high resolution, large, serial section TEM (ssTEM) image volumes is complicated by the need to precisely mosaic distorted image tiles and subsequently register distorted mosaics. Moreover, most cell or tissue class markers are not optimized for TEM imaging. We present a complete framework for neuronal reconstruction at ultrastructural resolution, allowing the elucidation of complete neuronal circuits. This workflow combines TEM-compliant small molecule profiling with...
Cellular-resolution connectomics is a field of neuroscience that aims to decipher how neurons in the...
Reconstructing a map of neuronal connectivity is a critical challenge in contemporary neuroscience. ...
Complex wiring between neurons underlies the information-processing network enabling all brain funct...
Circuitry mapping of metazoan neural systems is difficult because canonical neural regions (regions ...
Circuity mapping of metazoan neural systems is difficult because canonical neural regions (regions c...
Mapping neuroanatomy, in the pursuit of linking hypothesized computational models consistent with ob...
Mapping neuroanatomy, in the pursuit of linking hypothesized computational models consistent with ob...
The connectivity architecture of neuronal circuits is essential to understand how brains work, yet o...
The last decade has seen a rapid increase in the number of tools to acquire volume electron microsco...
The connectivity architecture of neuronal circuits is essential to understand how brains work, yet o...
Resolving patterns of synaptic connectivity in neural circuits currently requires serial section ele...
Neuronal networks are high-dimensional graphs that are packed into three-dimensional nervous tissue ...
SummaryProgress in electron microscopy-based high-resolution connectomics is limited by data analysi...
The connectivity architecture of neuronal circuits is essential to understand how brains work, yet o...
The connectivity architecture of neuronal circuits is essential to understand how brains work, yet o...
Cellular-resolution connectomics is a field of neuroscience that aims to decipher how neurons in the...
Reconstructing a map of neuronal connectivity is a critical challenge in contemporary neuroscience. ...
Complex wiring between neurons underlies the information-processing network enabling all brain funct...
Circuitry mapping of metazoan neural systems is difficult because canonical neural regions (regions ...
Circuity mapping of metazoan neural systems is difficult because canonical neural regions (regions c...
Mapping neuroanatomy, in the pursuit of linking hypothesized computational models consistent with ob...
Mapping neuroanatomy, in the pursuit of linking hypothesized computational models consistent with ob...
The connectivity architecture of neuronal circuits is essential to understand how brains work, yet o...
The last decade has seen a rapid increase in the number of tools to acquire volume electron microsco...
The connectivity architecture of neuronal circuits is essential to understand how brains work, yet o...
Resolving patterns of synaptic connectivity in neural circuits currently requires serial section ele...
Neuronal networks are high-dimensional graphs that are packed into three-dimensional nervous tissue ...
SummaryProgress in electron microscopy-based high-resolution connectomics is limited by data analysi...
The connectivity architecture of neuronal circuits is essential to understand how brains work, yet o...
The connectivity architecture of neuronal circuits is essential to understand how brains work, yet o...
Cellular-resolution connectomics is a field of neuroscience that aims to decipher how neurons in the...
Reconstructing a map of neuronal connectivity is a critical challenge in contemporary neuroscience. ...
Complex wiring between neurons underlies the information-processing network enabling all brain funct...