Abstract Background The locations and shapes of synapses are important in reconstructing connectomes and analyzing synaptic plasticity. However, current synapse detection and segmentation methods are still not adequate for accurately acquiring the synaptic connectivity, and they cannot effectively alleviate the burden of synapse validation. Results We propose a fully automated method that relies on deep learning to realize the 3D reconstruction of synapses in electron microscopy (EM) images. The proposed method consists of three main parts: (1) training and employing the faster region convolutional neural networks (R-CNN) algorithm to detect synapses, (2) using the z-continuity of synapses to reduce false positives, and (3) combining the Di...
We describe a method for fully automated detection of chemical synapses in serial electron microscop...
Teravoxel volume electron microscopy data sets from neural tissue can now be acquired in weeks, but ...
The goal of fully decoding how the brain works requires a detailed wiring diagram of the brain netwo...
Brain wiring diagrams showing every individual neuron and all the synaptic connections are becoming ...
We describe a protocol for fully automated detection and segmentation of asymmetric, presumed excita...
Nerve tissue contains a high density of chemical synapses, about 1 per μm3 in the mammalian cerebral...
MOTIVATION: Synaptic connections underlie learning and memory in the brain and are dynamically forme...
Trabajo presentado en la 21st International Conference Medical Image Computing and Computer Assisted...
Motivation: Synaptic connections underlie learning and memory in the brain and are dynamically forme...
Abstract Background It is becoming increasingly clear that the quantification of mitochondria and sy...
Abstract Background As an extension of electron tomography (ET), serial section electron tomography ...
We present a new approach for the automated segmentation of excitatory synapses in image stacks acqu...
We describe a method for fully automated detection of chemical synapses in serial electron microscop...
Mapping neuroanatomy, in the pursuit of linking hypothesized computational models consistent with ob...
Extracting a connectome from an electron microscopy (EM) data set requires identification of neurons...
We describe a method for fully automated detection of chemical synapses in serial electron microscop...
Teravoxel volume electron microscopy data sets from neural tissue can now be acquired in weeks, but ...
The goal of fully decoding how the brain works requires a detailed wiring diagram of the brain netwo...
Brain wiring diagrams showing every individual neuron and all the synaptic connections are becoming ...
We describe a protocol for fully automated detection and segmentation of asymmetric, presumed excita...
Nerve tissue contains a high density of chemical synapses, about 1 per μm3 in the mammalian cerebral...
MOTIVATION: Synaptic connections underlie learning and memory in the brain and are dynamically forme...
Trabajo presentado en la 21st International Conference Medical Image Computing and Computer Assisted...
Motivation: Synaptic connections underlie learning and memory in the brain and are dynamically forme...
Abstract Background It is becoming increasingly clear that the quantification of mitochondria and sy...
Abstract Background As an extension of electron tomography (ET), serial section electron tomography ...
We present a new approach for the automated segmentation of excitatory synapses in image stacks acqu...
We describe a method for fully automated detection of chemical synapses in serial electron microscop...
Mapping neuroanatomy, in the pursuit of linking hypothesized computational models consistent with ob...
Extracting a connectome from an electron microscopy (EM) data set requires identification of neurons...
We describe a method for fully automated detection of chemical synapses in serial electron microscop...
Teravoxel volume electron microscopy data sets from neural tissue can now be acquired in weeks, but ...
The goal of fully decoding how the brain works requires a detailed wiring diagram of the brain netwo...