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Fully Convolutional Deep Network Architectures for Automatic Short Glass Fiber Semantic Segmentation from CT scans
by
Kröger, Thorben
, Rathore, Danish
, Rathore, Jitendra
, Garbe, Christoph S
, Hesser, Jürgen
, Konopczyński, Tomasz
, Carmignato, Simone
, Zheng, Lei
in
Artificial neural networks
/ Computed tomography
/ Glass fibers
/ Machine learning
/ Medical imaging
/ Neural networks
/ Semantic segmentation
/ Semantics
2019
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Fully Convolutional Deep Network Architectures for Automatic Short Glass Fiber Semantic Segmentation from CT scans
by
Kröger, Thorben
, Rathore, Danish
, Rathore, Jitendra
, Garbe, Christoph S
, Hesser, Jürgen
, Konopczyński, Tomasz
, Carmignato, Simone
, Zheng, Lei
in
Artificial neural networks
/ Computed tomography
/ Glass fibers
/ Machine learning
/ Medical imaging
/ Neural networks
/ Semantic segmentation
/ Semantics
2019
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Fully Convolutional Deep Network Architectures for Automatic Short Glass Fiber Semantic Segmentation from CT scans
by
Kröger, Thorben
, Rathore, Danish
, Rathore, Jitendra
, Garbe, Christoph S
, Hesser, Jürgen
, Konopczyński, Tomasz
, Carmignato, Simone
, Zheng, Lei
in
Artificial neural networks
/ Computed tomography
/ Glass fibers
/ Machine learning
/ Medical imaging
/ Neural networks
/ Semantic segmentation
/ Semantics
2019
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Fully Convolutional Deep Network Architectures for Automatic Short Glass Fiber Semantic Segmentation from CT scans
Paper
Fully Convolutional Deep Network Architectures for Automatic Short Glass Fiber Semantic Segmentation from CT scans
2019
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Overview
We present the first attempt to perform short glass fiber semantic segmentation from X-ray computed tomography volumetric datasets at medium (3.9 {\\mu}m isotropic) and low (8.3 {\\mu}m isotropic) resolution using deep learning architectures. We performed experiments on both synthetic and real CT scans and evaluated deep fully convolutional architectures with both 2D and 3D kernels. Our artificial neural networks outperform existing methods at both medium and low resolution scans.
Publisher
Cornell University Library, arXiv.org
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