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Abstract

A class of sparse optimization techniques that require solely matrix-vector products, rather than an explicit access to the forward matrix and its transpose, has been paid much attention in the recent decade for dealing with large-scale inverse problems. This study tailors application of the so-called Gradient Projection for Sparse Reconstruction (GPSR) to large-scale time-difference three-dimensional electrical impedance tomography (3D EIT). 3D EIT typically suffers from the need for a large number of voxels to cover the whole domain, so its application to real-time imaging, for example monitoring of lung function, remains scarce since the large number of degrees of freedom of the problem extremely increases storage space and reconstruction time. This study shows the great potential of the GPSR for large-size time-difference 3D EIT. Further studies are needed to improve its accuracy for imaging small-size anomalies.

Details

10000008
Title
A fast time-difference inverse solver for 3D EIT with application to lung imaging
Volume
54
Issue
8
Pages
1243-1255
Publication year
2016
Publication date
Aug 2016
Publisher
Springer Nature B.V.
Place of publication
Heidelberg
Country of publication
Netherlands
ISSN
01400118
e-ISSN
17410444
Source type
Scholarly Journal
Language of publication
English
Document type
Feature
ProQuest document ID
1811912437
Document URL
https://www.proquest.com/scholarly-journals/fast-time-difference-inverse-solver-3d-eit-with/docview/1811912437/se-2?accountid=208611
Copyright
International Federation for Medical and Biological Engineering 2016
Last updated
2024-12-03
Database
2 databases
  • ProQuest One Academic
  • ProQuest One Academic