Impact of Model Shape Mismatch on Reconstruction Quality in Electrical Impedance Tomography
Electrical impedance tomography (EIT) is a low-cost, noninvasive and radiation free medical imaging modality for monitoring ventilation distribution in the lung. Although such information could be invaluable in preventing ventilator-induced lung injury in mechanically ventilated patients, clinical a...
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Published in | IEEE transactions on medical imaging Vol. 31; no. 9; pp. 1754 - 1760 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
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United States
IEEE
01.09.2012
The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
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Abstract | Electrical impedance tomography (EIT) is a low-cost, noninvasive and radiation free medical imaging modality for monitoring ventilation distribution in the lung. Although such information could be invaluable in preventing ventilator-induced lung injury in mechanically ventilated patients, clinical application of EIT is hindered by difficulties in interpreting the resulting images. One source of this difficulty is the frequent use of simple shapes which do not correspond to the anatomy to reconstruct EIT images. The mismatch between the true body shape and the one used for reconstruction is known to introduce errors, which to date have not been properly characterized. In the present study we, therefore, seek to 1) characterize and quantify the errors resulting from a reconstruction shape mismatch for a number of popular EIT reconstruction algorithms and 2) develop recommendations on the tolerated amount of mismatch for each algorithm. Using real and simulated data, we analyze the performance of four EIT reconstruction algorithms under different degrees of shape mismatch. Results suggest that while slight shape mismatch is well tolerated by all algorithms, using a circular shape severely degrades their performance. |
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AbstractList | Electrical impedance tomography (EIT) is a low-cost, noninvasive and radiation free medical imaging modality for monitoring ventilation distribution in the lung. Although such information could be invaluable in preventing ventilator-induced lung injury in mechanically ventilated patients, clinical application of EIT is hindered by difficulties in interpreting the resulting images. One source of this difficulty is the frequent use of simple shapes which do not correspond to the anatomy to reconstruct EIT images. The mismatch between the true body shape and the one used for reconstruction is known to introduce errors, which to date have not been properly characterized. In the present study we, therefore, seek to 1) characterize and quantify the errors resulting from a reconstruction shape mismatch for a number of popular EIT reconstruction algorithms and 2) develop recommendations on the tolerated amount of mismatch for each algorithm. Using real and simulated data, we analyze the performance of four EIT reconstruction algorithms under different degrees of shape mismatch. Results suggest that while slight shape mismatch is well tolerated by all algorithms, using a circular shape severely degrades their performance. |
Author | Adler, Andy Bodenstein, Marc Wolf, Gerhard K. Grychtol, Bartłomiej Lionheart, William R. B. |
AuthorAffiliation | 5 Systems and Computer Engineering Carleton University Ottawa ON K1S 5B6 Canada 1 Department of Medical Physics in Radiology German Cancer Research Centre (DKFZ) Heidelberg 69120 Germany 3 Department of Anesthesiology Johannes Gutenberg-University Mainz Mainz Germany 4 Division of Critical Care Medicine Department of Anesthesiology Children's Hospital Boston Harvard Medical School Boston MA 02115 USA 2 School of Mathematics University of Manchester Manchester M13 9PL England |
AuthorAffiliation_xml | – name: 3 Department of Anesthesiology Johannes Gutenberg-University Mainz Mainz Germany – name: 4 Division of Critical Care Medicine Department of Anesthesiology Children's Hospital Boston Harvard Medical School Boston MA 02115 USA – name: 5 Systems and Computer Engineering Carleton University Ottawa ON K1S 5B6 Canada – name: 2 School of Mathematics University of Manchester Manchester M13 9PL England – name: 1 Department of Medical Physics in Radiology German Cancer Research Centre (DKFZ) Heidelberg 69120 Germany |
Author_xml | – sequence: 1 givenname: Bartłomiej surname: Grychtol fullname: Grychtol, Bartłomiej email: b.grychtol@dkfz.de organization: Department of Medical Physics in Radiology, German Cancer Research Centre (DKFZ), Heidelberg, Germany – sequence: 2 givenname: William R. B. surname: Lionheart fullname: Lionheart, William R. B. organization: School of Mathematics, University of Manchester, Manchester, England – sequence: 3 givenname: Marc surname: Bodenstein fullname: Bodenstein, Marc organization: Department of Anesthesiology, Johannes Gutenberg-University Mainz, Mainz, Germany – sequence: 4 givenname: Gerhard K. surname: Wolf fullname: Wolf, Gerhard K. organization: Division of Critical Care Medicine, Department of Anesthesiology, Children's Hospital Boston, Harvard Medical School, Boston, MA, USA – sequence: 5 givenname: Andy surname: Adler fullname: Adler, Andy organization: Systems and Computer Engineering, Carleton University, Ottawa, Canada |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/22645263$$D View this record in MEDLINE/PubMed |
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SubjectTerms | Algorithms Animals Computed tomography Conductivity Electric Impedance Electrical impedance tomography (EIT) Electrodes Humans Image Processing, Computer-Assisted - methods Image reconstruction Lung - anatomy & histology Lungs Male mechanical ventilation Middle Aged Models, Biological reconstruction Respiration, Artificial Shape Swine Thorax - anatomy & histology Tomography - methods Ventilators |
Title | Impact of Model Shape Mismatch on Reconstruction Quality in Electrical Impedance Tomography |
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