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A new regularization approach applied to electromagnetic inverse scattering in 3D

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Abstract
We develop a new regularization approach for 3D quantitative microwave tomography, based on a discontinuity adaptive model. The resulting reconstructions from sparse data points for 3D piecewise constant objects are encouraging. The reconstructions of more complex (piece-wise continuous) permittivity profiles from breast phantom data indicate potential for use in biomedical imaging.
Keywords
quantitative microwave imaging, regularization, inverse scattering, sparse data

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Chicago
Bai, Funing, Aleksandra Pizurica, Sam Vanloocke, Ann Franchois, Daniël De Zutter, and Wilfried Philips. 2012. “A New Regularization Approach Applied to Electromagnetic Inverse Scattering in 3D.” In 12th International Workshop on Optimization and Inverse Problems in Electromagnetism, Abstracts, 178–179.
APA
Bai, F., Pizurica, A., Vanloocke, S., Franchois, A., De Zutter, D., & Philips, W. (2012). A new regularization approach applied to electromagnetic inverse scattering in 3D. 12th International Workshop on Optimization and Inverse Problems in Electromagnetism, Abstracts (pp. 178–179). Presented at the 12th International Workshop on Optimization and Inverse Problems in Electromagnetism.
Vancouver
1.
Bai F, Pizurica A, Vanloocke S, Franchois A, De Zutter D, Philips W. A new regularization approach applied to electromagnetic inverse scattering in 3D. 12th International Workshop on Optimization and Inverse Problems in Electromagnetism, Abstracts. 2012. p. 178–9.
MLA
Bai, Funing, Aleksandra Pizurica, Sam Vanloocke, et al. “A New Regularization Approach Applied to Electromagnetic Inverse Scattering in 3D.” 12th International Workshop on Optimization and Inverse Problems in Electromagnetism, Abstracts. 2012. 178–179. Print.
@inproceedings{2986532,
  abstract     = {We develop a new regularization approach for 3D quantitative microwave tomography, based on a discontinuity adaptive model. The resulting reconstructions from sparse data points for 3D piecewise constant objects are encouraging. The reconstructions of more complex (piece-wise continuous) permittivity profiles from breast phantom data indicate potential for use in biomedical imaging.},
  author       = {Bai, Funing and Pizurica, Aleksandra and Vanloocke, Sam and Franchois, Ann and De Zutter, Dani{\"e}l and Philips, Wilfried},
  booktitle    = {12th International Workshop on Optimization and Inverse Problems in Electromagnetism, Abstracts},
  isbn         = {9789461970695},
  language     = {eng},
  location     = {Ghent, Belgium},
  pages        = {178--179},
  title        = {A new regularization approach applied to electromagnetic inverse scattering in 3D},
  year         = {2012},
}