Inverse reconstruction of epicardial potentials is improved by novel regularization methods and extensive validaton

Research output: Chapter in Book/Report/Conference proceedingConference article in proceedingAcademic

Original languageEnglish
Title of host publicationMathematical Biosciences Institute (MBI), Workshop 3: Integrating Modalities and Scales in Life Science Imaging
Place of PublicationOhio, USA
Publication statusPublished - 2014

Cite this

Cluitmans, M., Bonizzi, P., Karel, J., Peeters, R., Volders, P., & Westra, R. (2014). Inverse reconstruction of epicardial potentials is improved by novel regularization methods and extensive validaton. In Mathematical Biosciences Institute (MBI), Workshop 3: Integrating Modalities and Scales in Life Science Imaging Ohio, USA.
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title = "Inverse reconstruction of epicardial potentials is improved by novel regularization methods and extensive validaton",
author = "Matthijs Cluitmans and Pietro Bonizzi and Jo{\"e}l Karel and Ralf Peeters and Paul Volders and Ronald Westra",
year = "2014",
language = "English",
booktitle = "Mathematical Biosciences Institute (MBI), Workshop 3: Integrating Modalities and Scales in Life Science Imaging",

}

Cluitmans, M, Bonizzi, P, Karel, J, Peeters, R, Volders, P & Westra, R 2014, Inverse reconstruction of epicardial potentials is improved by novel regularization methods and extensive validaton. in Mathematical Biosciences Institute (MBI), Workshop 3: Integrating Modalities and Scales in Life Science Imaging. Ohio, USA.

Inverse reconstruction of epicardial potentials is improved by novel regularization methods and extensive validaton. / Cluitmans, Matthijs; Bonizzi, Pietro; Karel, Joël; Peeters, Ralf; Volders, Paul; Westra, Ronald.

Mathematical Biosciences Institute (MBI), Workshop 3: Integrating Modalities and Scales in Life Science Imaging. Ohio, USA, 2014.

Research output: Chapter in Book/Report/Conference proceedingConference article in proceedingAcademic

TY - GEN

T1 - Inverse reconstruction of epicardial potentials is improved by novel regularization methods and extensive validaton

AU - Cluitmans, Matthijs

AU - Bonizzi, Pietro

AU - Karel, Joël

AU - Peeters, Ralf

AU - Volders, Paul

AU - Westra, Ronald

PY - 2014

Y1 - 2014

M3 - Conference article in proceeding

BT - Mathematical Biosciences Institute (MBI), Workshop 3: Integrating Modalities and Scales in Life Science Imaging

CY - Ohio, USA

ER -

Cluitmans M, Bonizzi P, Karel J, Peeters R, Volders P, Westra R. Inverse reconstruction of epicardial potentials is improved by novel regularization methods and extensive validaton. In Mathematical Biosciences Institute (MBI), Workshop 3: Integrating Modalities and Scales in Life Science Imaging. Ohio, USA. 2014