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Karl Hollaus

Showing results (1-10 of 8) with videos related to

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Physiological Measurement|June 19, 2003
Numerical solution of the general 3D eddy current problem for magnetic induction tomography (spectroscopy)Robert Merwa, Karl Hollaus, Bernhard Brandstätter, et al.
Physiological Measurement|March 10, 2004
Detection of brain oedema using magnetic induction tomography: a feasibility study of the likely sensitivity and detectabilityRobert Merwa, Karl Hollaus, Biro Oszkar, et al.
Physiological Measurement|March 31, 2005
Solution of the inverse problem of magnetic induction tomography (MIT)Robert Merwa, Karl Hollaus, Patricia Brunner, et al.
Annals of Biomedical Engineering|October 13, 2006
Single-step 3-d image reconstruction in magnetic induction tomography: theoretical limits of spatial resolution and contrast to noise ratioHermann Scharfetter, Karl Hollaus, Javier Rosell-Ferrer, et al.
Physiological Measurement|April 26, 2006
Solution of the inverse problem of magnetic induction tomography (MIT) with multiple objects: analysis of detectability and statistical properties with respect to the reconstructed conducting regionRobert Merwa, Patricia Brunner, Andreas Missner, et al.
Physiological Measurement|March 10, 2004
Planar gradiometer for magnetic induction tomography (MIT): theoretical and experimental sensitivity maps for a low-contrast phantomHermann Scharfetter, Stephan Rauchenzauner, Robert Merwa, et al.
Physiological Measurement|April 26, 2006
Reconstruction of the shape of conductivity spectra using differential multi-frequency magnetic induction tomographyPatricia Brunner, Robert Merwa, Andreas Missner, et al.
Physiological Measurement|June 19, 2003
Direct estimation of Cole parameters in multifrequency EIT using a regularized Gauss-Newton methodBernhard Brandstätter, Karl Hollaus, Helmut Hutten, et al.
Pageof 1

Showing results (1-10 of 8) with videos related to

Sort By:
Pageof 1
Physiological Measurement|June 19, 2003
Numerical solution of the general 3D eddy current problem for magnetic induction tomography (spectroscopy)Robert Merwa, Karl Hollaus, Bernhard Brandstätter, et al.
Physiological Measurement|March 10, 2004
Detection of brain oedema using magnetic induction tomography: a feasibility study of the likely sensitivity and detectabilityRobert Merwa, Karl Hollaus, Biro Oszkar, et al.
Physiological Measurement|March 31, 2005
Solution of the inverse problem of magnetic induction tomography (MIT)Robert Merwa, Karl Hollaus, Patricia Brunner, et al.
Annals of Biomedical Engineering|October 13, 2006
Single-step 3-d image reconstruction in magnetic induction tomography: theoretical limits of spatial resolution and contrast to noise ratioHermann Scharfetter, Karl Hollaus, Javier Rosell-Ferrer, et al.
Physiological Measurement|April 26, 2006
Solution of the inverse problem of magnetic induction tomography (MIT) with multiple objects: analysis of detectability and statistical properties with respect to the reconstructed conducting regionRobert Merwa, Patricia Brunner, Andreas Missner, et al.
Physiological Measurement|March 10, 2004
Planar gradiometer for magnetic induction tomography (MIT): theoretical and experimental sensitivity maps for a low-contrast phantomHermann Scharfetter, Stephan Rauchenzauner, Robert Merwa, et al.
Physiological Measurement|April 26, 2006
Reconstruction of the shape of conductivity spectra using differential multi-frequency magnetic induction tomographyPatricia Brunner, Robert Merwa, Andreas Missner, et al.
Physiological Measurement|June 19, 2003
Direct estimation of Cole parameters in multifrequency EIT using a regularized Gauss-Newton methodBernhard Brandstätter, Karl Hollaus, Helmut Hutten, et al.
Pageof 1