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2003

Journal Article

High-resolution three-dimensional contrast-enhanced blood oxygenation level-dependent magnetic resonance venography of brain tumors at 3 Tesla: first clinical experience and comparison with 1.5 Tesla

Barth, Markus, Nöbauer-Huhmann, Iris-Melanie, Reichenbach, Jürgen R, Mlynárik, Vladimir, Schöggl, Andreas, Matula, Christian and Trattnig, Siegfried (2003). High-resolution three-dimensional contrast-enhanced blood oxygenation level-dependent magnetic resonance venography of brain tumors at 3 Tesla: first clinical experience and comparison with 1.5 Tesla. Investigative Radiology, 38 (7), 409-414. doi: 10.1097/01.RLI.0000069790.89435.e7

High-resolution three-dimensional contrast-enhanced blood oxygenation level-dependent magnetic resonance venography of brain tumors at 3 Tesla: first clinical experience and comparison with 1.5 Tesla

2002

Journal Article

Comparison of multi-echo spiral and echo planar imaging in functional MRI

Klarhofer, M, Barth, M and Moser, E (2002). Comparison of multi-echo spiral and echo planar imaging in functional MRI. Magnetic Resonance Imaging, 20 (4), 359-364. doi: 10.1016/S0730-725X(02)00505-2

Comparison of multi-echo spiral and echo planar imaging in functional MRI

2002

Journal Article

Magnetic resonance imaging contrast enhancement of brain tumors at 3 tesla versus 1.5 tesla

Nobauer-Huhmann, Iris Melanie, Ba-Ssalamah, Ahmed, Mlynarik, Vladimir, Barth, Markus, Schoggl, Alexander, Heimberger, Karl, Matula, Christian, Fog, Amura, Kaider, Alexandra and Trattnig, Siegfried (2002). Magnetic resonance imaging contrast enhancement of brain tumors at 3 tesla versus 1.5 tesla. Investigative Radiology, 37 (3), 114-119. doi: 10.1097/00004424-200203000-00003

Magnetic resonance imaging contrast enhancement of brain tumors at 3 tesla versus 1.5 tesla

2001

Journal Article

Characterization of BOLD activation in multi-echo fMRI data using fuzzy cluster analysis and a comparison with quantitative modeling

Barth, Markus, Windischberger, Christian, Klarhofer, Markus and Moser, Ewald (2001). Characterization of BOLD activation in multi-echo fMRI data using fuzzy cluster analysis and a comparison with quantitative modeling. NMR in Biomedicine, 14 (7-8), 484-489. doi: 10.1002/nbm.737

Characterization of BOLD activation in multi-echo fMRI data using fuzzy cluster analysis and a comparison with quantitative modeling

2000

Journal Article

High-resolution MR venography at 3.0 Tesla

Reichenbach J.R., Barth M., Haacke E.M., Klarhofer M., Kaiser W.A. and Moser E. (2000). High-resolution MR venography at 3.0 Tesla. Journal of Computer Assisted Tomography, 24 (6), 949-957. doi: 10.1097/00004728-200011000-00023

High-resolution MR venography at 3.0 Tesla

1999

Journal Article

Fuzzy clustering as a model-free analysis method in single-event fMRI

Windischberger, Christian, Barth, Markus, Beisteiner, Roland, Cunnington, Ross, Edward, Vinod, Erdler, Markus, Kaindl, Thomas and Moser, Ewald (1999). Fuzzy clustering as a model-free analysis method in single-event fMRI. NeuroImage, 9 (6 PART II)

Fuzzy clustering as a model-free analysis method in single-event fMRI

1999

Journal Article

Event related FMRI with simulataneous high temporal and high spatial resolution and without relevant image distortion

Beisteiner, Roland, Edward, Vinod, Langenberger, Karl, Barth, Markus, Windischberger, Christian, Erdler, Marcus, Cunnington, Ross and Moser, Ewald (1999). Event related FMRI with simulataneous high temporal and high spatial resolution and without relevant image distortion. NeuroImage, 9 (6 PART II)

Event related FMRI with simulataneous high temporal and high spatial resolution and without relevant image distortion

1999

Journal Article

Single-event functional MRI of supplementary and primary motor cortical areas

Cunnington, Ross, Windischberger, Christian, Barth, Marcus, Beisteiner, Roland, Edward, Vinod, Erdler, Marcus, Kaindl, Thomas and Moser, Ewald (1999). Single-event functional MRI of supplementary and primary motor cortical areas. NeuroImage, 9 (6 PART II)

Single-event functional MRI of supplementary and primary motor cortical areas

1999

Journal Article

Spiral imaging and fuzzy cluster analysis in single-trial fMRI

Barth, Markus, Windischberger, Christian and Moser, Ewald (1999). Spiral imaging and fuzzy cluster analysis in single-trial fMRI. NeuroImage, 9 (6 PART II)

Spiral imaging and fuzzy cluster analysis in single-trial fMRI

1999

Journal Article

Functional MRI of the human motor cortex using single-shot, multiple gradient-echo spiral imaging

Barth, M, Metzler, A, Klarhofer, M, Roll, S, Moser, E and Leibfritz, D (1999). Functional MRI of the human motor cortex using single-shot, multiple gradient-echo spiral imaging. Magnetic Resonance Imaging, 17 (9), 1239-1243. doi: 10.1016/S0730-725X(99)00087-9

Functional MRI of the human motor cortex using single-shot, multiple gradient-echo spiral imaging

1999

Journal Article

High-resolution, multiple gradient-echo functional MRI at 1.5 T

Barth, M, Reichenbach, JR, Venkatesan, R, Moser, E and Haacke, EM (1999). High-resolution, multiple gradient-echo functional MRI at 1.5 T. Magnetic Resonance Imaging, 17 (3), 321-329. doi: 10.1016/S0730-725X(98)00191-X

High-resolution, multiple gradient-echo functional MRI at 1.5 T

1999

Journal Article

Explorative signal processing in functional MR imaging

Moser, E, Baumgartner, R, Barth, M and Windischberger, C (1999). Explorative signal processing in functional MR imaging. International Journal of Imaging Systems and Technology, 10 (2), 166-176. doi: 10.1002/(SICI)1098-1098(1999)10:23.0.CO;2-F

Explorative signal processing in functional MR imaging

1998

Journal Article

256 by 256 single shot EPI at 3 Tesla

Windischberger, C., Barth, M. and Moser, E. (1998). 256 by 256 single shot EPI at 3 Tesla. NeuroImage, 7 (4 PART II), S580.

256 by 256 single shot EPI at 3 Tesla

1998

Journal Article

Is MEG superior to EPI FMRI in localizing neuronal activity?

Beisteiner, R., Windischberger, C., Edward, V., Kaindl, Th, Barth, M., Erdler, M. and Moser, E. (1998). Is MEG superior to EPI FMRI in localizing neuronal activity?. NeuroImage, 7 (4 PART II)

Is MEG superior to EPI FMRI in localizing neuronal activity?

1997

Journal Article

Proton NMR relaxation times of human blood samples at 1.5 T and implications for functional MRI

Barth, Markus and Moser, Ewald (1997). Proton NMR relaxation times of human blood samples at 1.5 T and implications for functional MRI. Cellular and Molecular Biology, 43 (5), 783-91.

Proton NMR relaxation times of human blood samples at 1.5 T and implications for functional MRI

1997

Journal Article

Proton NMR relaxation times of human blood samples at 1.5 T and implications for functional MRI

Barth, Markus. and Moser, Ewald. (1997). Proton NMR relaxation times of human blood samples at 1.5 T and implications for functional MRI. Cellular and Molecular Biology, 43 (5), 783-791.

Proton NMR relaxation times of human blood samples at 1.5 T and implications for functional MRI

1997

Journal Article

Modulation of signal changes in gradient-recalled echo functional MRI with increasing echo time correlate with model calculations

Barth, M, Diemling, M and Moser, E (1997). Modulation of signal changes in gradient-recalled echo functional MRI with increasing echo time correlate with model calculations. Magnetic Resonance Imaging, 15 (7), 745-752. doi: 10.1016/S0730-725X(97)00043-X

Modulation of signal changes in gradient-recalled echo functional MRI with increasing echo time correlate with model calculations

1997

Journal Article

Quantification of signal changes in gradient recalled echo FMRI

Diemling, M, Barth, M and Moser, E (1997). Quantification of signal changes in gradient recalled echo FMRI. Magnetic Resonance Imaging, 15 (7), 753-762. doi: 10.1016/S0730-725X(97)00030-1

Quantification of signal changes in gradient recalled echo FMRI

1997

Journal Article

Magnetic resonance imaging on a low-field system (0.2 T): Comparison with a 1.0-T system

Trattnig S., Kontaxis G., Breitenseher M., Czerny Ch., Rand T., Turetschek K., Barth M. and Imhof H. (1997). Magnetic resonance imaging on a low-field system (0.2 T): Comparison with a 1.0-T system. Radiologe, 37 (10), 773-777. doi: 10.1007/s001170050281

Magnetic resonance imaging on a low-field system (0.2 T): Comparison with a 1.0-T system