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Lutz Leistritz
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2020 – today
- 2021
- [j16]Mina Kheirkhah, Stefan Brodoehl, Lutz Leistritz, Theresa Götz, Philipp Baumbach, Ralph Huonker, Otto W. Witte, Carsten M. Klingner:
Automated emotion classification in the early stages of cortical processing: An MEG study. Artif. Intell. Medicine 115: 102063 (2021) - 2020
- [c19]Lutz Leistritz, Jakob Hochreiter, Fabian E. Bachl, Gerd Fabian Volk:
Classification of facial movements in chronic facial palsy based on intramuscular EMG signals recorded from the paretic side. EMBC 2020: 662-665
2010 – 2019
- 2019
- [c18]Lutz Leistritz, Christiane Pöschl, Gerd Fabian Volk:
Exploring intrinsic triggers for functional facial electrostimulation based on intramuscular electromyography recordings. EMBC 2019: 6599-6602 - 2018
- [c17]Lutz Leistritz, Carolin Ligges:
Signal-Adaptive Denoising Of Event-Related Potentials. EMBC 2018: 3096-3099 - [c16]Adora M. DSouza, Anas Z. Abidin, Udaysankar Chockanathan, Lutz Leistritz, Axel Wismüller:
Investigating large-scale Granger causality analysis in presence of noise and varying sampling rate. Medical Imaging: Biomedical Applications in Molecular, Structural, and Functional Imaging 2018: 105780C - 2017
- [c15]Adora M. DSouza, Anas Z. Abidin, Lutz Leistritz, Axel Wismüller:
Identifying HIV associated neurocognitive disorder using large-scale Granger causality analysis on resting-state functional MRI. Medical Imaging: Image Processing 2017: 101330M - 2016
- [j15]Lutz Leistritz, Karin Schiecke, Laura Astolfi, Herbert Witte:
Time-Variant Modeling of Brain Processes. Proc. IEEE 104(2): 262-281 (2016) - [j14]Karin Schiecke, Britta Pester, Diana Piper, Franz Benninger, Martha Feucht, Lutz Leistritz, Herbert Witte:
Nonlinear Directed Interactions Between HRV and EEG Activity in Children With TLE. IEEE Trans. Biomed. Eng. 63(12): 2497-2504 (2016) - [c14]Britta Pester, Feliberto de la Cruz, Karl-Jürgen Bär, Herbert Witte, Lutz Leistritz:
Detecting spatially highly resolved network modules: A multi subject approach. EMBC 2016: 5481-5484 - [c13]Lutz Leistritz, Herbert Witte:
A time domain frequency-selective multivariate granger causality approach. EMBC 2016: 5485-5488 - [c12]Adora M. D'Souza, Anas Zainul Abidin, Lutz Leistritz, Axel Wismüller:
Large-scale Granger causality analysis on resting-state functional MRI. Medical Imaging: Biomedical Applications in Molecular, Structural, and Functional Imaging 2016: 97880L - 2015
- [j13]Karin Schiecke, Matthias Wacker, Franz Benninger, Martha Feucht, Lutz Leistritz, Herbert Witte:
Matching Pursuit-Based Time-Variant Bispectral Analysis and its Application to Biomedical Signals. IEEE Trans. Biomed. Eng. 62(8): 1937-1948 (2015) - [c11]Britta Pester, Christoph Schmidt, Nicole Schmid-Hertel, Herbert Witte, Axel Wismüller, Lutz Leistritz:
Identification of whole-brain network modules based on a large scale Granger Causality approach. EMBC 2015: 5380-5383 - [c10]Karin Schiecke, Britta Pester, Martha Feucht, Lutz Leistritz, Herbert Witte:
Convergent Cross Mapping: Basic concept, influence of estimation parameters and practical application. EMBC 2015: 7418-7421 - [c9]Axel Wismüller, Anas Z. Abidin, Adora M. D'Souza, Xixi Wang, Susan K. Hobbs, Lutz Leistritz, Mahesh B. Nagarajan:
Nonlinear functional connectivity network recovery in the human brain with mutual connectivity analysis (MCA): convergent cross-mapping and non-metric clustering. Medical Imaging: Biomedical Applications in Molecular, Structural, and Functional Imaging 2015: 94170M - 2014
- [c8]Christoph Schmidt, Britta Pester, Mahesh Nagarajan, Herbert Witte, Lutz Leistritz, Axel Wismüller:
Impact of multivariate granger causality analyses with embedded dimension reduction on network modules. EMBC 2014: 2797-2800 - [c7]Karin Schiecke, Matthias Wacker, Franz Benninger, Martha Feucht, Lutz Leistritz, Herbert Witte:
Advantages of signal-adaptive approaches for the nonlinear, time-variant analysis of heart rate variability of children with temporal lobe epilepsy. EMBC 2014: 6377-6380 - 2012
- [j12]Christoph Schmidt, Thomas Weiss, Christian Komusiewicz, Herbert Witte, Lutz Leistritz:
An Analytical Approach to Network Motif Detection in Samples of Networks with Pairwise Different Vertex Labels. Comput. Math. Methods Medicine 2012: 910380:1-910380:12 (2012) - [c6]Jlenia Toppi, Fabio Babiloni, Giovanni Vecchiato, Fabrizio de Vico Fallani, Donatella Mattia, Serenella Salinari, Thomas Milde, Lutz Leistritz, Herbert Witte, Laura Astolfi:
Towards the time varying estimation of complex brain connectivity networks by means of a General Linear Kalman Filter approach. EMBC 2012: 6192-6195 - 2010
- [j11]Thomas Milde, Lutz Leistritz, Laura Astolfi, Wolfgang H. R. Miltner, Thomas Weiss, Fabio Babiloni, Herbert Witte:
A new Kalman filter approach for the estimation of high-dimensional time-variant multivariate AR models and its application in analysis of laser-evoked brain potentials. NeuroImage 50(3): 960-969 (2010)
2000 – 2009
- 2009
- [j10]Claudia Hemmelmann, M. Ungureanu, Wolfram Hesse, Torsten Wüstenberg, Jürgen R. Reichenbach, Otto W. Witte, Herbert Witte, Lutz Leistritz:
Modelling and analysis of time-variant directed interrelations between brain regions based on BOLD-signals. NeuroImage 45(3): 722-737 (2009) - 2008
- [j9]Herbert Witte, Peter Putsche, Claudia Hemmelmann, Christoph Schelenz, Lutz Leistritz:
Analysis and modeling of time-variant amplitude-frequency couplings of and between oscillations of EEG bursts. Biol. Cybern. 99(2): 139-157 (2008) - 2007
- [j8]Jens Haueisen, Lutz Leistritz, Thomas Süsse, Gabriel Curio, Herbert Witte:
Identifying mutual information transfer in the brain with differential-algebraic modeling: Evidence for fast oscillatory coupling between cortical somatosensory areas 3b and 1. NeuroImage 37(1): 130-136 (2007) - 2006
- [j7]Lutz Leistritz, Miroslaw Galicki, Eberhard F. Kochs, Ernst Bernhard Zwick, Clemens Fitzek, Jürgen R. Reichenbach, Herbert Witte:
Application of Generalized Dynamic Neural Networks to Biomedical Data. IEEE Trans. Biomed. Eng. 53(11): 2289-2299 (2006) - [c5]Lutz Leistritz, Peter Putsche, Jens Haueisen, Herbert Witte:
Model-related analysis of EEG burst patterns in sedated patients. EMBC 2006: 6347-6350 - 2005
- [j6]Matthias Winterhalder, Björn Schelter, Wolfram Hesse, Karin Schwab, Lutz Leistritz, Daniel Klan, Reinhard Bauer, Jens Timmer, Herbert Witte:
Comparison of linear signal processing techniques to infer directed interactions in multivariate neural systems. Signal Process. 85(11): 2137-2160 (2005) - 2004
- [j5]Miroslaw Galicki, Lutz Leistritz, Ernst Bernhard Zwick, Herbert Witte:
Improving Generalization Capabilities of Dynamic Neural Networks. Neural Comput. 16(6): 1253-1282 (2004) - 2002
- [j4]Lutz Leistritz, Miroslaw Galicki, Herbert Witte, Eberhard F. Kochs:
Training trajectories by continuous recurrent multilayer networks. IEEE Trans. Neural Networks 13(2): 283-291 (2002) - [c4]Miroslaw Galicki, Lutz Leistritz, Herbert Witte:
Learning the Dynamic Neural Networks with the Improvement of Generalization Capabilities. ICANN 2002: 377-382 - 2001
- [j3]Martin Hammer, Sabine Leistritz, Lutz Leistritz, Dietrich Schweitzer:
Light paths in retinal vessel oximetry. IEEE Trans. Biomed. Eng. 48(5): 592-598 (2001) - [j2]Lutz Leistritz, Miroslaw Galicki, Herbert Witte, Eberhard F. Kochs:
Initial state training procedure improves dynamic recurrent networks with time-dependent weights. IEEE Trans. Neural Networks 12(6): 1513-1518 (2001) - 2000
- [c3]Miroslaw Galicki, Lutz Leistritz, Herbert Witte:
Improved Learning of Multiple Continuous Trajectories with Initial Network State. IJCNN (3) 2000: 15-20
1990 – 1999
- 1999
- [j1]Miroslaw Galicki, Lutz Leistritz, Herbert Witte:
Learning continuous trajectories in recurrent neural networks with time-dependent weights. IEEE Trans. Neural Networks 10(4): 741-756 (1999) - 1998
- [c2]Herbert Witte, Peter Putsche, Michael H. Eiselt, Katrin Hoffmann, Matthias Arnold, Heinrich Jäger, Lutz Leistritz:
Multimodal Time-variant Signal Analysis of Neonatal EEG Burst Patterns. MedInfo 1998: 1250-1254 - [c1]Lutz Leistritz, Miroslaw Galicki, Herbert Witte:
Training Continuous Trajectories by Means of Dynamic Neural Networks with Time Dependent Weights. NC 1998: 591-596
Coauthor Index
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