Biblio
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Author Title Type [ Year
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Robust hit identification by quality assurance and multivariate data analysis of a high-content, cell-based assay.
Journal of biomolecular screening. 12, 1042–1049.
(2007). Natural neighbor interpolation and order of continuity.
(Hagen, H., Kerren A., & Dannenmann P., Ed.).GI Lecture Notes in Informatics, Visualization of Large and Unstructured Data Sets.
NatNeighborInterp.pdf (1.47 MB)
(2006). 
Topographic distance functions for interpolation of meteorological data.
(Hagen, H., Kerren A., & Dannenmann P., Ed.).GI Lecture Notes in Informatics, Visualization of Large and Unstructured Data Sets.
TopoDistFunc.pdf (2.27 MB)
(2006). 
Quantifying bioactivity on a large scale: quality assurance and analysis of multiparametric ultra-HTS data.
JALA: Journal of the Association for Laboratory Automation. 10, 207–212.
(2005). Coupled ion and network dynamics in polymer electrolytes: Monte Carlo study of a lattice model.
The Journal of chemical physics. 121, 12732–12739.
(2004). Coupled ion and network dynamics in polymer electrolytes: Monte Carlo study of a lattice model.
The Journal of chemical physics. 121, 12732–12739.
(2004). Implicit estimation of Wiener series.
(Barros, A., Principe J. C., Larsen J., Adali T., & Douglas S., Ed.).{Machine Learning for Signal Processing XIV, Proc. 2004 IEEE Signal Processing Society Workshop}. 735–744.
Franz, Schölkopf_2004_Implicit estimation of Wiener series.pdf (191.86 KB)
(2004). 
Hierarchical spatio-temporal morphable models for representation of complex movements for imitation learning.
(Nunes, U., de Almeida A., Bejczy A., Kosuge K., & Machado J., Ed.).{Proc. of the 11th International Conference on Advanced Robotics}. 2, 453–458.
Ilg et al._2003_Hierarchical spatio-temporal morphable models for representation of complex movements for imitation learning.pdf (716.98 KB)
(2003).
(2003). 
Diffusion in polymer electrolytes and the dynamic percolation model.
Solid state ionics. 149, 125–130.
(2002). Diffusion in polymer electrolytes and the dynamic percolation model.
Solid state ionics. 149, 125–130.
(2002). Dynamic percolation theory for particle diffusion in a polymer network.
The Journal of chemical physics. 117, 441–447.
(2002). Dynamic percolation theory for particle diffusion in a polymer network.
The Journal of chemical physics. 117, 441–447.
(2002). Effective medium theory of conduction in stretched polymer electrolytes.
arXiv preprint cond-mat/0202165.
(2002). Effective medium theory of conduction in stretched polymer electrolytes.
arXiv preprint cond-mat/0202165.
(2002). Charge Transport in Polymer Ion Conductors: a Monte Carlo Study.
arXiv preprint cond-mat/0106197.
(2001). Charge Transport in Polymer Ion Conductors: a Monte Carlo Study.
arXiv preprint cond-mat/0106197.
(2001). Extracting egomotion from optic flow: limits of accuracy and neural matched filters.
(Zanker, J. M., & Zeil J., Ed.).{Motion Vision: Computational, Neural and Ecological Constraints}. 143-168.
Dahmen, Franz, Krapp_2001_Extracting egomotion from optic flow- limits of accuracy and neural matched filters.pdf (223.04 KB)
(2001). 
Melt viscosities of lattice polymers using a Kramers potential treatment.
J. Chem. Phys.. 115, 9042–9045.
(2001). Model studies of diffusion in glassy and polymer ion conductors.
arXiv preprint cond-mat/0106196.
(2001). Model studies of diffusion in glassy and polymer ion conductors.
arXiv preprint cond-mat/0106196.
(2001). Percolation concepts in solid state ionics.
Physica A: Statistical Mechanics and its Applications. 266, 229–237.
(1999). Percolation concepts in solid state ionics.
Physica A: Statistical Mechanics and its Applications. 266, 229–237.
(1999). Stochastic modelling of ion diffusion in complex systems.
Anomalous Diffusion From Basics to Applications. 175–185.
(1999). Stochastic modelling of ion diffusion in complex systems.
Anomalous Diffusion From Basics to Applications. 175–185.
(1999).