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Biological Cybernetics|August 1, 1995
Development of simple fitness landscapes for peptides by artificial neural filter systemsG Schneider, J Schuchhardt, P WredeBiophysical Journal|February 1, 1995
Peptide design in machina: development of artificial mitochondrial protein precursor cleavage sites by simulated molecular evolutionG Schneider, J Schuchhardt, P WredeComputer Applications in the Biosciences : CABIOS|December 1, 1994
Artificial neural networks and simulated molecular evolution are potential tools for sequence-oriented protein designG Schneider, J Schuchhardt, P WredeProtein Engineering|October 1, 1996
Local structural motifs of protein backbones are classified by self-organizing neural networksJ Schuchhardt, G Schneider, J Reichelt, et al.Biophysical Journal|February 1, 1994
The rational design of amino acid sequences by artificial neural networks and simulated molecular evolution: de novo design of an idealized leader peptidase cleavage siteG Schneider, P WredeJournal of Molecular Evolution|June 1, 1993
Development of artificial neural filters for pattern recognition in protein sequencesG Schneider, P WredeProgress in Biophysics and Molecular Biology|November 27, 1998
Artificial neural networks for computer-based molecular designG Schneider, P WredeBiopolymers|January 1, 1996
Structure optimization of an artificial neural filter detecting membrane-spanning amino acid sequencesR Lohmann, G Schneider, P WredeBiochemical and Biophysical Research Communications|July 30, 1993
Analysis of cleavage-site patterns in protein precursor sequences with a perceptron-type neural networkG Schneider, S Röhlk, P WredeProtein Science : a Publication of the Protein Society|September 1, 1994
A neural network model for the prediction of membrane-spanning amino acid sequencesR Lohmann, G Schneider, D Behrens, et al.Pageof 119