2008 |
35 | EE | Jianzhong Chen,
Lawrence A. Kelley,
Stephen Muggleton,
Michael J. E. Sternberg:
Protein Fold Discovery Using Stochastic Logic Programs.
Probabilistic Inductive Logic Programming 2008: 244-262 |
34 | EE | Mark N. Wass,
Michael J. E. Sternberg:
ConFunc - functional annotation in the twilight zone.
Bioinformatics 24(6): 798-806 (2008) |
33 | EE | Victor I. Lesk,
Michael J. E. Sternberg:
3D-Garden: a system for modelling protein-protein complexes based on conformational refinement of ensembles generated with the marching cubes algorithm.
Bioinformatics 24(9): 1137-1144 (2008) |
2006 |
32 | EE | Jianzhong Chen,
Lawrence A. Kelley,
Stephen Muggleton,
Michael J. E. Sternberg:
Multi-class Prediction Using Stochastic Logic Programs.
ILP 2006: 109-124 |
31 | EE | Konrad H. Paszkiewicz,
Michael J. E. Sternberg,
Michael Lappe:
Prediction of viable circular permutants using a graph theoretic approach.
Bioinformatics 22(11): 1353-1358 (2006) |
30 | EE | Benjamin R. Jefferys,
Lawrence A. Kelley,
Marek J. Sergot,
John Fox,
Michael J. E. Sternberg:
Capturing expert knowledge with argumentation: a case study in bioinformatics.
Bioinformatics 22(8): 924-933 (2006) |
2005 |
29 | EE | Stephen Muggleton,
Huma Lodhi,
Ata Amini,
Michael J. E. Sternberg:
Support Vector Inductive Logic Programming.
Discovery Science 2005: 163-175 |
2004 |
28 | | Jordi Espadaler,
Narcis Fernandez-Fuentes,
Antonio Hermoso,
Enrique Querol,
Francesc X. Avilés,
Michael J. E. Sternberg,
Baldomero Oliva:
ArchDB: automated protein loop classification as a tool for structural genomics.
Nucleic Acids Research 32(Database-Issue): 185-188 (2004) |
27 | | Keiran Fleming,
Arne Müller,
Robert M. MacCallum,
Michael J. E. Sternberg:
3D-GENOMICS: a database to compare structural and functional annotations of proteins between sequenced genomes.
Nucleic Acids Research 32(Database-Issue): 245-250 (2004) |
2002 |
26 | EE | B. J. Stapley,
Lawrence A. Kelley,
Michael J. E. Sternberg:
Predicting the Sub-Cellular Location of Proteins from Text Using Support Vector Machines.
Pacific Symposium on Biocomputing 2002: 374-385 |
25 | EE | Marcel Turcotte,
Stephen Muggleton,
Michael J. E. Sternberg:
Generating Protein Three-dimensional Fold Signatures using Inductive Logic Programming.
Computers & Chemistry 26(1): 57-64 (2002) |
2001 |
24 | | Arne Müller,
Michael J. E. Sternberg:
Structural annotation of the human genome.
German Conference on Bioinformatics 2001: 211-212 |
23 | EE | A. P. Cootes,
Stephen Muggleton,
R. B. Greaves,
Michael J. E. Sternberg:
Automatic determination of protein fold signatures from structural superpositions.
Electron. Trans. Artif. Intell. 5(B): 245-274 (2001) |
22 | | Marcel Turcotte,
Stephen Muggleton,
Michael J. E. Sternberg:
The Effect of Relational Background Knowledge on Learning of Protein Three-Dimensional Fold Signatures.
Machine Learning 43(1/2): 81-95 (2001) |
2000 |
21 | | Robert M. MacCallum,
Lawrence A. Kelley,
Michael J. E. Sternberg:
SAWTED: Structure Assignment With Text Description-Enhanced detection of remote homologues with automated SWISS-PROT annotation comparisons.
Bioinformatics 16(2): 125-129 (2000) |
20 | EE | Marcel Turcotte,
Stephen Muggleton,
Michael J. E. Sternberg:
Use of Inductive Logic Programming to Learn Principles of Protein Structure.
Electron. Trans. Artif. Intell. 4(B): 119-124 (2000) |
1999 |
19 | | Arne Müller,
Robert M. MacCallum,
Michael J. E. Sternberg:
Genome annotation with PSI-BLAST: Benchmark and application.
German Conference on Bioinformatics 1999: 218-220 |
18 | EE | Lawrence A. Kelley,
Robert M. MacCallum,
Michael J. E. Sternberg:
Recognition of remote protein homologies using three-dimensional information to generate a position specific scoring matrix in the program 3D-PSSM.
RECOMB 1999: 218-225 |
1998 |
17 | EE | Stephen Muggleton,
Ashwin Srinivasan,
Ross D. King,
Michael J. E. Sternberg:
Biochemical Knowledge Discovery Using Inductive Logic Programming.
Discovery Science 1998: 326-341 |
16 | | Marcel Turcotte,
Stephen Muggleton,
Michael J. E. Sternberg:
Application of Inductive Logic Programming to Discover Rules Governing the Three-Dimensional Topology of Protein Structure.
ILP 1998: 53-64 |
15 | | Michael J. E. Sternberg,
Patrick Aloy,
Henry A. Gabb,
Richard M. Jackson,
Gidon Moont,
Enrique Querol,
Francesc X. Avilés:
A Computational System for Modeling Flexible Protein-Protein and protein-DNA Docking.
ISMB 1998: 183-192 |
1997 |
14 | | Ashwin Srinivasan,
Ross D. King,
Stephen Muggleton,
Michael J. E. Sternberg:
The Predictive Toxicology Evaluation Challenge.
IJCAI (1) 1997: 4-9 |
13 | | Ashwin Srinivasan,
Ross D. King,
Stephen Muggleton,
Michael J. E. Sternberg:
Carcinogenesis Predictions Using ILP.
ILP 1997: 273-287 |
12 | | Ross D. King,
Mansoor A. S. Saqi,
Roger A. Sayle,
Michael J. E. Sternberg:
DSC: public domain protein secondary structure predication.
Computer Applications in the Biosciences 13(4): 473-474 (1997) |
1996 |
11 | EE | Ashwin Srinivasan,
Stephen Muggleton,
Michael J. E. Sternberg,
Ross D. King:
Theories for Mutagenicity: A Study in First-Order and Feature-Based Induction.
Artif. Intell. 85(1-2): 277-299 (1996) |
1995 |
10 | | Michael J. E. Sternberg,
Hedvig Hegyi,
Suhail A. Islam,
Jingchu Luo,
Robert B. Russell:
Towards an Intelligent System for the Automatic Assignment of Domains in Globular Proteins.
ISMB 1995: 376-383 |
9 | | Michael J. E. Sternberg,
Ross D. King,
Ashwin Srinivasan,
Stephen Muggleton:
Drug Design by Machine Learning.
Machine Intelligence 15 1995: 328-338 |
8 | | Ross D. King,
Michael J. E. Sternberg,
Ashwin Srinivasan:
Relating Chemical Activity to Structure: An Examination of ILP Successes.
New Generation Comput. 13(3&4): 411-433 (1995) |
1994 |
7 | | Ross D. King,
Dominic A. Clark,
Jack Shirazi,
Michael J. E. Sternberg:
Inductive Logic Programming Used to Discover Topological Constraints in Protein Structures.
ISMB 1994: 219-226 |
6 | | Michael J. E. Sternberg,
R. A. Lewis,
Ross D. King,
Stephen Muggleton:
Machine Learning and biomolecular modelling.
Machine Intelligence 13 1994: 193-212 |
5 | | Jonathan D. Hirst,
Ross D. King,
Michael J. E. Sternberg:
Quantitative structure-activity relationships by neural networks and inductive logic programming. I. The inhibition of dihydrofolate reductase by pyrimidines.
Journal of Computer-Aided Molecular Design 8(4): 405-420 (1994) |
4 | | Jonathan D. Hirst,
Ross D. King,
Michael J. E. Sternberg:
Quantitative structure-activity relationships by neural networks and inductive logic programming. II. The inhibition of dihydrofolate reductase by triazines.
Journal of Computer-Aided Molecular Design 8(4): 421-432 (1994) |
1993 |
3 | | Ross D. King,
Dominic A. Clark,
Jack Shirazi,
Michael J. E. Sternberg:
Discovery of Protein Structural Constraints in a Deductive Database using Inductive Logic Programming.
Machine Intelligence 14 1993: 275-302 |
1991 |
2 | | Michael J. E. Sternberg:
PROMOT: a FORTRAN program to scan protein sequences against a library of known motifs.
Computer Applications in the Biosciences 7(2): 257-260 (1991) |
1986 |
1 | | Christopher J. Rawlings,
W. R. Taylor,
J. Nyakairu,
John Fox,
Michael J. E. Sternberg:
Using Prolog to Represent and Reason about Protein Structure.
ICLP 1986: 536-543 |