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Ian M Overton

Showing results (1-10 of 31) with videos related to

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Methods (San Diego, Calif.)|September 13, 2011
Computational approaches to selecting and optimising targets for structural biologyIan M Overton, Geoffrey J Barton
FEBS Letters|July 1, 2006
A normalised scale for structural genomics target ranking: the OB-ScoreIan M Overton, Geoffrey J Barton
Journal of Proteome Research|October 3, 2012
Addressing statistical biases in nucleotide-derived protein databases for proteogenomic search strategiesPaul Blakeley, Ian M Overton, Simon J Hubbard
Cancers|July 14, 2023
Validation of In Vitro Trained Transcriptomic Radiosensitivity Signatures in Clinical CohortsJohn D O'Connor, Ian M Overton, Stephen J McMahon
Journal of Personalized Medicine|June 24, 2022
Immune Cell Networks Uncover Candidate Biomarkers of Melanoma Immunotherapy ResponseDuong H T Vo, Gerard McGleave, Ian M Overton
Cells|July 6, 2023
Transcriptome Profiling Reveals Enhanced Mitochondrial Activity as a Cold Adaptive Strategy to Hypothermia in Zebrafish MuscleThomas Cahill, Sherine Chan, Ian M Overton, et al.
Briefings in Bioinformatics|January 23, 2022
RadSigBench: a framework for benchmarking functional genomics signatures of cancer cell radiosensitivityJohn D O'Connor, Ian M Overton, Stephen J McMahon
Bioinformatics (Oxford, England)|February 21, 2008
ParCrys: a Parzen window density estimation approach to protein crystallization propensity predictionIan M Overton, Gianandrea Padovani, Mark A Girolami, et al.
Proteins|January 20, 2011
XANNpred: neural nets that predict the propensity of a protein to yield diffraction-quality crystalsIan M Overton, C A Johannes van Niekerk, Geoffrey J Barton
Nucleic Acids Research|June 14, 2013
TMA Navigator: Network inference, patient stratification and survival analysis with tissue microarray dataAlexander L R Lubbock, Elad Katz, David J Harrison, et al.
Pageof 4

Showing results (1-10 of 31) with videos related to

Sort By:
Pageof 4
Methods (San Diego, Calif.)|September 13, 2011
Computational approaches to selecting and optimising targets for structural biologyIan M Overton, Geoffrey J Barton
FEBS Letters|July 1, 2006
A normalised scale for structural genomics target ranking: the OB-ScoreIan M Overton, Geoffrey J Barton
Journal of Proteome Research|October 3, 2012
Addressing statistical biases in nucleotide-derived protein databases for proteogenomic search strategiesPaul Blakeley, Ian M Overton, Simon J Hubbard
Cancers|July 14, 2023
Validation of In Vitro Trained Transcriptomic Radiosensitivity Signatures in Clinical CohortsJohn D O'Connor, Ian M Overton, Stephen J McMahon
Journal of Personalized Medicine|June 24, 2022
Immune Cell Networks Uncover Candidate Biomarkers of Melanoma Immunotherapy ResponseDuong H T Vo, Gerard McGleave, Ian M Overton
Cells|July 6, 2023
Transcriptome Profiling Reveals Enhanced Mitochondrial Activity as a Cold Adaptive Strategy to Hypothermia in Zebrafish MuscleThomas Cahill, Sherine Chan, Ian M Overton, et al.
Briefings in Bioinformatics|January 23, 2022
RadSigBench: a framework for benchmarking functional genomics signatures of cancer cell radiosensitivityJohn D O'Connor, Ian M Overton, Stephen J McMahon
Bioinformatics (Oxford, England)|February 21, 2008
ParCrys: a Parzen window density estimation approach to protein crystallization propensity predictionIan M Overton, Gianandrea Padovani, Mark A Girolami, et al.
Proteins|January 20, 2011
XANNpred: neural nets that predict the propensity of a protein to yield diffraction-quality crystalsIan M Overton, C A Johannes van Niekerk, Geoffrey J Barton
Nucleic Acids Research|June 14, 2013
TMA Navigator: Network inference, patient stratification and survival analysis with tissue microarray dataAlexander L R Lubbock, Elad Katz, David J Harrison, et al.
Pageof 4