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BMC Genomics|July 4, 2013
Collective judgment predicts disease-associated single nucleotide variantsEmidio Capriotti, Russ B Altman, Yana BrombergBriefings in Bioinformatics|January 17, 2012
Bioinformatics for personal genome interpretationEmidio Capriotti, Nathan L Nehrt, Maricel G Kann, et al.Proteins|April 13, 2006
Diffusion-collision of foldons elucidates the kinetic effects of point mutations and suggests control strategies of the folding process of helical proteinsEmidio Capriotti, Mario CompianiBiochemistry|November 6, 2013
Computational and theoretical methods for protein foldingMario Compiani, Emidio CapriottiNucleic Acids Research|May 29, 2023
PhD-SNPg: updating a webserver and lightweight tool for scoring nucleotide variantsEmidio Capriotti, Piero FariselliHuman Genetics|January 31, 2022
Evaluating the relevance of sequence conservation in the prediction of pathogenic missense variantsEmidio Capriotti, Piero FariselliNucleic Acids Research|May 9, 2017
PhD-SNPg: a webserver and lightweight tool for scoring single nucleotide variantsEmidio Capriotti, Piero FariselliBMC Bioinformatics|October 14, 2011
Improving the prediction of disease-related variants using protein three-dimensional structureEmidio Capriotti, Russ B AltmanGenomics|July 19, 2011
A new disease-specific machine learning approach for the prediction of cancer-causing missense variantsEmidio Capriotti, Russ B AltmanPageof 15