Iosif Vaisman
Affiliations: | George Mason University, Washington, DC |
Area:
Biomedical Engineering, Biostatistics Biology, Microbiology BiologyGoogle:
"Iosif Vaisman"Children
Sign in to add traineeEwy A. Mathe | grad student | 2005 | George Mason |
Vadim L. Ravich | grad student | 2005 | George Mason |
Tariq A. Alsheddi | grad student | 2006 | George Mason |
Majid Masso | grad student | 2006 | George Mason |
Gregory M. Reck | grad student | 2007 | George Mason |
Bill S. Zhan | grad student | 2007 | George Mason |
Olivia Peters | grad student | 2010 | George Mason |
Baris E. Suzek | grad student | 2012 | George Mason |
Jesus E. Herrera-Galeano | grad student | 2013 | George Mason |
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Publications
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Hashemi AS, Vaisman II. (2024) Topology-based protein classification: A deep learning approach. Biochemical and Biophysical Research Communications. 746: 151240 |
McCarty TC, Vaisman II. (2024) Respiratory Syncytial Virus Vaccine Design Using Structure-Based Machine-Learning Models. Viruses. 16 |
Oberti M, Vaisman II. (2020) cnnAlpha: Protein Disordered Regions Prediction by Reduced Amino Acid Alphabets and Convolutional Neural Networks. Proteins |
Masso M, Bansal A, Prem P, et al. (2019) Fitness of unregulated human Ras mutants modeled by implementing computational mutagenesis and machine learning techniques. Heliyon. 5: e01884 |
Oberti M, Vaisman I. (2019) shiny-pred: a server for the prediction of protein disordered regions F1000research. 8: 230 |
Masso M, Bansal A, Gajjala A, et al. (2019) Cancer-Ml: Modeling Fitness of Unregulated RAS Mutants using Computational Mutagenesis and Machine Learning Biophysical Journal. 116: 561a |
McCoy MD, Jafri S, Vaisman I. (2015) Structural and Functional Impact of Amino Acid Substitution on Calmodulin Binding in Cardiac Myocytes Biophysical Journal. 108: 265a-266a |
Masso M, Vaisman II. (2014) AUTO-MUTE 2.0: A Portable Framework with Enhanced Capabilities for Predicting Protein Functional Consequences upon Mutation. Advances in Bioinformatics. 2014: 278385 |
Masso M, Chuang G, Hao K, et al. (2014) Structure-based predictors of resistance to the HIV-1 integrase inhibitor Elvitegravir. Antiviral Research. 106: 5-12 |
Masso M, Vaisman II. (2013) Sequence and structure based models of HIV-1 protease and reverse transcriptase drug resistance. Bmc Genomics. 14: S3 |