| 2013 | ||
|---|---|---|
| j19 | Wayne Hayes, Kai Sun, Natasa Przulj: Graphlet-based measures are suitable for biological network comparison. Bioinformatics 29(4): 483-491 (2013) | |
| 2011 | ||
| j18 | Oleksii Kuchaiev, Natasa Przulj: Integrative network alignment reveals large regions of global network similarity in yeast and human. Bioinformatics 27(10): 1390-1396 (2011) | |
| j17 | Oleksii Kuchaiev, Aleksandar Stevanovic, Wayne Hayes, Natasa Przulj: GraphCruch 2: Software tool for network modeling, alignment and clustering. BMC Bioinformatics 12: 24 (2011) | |
| j16 | Natasa Przulj: Introduction to the Special Issue on Biological Networks. Internet Mathematics 7(4): 207-208 (2011) | |
| c4 | Brahim Betkaoui, David B. Thomas, Wayne Luk, Natasa Przulj: A framework for FPGA acceleration of large graph problems: Graphlet counting case study. FPT 2011: 1-8 | |
| 2010 | ||
| j15 | Natasa Przulj: Biological network comparison using graphlet degree distribution. Bioinformatics 26(6): 853-854 (2010) | |
| j14 | Vesna Memisevic, Tijana Milenkovic, Natasa Przulj: An integrative approach to modeling biological networks. J. Integrative Bioinformatics 7(3) (2010) | |
| j13 | Vesna Memisevic, Tijana Milenkovic, Natasa Przulj: Complementarity of network and sequence information in homologous proteins. J. Integrative Bioinformatics 7(3) (2010) | |
| c3 | Natasa Przulj, Oleksii Kuchaiev, Aleksandar Stevanovic, Wayne Hayes: Geometric Evolutionary Dynamics of Protein Interaction Networks. Pacific Symposium on Biocomputing 2010: 178-189 | |
| 2009 | ||
| j12 | Oleksii Kuchaiev, Marija Rasajski, Desmond J. Higham, Natasa Przulj: Geometric De-noising of Protein-Protein Interaction Networks. PLoS Computational Biology 5(8) (2009) | |
| c2 | Oleksii Kuchaiev, Natasa Przulj: Learning the Structure of Protein-Protein Interaction Networks. Pacific Symposium on Biocomputing 2009: 39-50 | |
| 2008 | ||
| j11 | Desmond J. Higham, Marija Rasajski, Natasa Przulj: Fitting a geometric graph to a protein-protein interaction network. Bioinformatics 24(8): 1093-1099 (2008) | |
| j10 | Tijana Milenkovic, Jason Lai, Natasa Przulj: GraphCrunch: A tool for large network analyses. BMC Bioinformatics 9 (2008) | |
| 2007 | ||
| j9 | Natasa Przulj: Biological network comparison using graphlet degree distribution. Bioinformatics 23(2): 177-183 (2007) | |
| j8 | Fereydoun Hormozdiari, Petra Berenbrink, Natasa Przulj, Süleyman Cenk Sahinalp: Not All Scale-Free Networks Are Born Equal: The Role of the Seed Graph in PPI Network Evolution. PLoS Computational Biology 3(7) (2007) | |
| 2006 | ||
| j7 | Natasa Przulj, Derek G. Corneil, Igor Jurisica: Efficient estimation of graphlet frequency distributions in protein-protein interaction networks. Bioinformatics 22(8): 974-980 (2006) | |
| c1 | Fereydoun Hormozdiari, Petra Berenbrink, Natasa Przulj, Süleyman Cenk Sahinalp: Not All Scale Free Networks Are Born Equal: The Role of the Seed Graph in PPI Network Emulation. Systems Biology and Computational Proteomics 2006: 1-13 | |
| 2005 | ||
| j6 | Natasa Przulj, Derek G. Corneil: 2-Tree probe interval graphs have a large obstruction set. Discrete Applied Mathematics 150(1-3): 216-231 (2005) | |
| 2004 | ||
| j5 | Natasa Przulj, Dennis A. Wigle, Igor Jurisica: Functional topology in a network of protein interactions. Bioinformatics 20(3): 340-348 (2004) | |
| j4 | Andrew D. King, Natasa Przulj, Igor Jurisica: Protein complex prediction via cost-based clustering. Bioinformatics 20(17): 3013-3020 (2004) | |
| j3 | Natasa Przulj, Derek G. Corneil, Igor Jurisica: Modeling interactome: scale-free or geometric?. Bioinformatics 20(18): 3508-3515 (2004) | |
| j2 | Natasa Przulj, Derek G. Corneil, Ekkehard Köhler: Hereditary dominating pair graphs. Discrete Applied Mathematics 134(1-3): 239-261 (2004) | |
| 1998 | ||
| j1 | Arthur L. Liestman, Natasa Przulj: Minimum Average Time Broadcast Graphs. Parallel Processing Letters 8(2): 139-140 (1998) | |
Colors in the list of coauthors
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