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Erik Winfree: [Publications] [Author Rank by year] [Co-authors] [Prefers] [Cites] [Cited by]

Publications of Author

  1. Erik Winfree, Renat Bekbolatov
    Proofreading Tile Sets: Error Correction for Algorithmic Self-Assembly. [Citation Graph (0, 0)][DBLP]
    DNA, 2003, pp:126-144 [Conf]
  2. Erik Winfree, Tony Eng, Grzegorz Rozenberg
    String Tile Models for DNA Computing by Self-Assembly. [Citation Graph (0, 0)][DBLP]
    DNA Computing, 2000, pp:63-88 [Conf]
  3. Matthew Cook, Paul W. K. Rothemund, Erik Winfree
    Self-Assembled Circuit Patterns. [Citation Graph (0, 0)][DBLP]
    DNA, 2003, pp:91-107 [Conf]
  4. Rebecca Schulman, Shaun Lee, Nick Papadakis, Erik Winfree
    One Dimensional Boundaries for DNA Tile Self-Assembly. [Citation Graph (0, 0)][DBLP]
    DNA, 2003, pp:108-126 [Conf]
  5. Rebecca Schulman, Erik Winfree
    Programmable Control of Nucleation for Algorithmic Self-assembly. [Citation Graph (0, 0)][DBLP]
    DNA, 2004, pp:319-328 [Conf]
  6. Georg Seelig, Bernard Yurke, Erik Winfree
    DNA Hybridization Catalysts and Catalyst Circuits. [Citation Graph (0, 0)][DBLP]
    DNA, 2004, pp:329-343 [Conf]
  7. David Soloveichik, Erik Winfree
    Complexity of Self-assembled Shapes. [Citation Graph (0, 0)][DBLP]
    DNA, 2004, pp:344-354 [Conf]
  8. David Soloveichik, Erik Winfree
    Complexity of Compact Proofreading for Self-assembled Patterns. [Citation Graph (0, 0)][DBLP]
    DNA, 2005, pp:305-324 [Conf]
  9. Rebecca Schulman, Erik Winfree
    Self-replication and Evolution of DNA Crystals. [Citation Graph (0, 0)][DBLP]
    ECAL, 2005, pp:734-743 [Conf]
  10. Jongmin Kim, John J. Hopfield, Erik Winfree
    Neural Network Computation by In Vitro Transcriptional Circuits. [Citation Graph (0, 0)][DBLP]
    NIPS, 2004, pp:- [Conf]
  11. Paul W. K. Rothemund, Erik Winfree
    The program-size complexity of self-assembled squares (extended abstract). [Citation Graph (0, 0)][DBLP]
    STOC, 2000, pp:459-468 [Conf]
  12. Erik Winfree
    Fault-Tolerance in Biochemical Systems. [Citation Graph (0, 0)][DBLP]
    UC, 2006, pp:26- [Conf]
  13. Erik Winfree
    In-vitro Transcriptional Circuits. [Citation Graph (0, 0)][DBLP]
    UMC, 2000, pp:121-122 [Conf]
  14. Leonard M. Adleman, Paul W. K. Rothemund, Sam T. Roweis, Erik Winfree
    On Applying Molecular Computation to the Data Encryption Standard. [Citation Graph (0, 0)][DBLP]
    Journal of Computational Biology, 1999, v:6, n:1, pp:53-64 [Journal]
  15. Sam T. Roweis, Erik Winfree
    On the Reduction of Errors in DNA Computation. [Citation Graph (0, 0)][DBLP]
    Journal of Computational Biology, 1999, v:6, n:1, pp:65-76 [Journal]
  16. Sam T. Roweis, Erik Winfree, Richard Burgoyne, Nickolas V. Chelyapov, Myron F. Goodman, Paul W. K. Rothemund, Leonard M. Adleman
    A Sticker-Based Model for DNA Computation. [Citation Graph (0, 0)][DBLP]
    Journal of Computational Biology, 1998, v:5, n:4, pp:615-630 [Journal]
  17. David Soloveichik, Erik Winfree
    Complexity of Self-Assembled Shapes. [Citation Graph (0, 0)][DBLP]
    SIAM J. Comput., 2007, v:36, n:6, pp:1544-1569 [Journal]
  18. David Soloveichik, Erik Winfree
    The computational power of Benenson automata. [Citation Graph (0, 0)][DBLP]
    Theor. Comput. Sci., 2005, v:344, n:2-3, pp:279-297 [Journal]
  19. David Soloveichik, Erik Winfree
    Complexity of Self-Assembled Shapes [Citation Graph (0, 0)][DBLP]
    CoRR, 2004, v:0, n:, pp:- [Journal]
  20. David Soloveichik, Erik Winfree
    The Computational Power of Benenson Automata [Citation Graph (0, 0)][DBLP]
    CoRR, 2004, v:0, n:, pp:- [Journal]

  21. Toward molecular programming with DNA. [Citation Graph (, )][DBLP]


  22. DNA as a Universal Substrate for Chemical Kinetics. [Citation Graph (, )][DBLP]


  23. A Simple DNA Gate Motif for Synthesizing Large-Scale Circuits. [Citation Graph (, )][DBLP]


  24. Self-healing Tile Sets. [Citation Graph (, )][DBLP]


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