Result 1 to 20 of 324 total
Tile complexity of linear assemblies. (English)
SIAM J. Comput. 41, No. 4, 1051-1073 (2012).
1
Localized hybridization circuits. (English)
Cardelli, Luca (ed.) et al., DNA computing and molecular programming. 17th international conference, DNA 17, Pasadena, CA, USA, September 19‒23, 2011. Proceedings. Berlin: Springer (ISBN 978-3-642-23637-2/pbk). Lecture Notes in Computer Science 6937, 64-83 (2011).
2
Robomotion: scalable, physically stable locomotion for self-reconfigurable robots. (English)
Hsu, David (ed.) et al., Algorithmic foundations of robotics IX. Selected contributions of the ninth international workshop on the algorithmic foundations of robotics, Singapore, December 13‒15, 2010. Berlin: Springer (ISBN 978-3-642-17451-3/hbk; 978-3-642-17452-0/ebook). Springer Tracts in Advanced Robotics 68, 121-137 (2011).
3
Design of a biomolecular device that executes process algebra. (English)
Nat. Comput. 10, No. 1, 447-466 (2011).
4
Complexity of graph self-assembly in accretive systems and self-destructible systems. (English)
Theor. Comput. Sci. 412, No. 17, 1592-1605 (2011).
5
High-fidelity DNA hybridization using programmable molecular DNA devices. (English)
Sakakibara, Yasubumi (ed.) et al., DNA computing and molecular programming. 16th international conference, DNA 16, Hong Kong, China, June 14‒17, 2010. Revised selected papers. Berlin: Springer (ISBN 978-3-642-18304-1/pbk). Lecture Notes in Computer Science 6518, 59-70 (2011).
6
Localized hybridization circuits (English)
DNA, 64-83 (2011).
7
Keynote: DNA-based molecular devices (English)
ICCABS, 3 (2011).
8
Isothermal reactivating whiplash PCR for locally programmable molecular computation. (English)
Nat. Comput. 9, No. 1, 183-206 (2010).
9
Capabilities and limits of compact error resilience methods for algorithmic self-assembly. (English)
Algorithmica 56, No. 4, 480-504 (2010).
10
High-fidelity DNA hybridization using programmable molecular DNA devices (English)
DNA, 59-70 (2010).
11
Robomotion: scalable, physically stable locomotion for self-reconfigurable robots (English)
WAFR, 121-137 (2010).
12
Design of a biomolecular device that executes process algebra. (English)
Deaton, Russell (ed.) et al., DNA computing and molecular programming. 15th international conference, DNA 15, Fayetteville, AR, USA, June 8‒11, 2009. Revised selected papers. Berlin: Springer (ISBN 978-3-642-10603-3/pbk). Lecture Notes in Computer Science 5877, 97-105 (2009).
13
Isothermal reactivating Whiplash PCR for locally programmable molecular computation. (English)
Goel, Ashish (ed.) et al., DNA computing. 14th international meeting on DNA computing, DNA 14, Prague, Czech Republic, June 2‒9, 2008. Revised selected papers. Berlin: Springer (ISBN 978-3-642-03075-8/pbk). Lecture Notes in Computer Science 5347, 41-56 (2009).
14
The tile complexity of linear assemblies. (English)
Albers, Susanne (ed.) et al., Automata, languages and programming. 36th international colloquium, ICALP 2009, Rhodes, Greece, July 5‒12, 2009. Proceedings, Part I. Berlin: Springer (ISBN 978-3-642-02926-4/pbk). Lecture Notes in Computer Science 5555, 235-253 (2009).
15
Autonomous programmable DNA nanorobotic devices using DNAzymes. (English)
Theor. Comput. Sci. 410, No. 15, 1428-1439 (2009).
16
Mechanical computing: the computational complexity of physical devices (English)
Encyclopedia of Complexity and Systems Science, 5466-5482 (2009).
17
Design of a biomolecular device that executes process algebra (English)
DNA, 97-105 (2009).
18
The tile complexity of linear assemblies (English)
ICALP (1), 235-253 (2009).
19
Asymptotically optimal kinodynamic motion planning for self-reconfigurable robots. (English)
Akella, Srinivas (ed.) et al., Algorithmic foundation of robotics VII. Selected contributions of the seventh international workshop on the algorithmic foundations of robotics (WAFR 2006), New York, NJ, USA, July 16‒18, 2006. Berlin: Springer (ISBN 978-3-540-68404-6/hbk; 978-3-540-68405-3/ebook). Springer Tracts in Advanced Robotics 47, 457-472 (2008).
20
Result 1 to 20 of 324 total