default search action
16. DNA 2010: Hong Kong, China
- Yasubumi Sakakibara, Yongli Mi:
DNA Computing and Molecular Programming - 16th International Conference, DNA 16, Hong Kong, China, June 14-17, 2010, Revised Selected Papers. Lecture Notes in Computer Science 6518, Springer 2011, ISBN 978-3-642-18304-1 - Yuriy Brun:
Improving Efficiency of 3-SAT-Solving Tile Systems. 1-12 - Ho-Lin Chen, Ming-Yang Kao:
Optimizing Tile Concentrations to Minimize Errors and Time for DNA Tile Self-assembly Systems. 13-24 - Ehsan Chiniforooshan, David Doty, Lila Kari, Shinnosuke Seki:
Scalable, Time-Responsive, Digital, Energy-Efficient Molecular Circuits Using DNA Strand Displacement. 25-36 - David Doty, Lila Kari, Benoît Masson:
Negative Interactions in Irreversible Self-assembly. 37-48 - Max H. Garzon, Tit-Yee Wong:
Search and Validation of Short Genome-Wide Biomarkers for Bacterial Biological Phylogenies. 49-58 - Nikhil Gopalkrishnan, Harish Chandran, John H. Reif:
High-Fidelity DNA Hybridization Using Programmable Molecular DNA Devices. 59-70 - Mika Göös, Pekka Orponen:
Synthesizing Minimal Tile Sets for Patterned DNA Self-assembly. 71-82 - Elton Graugnard, Amber Cox, Jeunghoon Lee, Cheryl Jorcyk, Bernard Yurke, William L. Hughes:
Operation of a DNA-Based Autocatalytic Network in Serum. 83-88 - Lila Kari, Shinnosuke Seki, Zhi Xu:
Triangular Tile Self-assembly Systems. 89-99 - Vamsi Kundeti, Sanguthevar Rajasekaran:
Randomized Self Assembly of Rectangular Nano Structures. 100-111 - Xingguo Liang, Toshio Mochizuki, Taiga Fujii, Hiromu Kashida, Hiroyuki Asanuma:
Design of a Functional Nanomaterial with Recognition Ability for Constructing Light-Driven Nanodevices. 112-122 - Lulu Qian, David Soloveichik, Erik Winfree:
Efficient Turing-Universal Computation with DNA Polymers. 123-140 - Hiroto Sakai, Yusuke Ogura, Jun Tanida:
Reversible Transition of Photonic DNA Automaton Using Hairpin-DNA Responding to a Single Kind of Photonic Signal. 141-146 - Rebecca Schulman, Erik Winfree:
Simple Evolution of Complex Crystal Species. 147-161 - David Yu Zhang:
Towards Domain-Based Sequence Design for DNA Strand Displacement Reactions. 162-175 - David Yu Zhang, Georg Seelig:
DNA-Based Fixed Gain Amplifiers and Linear Classifier Circuits. 176-186
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.