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Luca Cardelli and William Shih
Front matter
1-20
Cooperative Assembly Systems
21
The Computer Science of Molecular Programming
22-31
An Autonomous DNA Nanodevice Captures pH Maps of Living Cells in Culture and in Vivo
32
Cooperation in an All-RNA Network
33
Designer DNA Architectures for Bionanotechnology
34-48
An Improved DNA-Sticker Addition Algorithm and Its Application to Logarithmic Arithmetic
49-63
Graph-Theoretic Formalization of Hybridization in DNA Sticker Complexes
64-83
Localized Hybridization Circuits
84-99
Less Haste, Less Waste: On Recycling and Its Limits in Strand Displacement Systems
100-114
One-Dimensional Staged Self-assembly
115-129
Computing Maximal Kleene Closures That Are Embeddable in a Given Constrained DNA Language
130-144
Modelling, Simulating and Verifying Turing-Powerful Strand Displacement Systems
145-159
Synthesizing Small and Reliable Tile Sets for Patterned DNA Self-assembly
160-174
Multivalent Random Walkers — A Model for Deoxyribozyme Walkers
175-189
Exact Shapes and Turing Universality at Temperature 1 with a Single Negative Glue
190-203
Autonomous Resolution Based on DNA Strand Displacement
204-216
Multiple Molecular Spiders with a Single Localized Source—The One-Dimensional Case (Extended Abstract)
Back matter
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