601 results on '"John H. Reif"'
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2. NeuralCRNs: A Natural Implementation of Learning in Chemical Reaction Networks.
3. Multidimensional data organization and random access in large-scale DNA storage systems.
4. Implementing Arbitrary CRNs Using Strand Displacing Polymerase.
5. Temporal DNA Barcodes: A Time-Based Approach for Single-Molecule Imaging.
6. A survey on molecular-scale learning systems with relevance to DNA computing
7. Activatable tiles for compact robust programmable molecular assembly and other applications.
8. Energy Complexity of Optical Computations.
9. ExTemp: A computational and image-processing suite for extracting temporal barcodes.
10. The co-learning in the design, simulation and optimization of a solar concentrating system.
11. Localized Hybridization Circuits.
12. Robomotion: Scalable, Physically Stable Locomotion for Self-reconfigurable Robots.
13. High-Fidelity DNA Hybridization Using Programmable Molecular DNA Devices.
14. DNA Hairpin Gate: A Renewable DNA Seesaw Motif Using Hairpins.
15. The Tile Complexity of Linear Assemblies.
16. Design of a Biomolecular Device That Executes Process Algebra.
17. A Self-assembly Model of Time-Dependent Glue Strength.
18. A Framework for Designing Novel Magnetic Tiles Capable of Complex Self-assemblies.
19. Isothermal Reactivating Whiplash PCR for Locally Programmable Molecular Computation.
20. Activatable Tiles: Compact, Robust Programmable Assembly and Other Applications.
21. Autonomous Programmable Nanorobotic Devices Using DNAzymes.
22. Autonomous Programmable Biomolecular Devices Using Self-assembled DNA Nanostructures.
23. Super-Resolution Video Analysis for Forensic Investigations.
24. Asymptotically Optimal Kinodynamic Motion Planning for Self-reconfigurable Robots.
25. Capabilities and Limits of Compact Error Resilience Methods for Algorithmic Self-assembly in Two and Three Dimensions.
26. A Framework for Modeling DNA Based Molecular Systems.
27. Design and Simulation of Self-repairing DNA Lattices.
28. Compact Error-Resilient Computational DNA Tilings.
29. A Self-assembly Model of Time-Dependent Glue Strength.
30. Complexity of Graph Self-assembly in Accretive Systems and Self-destructible Systems.
31. Design of Autonomous DNA Cellular Automata.
32. Compact Error-Resilient Computational DNA Tiling Assemblies.
33. Design of an Autonomous DNA Nanomechanical Device Capable of Universal Computation and Universal Translational Motion.
34. Designs of Autonomous Unidirectional Walking DNA Devices.
35. Design, Simulation, and Experimental Demonstration of Self-assembled DNA Nanostructures and Motors.
36. DNA-based Cryptography.
37. On Boundaries of Highly Visible Spaces and Applications.
38. Adaptive and Compact Discretization for Weighted Region Optimal Path Finding.
39. Deriving Effcient Graph Algorithms.
40. On energy-minimizing paths on terrains for a mobile robot.
41. The bridge test for sampling narrow passages with probabilistic roadmap planners.
42. Tile Complexity of Approximate Squares.
43. Molecular Assembly and Computation: From Theory to Experimental Demonstrations.
44. The Design of Autonomous DNA Nanomechanical Devices: Walking and Rolling DNA.
45. DNA Nanotubes: Construction and Characterization of Filaments Composed of TX-tile Lattice.
46. <scp>DNA</scp> Origami Transformers
47. An Overview of<scp>DNA</scp>‐Based Digital Data Storage
48. Experimental Construction of Very Large Scale DNA Databases with Associative Search Capability.
49. BUSHWHACK: An Approximation Algorithm for Minimal Paths through Pseudo-Euclidean Spaces.
50. Movement Planning in the Presence of Flows.
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