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DNA Computing [electronic resource] : 11th International Workshop on DNA Computing, DNA11, London, ON, Canada, June 6-9, 2005. Revised Selected Papers. /

Contributor(s): Material type: TextTextSeries: Theoretical Computer Science and General Issues ; 3892Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2006Edition: 1st ed. 2006Description: XII, 444 p. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783540341659
Subject(s): Additional physical formats: Printed edition:: No title; Printed edition:: No titleDDC classification:
  • 004.0151 23
LOC classification:
  • QA75.5-76.95
Online resources:
Contents:
Self-correcting Self-assembly: Growth Models and the Hammersley Process -- Recognizing DNA Splicing -- On Computational Properties of Template-Guided DNA Recombination -- Towards Practical Biomolecular Computers Using Microfluidic Deoxyribozyme Logic Gate Networks -- DNA Recombination by XPCR -- An Algorithm for SAT Without an Extraction Phase -- Sensitivity and Capacity of Microarray Encodings -- Simple Operations for Gene Assembly -- Counting Time in Computing with Cells -- On Bounded Symport/Antiport P Systems -- Expectation and Variance of Self-assembled Graph Structures -- Hairpin Structures in DNA Words -- Efficient Algorithm for Testing Structure Freeness of Finite Set of Biomolecular Sequences -- Communicating Distributed H Systems: Optimal Results with Efficient Ways of Communication -- Intensive In Vitro Experiments of Implementing and Executing Finite Automata in Test Tube -- Development of an In Vivo Computer Based on Escherichia coli -- Control of DNA Molecules on a Microscopic Bead Using Optical Techniques for Photonic DNA Memory -- Linearizer and Doubler : Two Mappings to Unify Molecular Computing Models Based on DNA Complementarity -- Analysis and Simulation of Dynamics in Probabilistic P Systems -- Experimental Validation of DNA Sequences for DNA Computing: Use of a SYBR Green I Assay -- Complexity of Graph Self-assembly in Accretive Systems and Self-destructible Systems -- Designing Nucleotide Sequences for Computation: A Survey of Constraints -- A Self-assembly Model of Time-Dependent Glue Strength -- Complexity of Compact Proofreading for Self-assembled Patterns -- A Microfluidic Device for DNA Tile Self-assembly -- Photo- and Thermoregulation of DNA Nanomachines -- Chain Reaction Systems Based on Loop Dissociation of DNA -- A Local Search Based Barrier Height Estimation Algorithm for DNA Molecular Transitions -- Specificity of Hybridization Between DNA Sequences Based on Free Energy -- A Poor Man’s Microfluidic DNA Computer -- Two Proteins for the Price of One: The Design of Maximally Compressed Coding Sequences -- Design of Autonomous DNA Cellular Automata -- Use of DNA Nanodevices in Modulating the Mechanical Properties of Polyacrylamide Gels -- Molecular Learning of wDNF Formulae.
In: Springer Nature eBook
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Self-correcting Self-assembly: Growth Models and the Hammersley Process -- Recognizing DNA Splicing -- On Computational Properties of Template-Guided DNA Recombination -- Towards Practical Biomolecular Computers Using Microfluidic Deoxyribozyme Logic Gate Networks -- DNA Recombination by XPCR -- An Algorithm for SAT Without an Extraction Phase -- Sensitivity and Capacity of Microarray Encodings -- Simple Operations for Gene Assembly -- Counting Time in Computing with Cells -- On Bounded Symport/Antiport P Systems -- Expectation and Variance of Self-assembled Graph Structures -- Hairpin Structures in DNA Words -- Efficient Algorithm for Testing Structure Freeness of Finite Set of Biomolecular Sequences -- Communicating Distributed H Systems: Optimal Results with Efficient Ways of Communication -- Intensive In Vitro Experiments of Implementing and Executing Finite Automata in Test Tube -- Development of an In Vivo Computer Based on Escherichia coli -- Control of DNA Molecules on a Microscopic Bead Using Optical Techniques for Photonic DNA Memory -- Linearizer and Doubler : Two Mappings to Unify Molecular Computing Models Based on DNA Complementarity -- Analysis and Simulation of Dynamics in Probabilistic P Systems -- Experimental Validation of DNA Sequences for DNA Computing: Use of a SYBR Green I Assay -- Complexity of Graph Self-assembly in Accretive Systems and Self-destructible Systems -- Designing Nucleotide Sequences for Computation: A Survey of Constraints -- A Self-assembly Model of Time-Dependent Glue Strength -- Complexity of Compact Proofreading for Self-assembled Patterns -- A Microfluidic Device for DNA Tile Self-assembly -- Photo- and Thermoregulation of DNA Nanomachines -- Chain Reaction Systems Based on Loop Dissociation of DNA -- A Local Search Based Barrier Height Estimation Algorithm for DNA Molecular Transitions -- Specificity of Hybridization Between DNA Sequences Based on Free Energy -- A Poor Man’s Microfluidic DNA Computer -- Two Proteins for the Price of One: The Design of Maximally Compressed Coding Sequences -- Design of Autonomous DNA Cellular Automata -- Use of DNA Nanodevices in Modulating the Mechanical Properties of Polyacrylamide Gels -- Molecular Learning of wDNF Formulae.

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