The maximum clique problem has diverse applications in the field of pattern recognition, computer vision, information processing etc. The connection between self-assembly and computation has implied that the tile assembly can perform arithmetical computation. Approaches to algorithmic self-assembly require the use of DNA nanostructures, called tiles, which have efficient computational power, and convenient input and output mechanisms. We present a theoretical tile assembly model for the maximum clique problem. We take some transformation to the maximum clique problem and convert it into the 0-1 programming problem. By use of the huge parallelism inherent in the arithmetic tile assembly, it outputs a reporter strand which includes the soluti...
Tile assembly model is a highly distributed parallel computation model. In this paper, three tile as...
Abstract Winfree’s abstract Tile Assembly Model is a model of molecular self-assembly of DNA complex...
Winfree’s abstract Tile Assembly Model (aTAM) is a model of molecular self-assembly of DNA complexes...
The maximum clique problem has diverse applications in the field of pattern recognition, computer vi...
DNA tile self-assembly is a promising paradigm for nanotechnology. Recently, many researches show th...
Self-assembly is the ubiquitous process by which simple objects autonomously assemble into intricate...
Abstract. The tile assembly model has allowed the study of the nature’s process of self-assembly and...
In recent years, DNA self-assembly has widely developed in the fields of DNA computing and nanotechn...
Recently, many researchers have demonstrated that computation by DNA tile self-assembly may be scala...
Algorithmic self-assembly, a generalization of crystal growth, has been proposed as a mechanism for ...
AbstractFormalized study of self-assembly has led to the definition of the tile assembly model, a hi...
AbstractFormalized study of self-assembly has led to the definition of the tile assembly model [Erik...
DNA tile self-assembly has been proved to enable programmable manipulation of biological systems as ...
DNA tile self-assembly has been proved to enable programmable manipulation of biological systems as ...
Tile-based self-assembly and chemical reaction networks provide two well-studied models of scalable ...
Tile assembly model is a highly distributed parallel computation model. In this paper, three tile as...
Abstract Winfree’s abstract Tile Assembly Model is a model of molecular self-assembly of DNA complex...
Winfree’s abstract Tile Assembly Model (aTAM) is a model of molecular self-assembly of DNA complexes...
The maximum clique problem has diverse applications in the field of pattern recognition, computer vi...
DNA tile self-assembly is a promising paradigm for nanotechnology. Recently, many researches show th...
Self-assembly is the ubiquitous process by which simple objects autonomously assemble into intricate...
Abstract. The tile assembly model has allowed the study of the nature’s process of self-assembly and...
In recent years, DNA self-assembly has widely developed in the fields of DNA computing and nanotechn...
Recently, many researchers have demonstrated that computation by DNA tile self-assembly may be scala...
Algorithmic self-assembly, a generalization of crystal growth, has been proposed as a mechanism for ...
AbstractFormalized study of self-assembly has led to the definition of the tile assembly model, a hi...
AbstractFormalized study of self-assembly has led to the definition of the tile assembly model [Erik...
DNA tile self-assembly has been proved to enable programmable manipulation of biological systems as ...
DNA tile self-assembly has been proved to enable programmable manipulation of biological systems as ...
Tile-based self-assembly and chemical reaction networks provide two well-studied models of scalable ...
Tile assembly model is a highly distributed parallel computation model. In this paper, three tile as...
Abstract Winfree’s abstract Tile Assembly Model is a model of molecular self-assembly of DNA complex...
Winfree’s abstract Tile Assembly Model (aTAM) is a model of molecular self-assembly of DNA complexes...