DNA computing holds out the promise of important and significant connections between computers and living systems, as well as promising massively parallel computations. Before these promises are fulfilled, however, important challenges related to errors and practicality have to be addressed. On the other hand, new directions toward a synthesis of molecular evolution and DNA computing might circumvent the problems that have hindered development, so far
AbstractThe demonstration that DNA molecules can act as parallel processors to solve hard problems h...
We show how DNA molecules and standard lab techniques may be used to create a nondeterministic Turin...
DNA computation has the potential to tackle computationally difficult problems that have real-world ...
DNA computing holds out the promise of important and significant connections between computers and l...
Abstract--All computers in existence today make use of binary code – 1’s and 0’s, or on’s and off’s ...
Generally, the computer systems are made up of silicon-based computer technologies. In DNA computing...
DNA computing is an exciting field that encompasses different scientific subjects and merges them wi...
Abstract: We present the review of main ideas and results of DNA computing - the new inte...
Much of our scientific, technological, and economic future depends on the availability of an ever-in...
In this paper, we first summarize the research that has been completed in the field of DNA computing...
DNA computing is a discipline that aims at harnessing individual molecules at the nano-scopic level ...
DNA computing appeared in the literature in 1994 when Leonard Adleman suggested to solve an NP-compl...
DNA computing appeared in the literature in 1994 when Leonard Adleman suggested to solve an NP-compl...
Abstract. The aim of the paper is to make a review of DNA computing achievements on current stage, e...
DNA computation is a novel and exciting recent development at the interface of computer science and ...
AbstractThe demonstration that DNA molecules can act as parallel processors to solve hard problems h...
We show how DNA molecules and standard lab techniques may be used to create a nondeterministic Turin...
DNA computation has the potential to tackle computationally difficult problems that have real-world ...
DNA computing holds out the promise of important and significant connections between computers and l...
Abstract--All computers in existence today make use of binary code – 1’s and 0’s, or on’s and off’s ...
Generally, the computer systems are made up of silicon-based computer technologies. In DNA computing...
DNA computing is an exciting field that encompasses different scientific subjects and merges them wi...
Abstract: We present the review of main ideas and results of DNA computing - the new inte...
Much of our scientific, technological, and economic future depends on the availability of an ever-in...
In this paper, we first summarize the research that has been completed in the field of DNA computing...
DNA computing is a discipline that aims at harnessing individual molecules at the nano-scopic level ...
DNA computing appeared in the literature in 1994 when Leonard Adleman suggested to solve an NP-compl...
DNA computing appeared in the literature in 1994 when Leonard Adleman suggested to solve an NP-compl...
Abstract. The aim of the paper is to make a review of DNA computing achievements on current stage, e...
DNA computation is a novel and exciting recent development at the interface of computer science and ...
AbstractThe demonstration that DNA molecules can act as parallel processors to solve hard problems h...
We show how DNA molecules and standard lab techniques may be used to create a nondeterministic Turin...
DNA computation has the potential to tackle computationally difficult problems that have real-world ...