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GECCO
2005
Springer
189views Optimization» more  GECCO 2005»
14 years 1 months ago
Molecular programming: evolving genetic programs in a test tube
We present a molecular computing algorithm for evolving DNA-encoded genetic programs in a test tube. The use of synthetic DNA molecules combined with biochemical techniques for va...
Byoung-Tak Zhang, Ha-Young Jang
SBACPAD
2003
IEEE
120views Hardware» more  SBACPAD 2003»
14 years 1 months ago
Comparison of Genomes Using High-Performance Parallel Computing
Comparison of the DNA sequences and genes of two genomes can be useful to investigate the common functionalities of the corresponding organisms and get a better understanding of h...
Nalvo F. Almeida Jr., Carlos E. R. Alves, Edson C&...
IPPS
2006
IEEE
14 years 2 months ago
Phylogenetic models of rate heterogeneity: a high performance computing perspective
Inference of phylogenetic trees using the maximum likelihood (ML) method is NP-hard. Furthermore, the computation of the likelihood function for huge trees of more than 1,000 orga...
Alexandros Stamatakis
ISWC
1997
IEEE
14 years 19 days ago
Context-Awareness in Wearable and Ubiquitous Computing
A common focus shared by researchers in mobile, ubiquitous and wearable computing is the attempt to break away from the traditional desktop computing paradigm. Computational servi...
Gregory D. Abowd, Anind K. Dey, Robert Orr, Jason ...
HICSS
1995
IEEE
105views Biometrics» more  HICSS 1995»
13 years 12 months ago
A parallel algorithm for calculating the potential energy in DNA
The Dreiding force field is a seven-term equation that describes the potential energy in a molecule as a function of the relative positions of bonded atoms and electrostatic inte...
John S. Conery, Warner L. Peticolas, Thomas Rush I...