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Evaluating the Design of Biological Cells Using a Computer Workbench.

, , , and . Annual Simulation Symposium, page 88-98. IEEE Computer Society, (2007)

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A semantic web approach applied to integrative bioinformatics experimentation: a biological use case with genomics data., , , , and . Bioinform., 23 (22): 3080-3087 (2007)VLAM-G: Interactive data driven workflow engine for Grid-enabled resources., , , , , , , and . Sci. Program., 15 (3): 173-188 (2007)Collaborative e-Science Experiments and Scientific Workflows., , , , , , , , and . IEEE Internet Comput., 15 (4): 39-47 (2011)Taking the example of computer systems engineering for the analysis of biological cell systems., , , and . Biosyst., 90 (3): 623-635 (2007)E-BioFlow: Different Perspectives on Scientific Workflows., , , , and . BIRD, volume 13 of Communications in Computer and Information Science, page 243-257. Springer, (2008)Towards Design Space Exploration for Biological Systems., , , and . J. Comput., 3 (2): 1-9 (2008)Gestures to Intuitively Control Large Displays., , , , and . Gesture Workshop, volume 5085 of Lecture Notes in Computer Science, page 199-204. Springer, (2007)Interactive Workflows in a Virtual Laboratory for e-Bioscience: The SigWin-Detector Tool for Gene Expression Analysis., , , , , , and . e-Science, page 19. IEEE Computer Society, (2006)Analysing Scientific Workflows: Why Workflows Not Only Connect Web Services., , , , , , and . SERVICES I, page 314-321. IEEE Computer Society, (2009)A semantic web approach applied to integrative bioinformatics experimentation: a biological use case with genomics data, , , , and . Bioinformatics, (September 2007)