
pmid: 26776248
Modern biotechnology is emerging at the intersection of engineering, biology, physics, and computer science. As such it carries with it history from several disparate fields of research including a strong tradition in deductive reasoning primarily derived from discovery focused molecular biology and physics. Engineering biological systems is a complex undertaking requiring a broader set of epistemic tools and methods than what is usually applied in today's discovery based research. Inductive reasoning as commonly used in computer science has proven to be a very efficient approach to build knowledge about complex megadimensional datasets, including synthetic biology applications. The authors conclude that the multi-heuristic nature of modern biotechnology makes it an engineering field primed for inductive reasoning to complement the dominating deductive tradition.
knowledge, truth, Research, Reproducibility of Results, modeling, Bioengineering, Models, Biological, Knowledge, statistics, Artificial Intelligence, Computer Simulation, reproducibility, Biotechnology
knowledge, truth, Research, Reproducibility of Results, modeling, Bioengineering, Models, Biological, Knowledge, statistics, Artificial Intelligence, Computer Simulation, reproducibility, Biotechnology
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