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Computational molecular biology brings together computational, statistical, experimental, and technological methods in order to further scientific discovery and develop new analytical tools for molecular biology.
The field of molecular computing makes use of chemical reactions to do computations at the molecular scale, potentially allowing for extreme parallelism.
Biomolecular Computing and Programming: a Definition. Molecular computing is a discipline that aims at harnessing individual molecules at nanoscales for computational purposes. The best studied molecules for this purpose to date have been DNA and bacteriorhodopsin.
Researchers are working on using DNA or proteins within cells to carry out basic calculations. For example, biological computer chips could eventually be implanted to monitor everything from blood sugar to mental health, adjusting the bodys chemical releases and activity from a simple input.
Biomolecular computing is the field of engineering where computation, storage, communication, and coding are obtained by exploiting interactions between biomolecules, especially DNA, RNA, and enzymes. They are a promising solution in a long-term vision, bringing huge parallelism and negligible power consumption.
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Molecular programming is a research field that has advanced from DNA-based computing. In DNA-based computing, a sequence of reaction procedures for controlling and implementing computation is encoded as sequences of laboratory operations, by configurations of experimental apparatus, and/or in the molecules themselves.