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− | <centre style="font-size:160%;">To create BabblED, we needed to rapidly design and process the information in a lexicon of over 2000 BabbleBricks. This would have been a practically impossible task without a novel computational approach. In order to make BabblED accessible our software needed to be open source (our code can be found on <a href="https://github.com/Edinburgh-iGEM2016/" target="_self">github</a>or on our <a href="https://2016.igem.org/Team:Edinburgh_UG/Files" target="_self">dedicated wiki page</a>), have an easy to use and elegant user interface and run under reasonable time constraints (it's possible to encode entire lexicons practically instantly). In addition to the easy and fast encoding and decoding of our BabbleBricks we needed to automate our unique DNA error correction system; adapting a number of computer science techniques to new and creative applications in DNA storage. Finally, with data security an ever growing concern we implemented a highly secure DNA encryption system to safeguard against unauthorised access.</centre> | + | <centre style="font-size:160%;">To create BabblED, we needed to rapidly design and process the information in a lexicon of over 2000 BabbleBricks. This would have been a practically impossible task without a novel computational approach. In order to make BabblED accessible our software needed to be open source (our code can be found on <a href="https://github.com/Edinburgh-iGEM2016/" target="_self">github</a>or on our <a href="https://2016.igem.org/Team:Edinburgh_UG/Files" target="_self">dedicated wiki page</a>), have an easy to use and elegant user interface, and run under reasonable time constraints (it's possible to encode entire lexicons practically instantly). In addition to the easy and fast encoding and decoding of our BabbleBricks we needed to automate our unique DNA error correction system; adapting a number of computer science techniques to new and creative applications in DNA storage. Finally, with data security an ever growing concern we implemented a highly secure DNA encryption system to safeguard against unauthorised access.</centre> |
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Revision as of 21:05, 19 October 2016