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Latest revision as of 23:23, 17 October 2018

Projects
Design
Overview
   <img src="T--SYSU-Software--designOverviewTrue.png">
       CO-RAD isn't just another question-and-answer community. It is an amazing experience specially made for
       synthetic biologists. Our real-time collaborative designer and synchronization sketchpad will make you feel
       like working side by side with your remote coworkers. The powerful databases and algorithms we provide empower
       you by stimulating your creativity, and you will find yourself doing a better job for your team efficiently.
New ways of collaboration:Face-to-Face Distant Collaboration
       For a long time, collaborative biology-designed collaboration software simply sent its
       questions to a website and waiting for someone to answer. This method becomes inefficient when the number of
       users is small. Instead of creating a Q&A site, we want to create a collaboration tool that everyone can use to
       help synthetic biologists overcome the inconvenience of remote collaboration and make remote collaboration as
       valid as face-to-face communication.
Visual Designer
       If you have a brilliant idea that you want to share with your colleagues right now, wouldn't it be wonderful if
       they can see it as you are writing it down? With our CO-RAD online design platform, team members can see each
       other's editions on the protocol in real time, as if they are using the same computer with multiple screens and
       input devices. You can also customize new tools via the platform for higher efficiency when you are editing
       relations between genetic circuits or writing experimental protocols. CO-RAD online design platform also comes
       with version control, so you don't ever need to worry about someone accidentally scrambling your protocol up!
   <img src="T--SYSU-Software--share-drag.gif" />


Synchronization Sketchpad
       It works like our Real-time Collaborative designer, but instead of making editorial contents on files or
       editing circuits, you get to doodle on a synchronization board and other people can see it as you draw and
       respond to you at the same time. Let ideas fly!
   <img src="T--SYSU-Software--share-draw.gif" />


SBOL Support
       Files formatted in SBOL can be loaded in our software without any re-editing or configuration. This allows you
       to collaborate seamlessly with people who are not currently using the same software as you.
   <img src="T--SYSU-Software--SBOL.png" />
Spark Users Ideas
       High-efficient collaboration requires effective communication, and a proposal cannot be separated from a
       summary of past successful experience, a deep understanding of previous designs. As regard for this, we have
       developed several functions, hoping to enlighten users' inspiration and open up users' thoughts.
Search
       Each year hundreds of teams participate in iGEM and lots of synthetic biology papers are published. By learning
       from successful examples from the past, you can refine your own project or make valuable suggestions for
       others' work. Our database include former iGEM and well-known journal projects which can be searched by
       keywords.
   <img src="T--SYSU-Software--Search.png" />
Recommendation
       Our search module will automatically recommend projects with similar circuits based on the chosen parts in users' design.
   <img style="width: 30%;" src="T--SYSU-Software--recommend.png" />
Analysis
       Deeper understanding of the circuit design can help users put forward more constructive ideas. CO-RAD can
       calculate two common values, the CG and CAI values of components, to assist the user in deciding whether to
       modify or optimize the components of the circuit.
   <img style="width: 30%;" src="T--SYSU-Software--analysis.png" />
Simulation and evolutionary algorithm
       With mathmatical models, CO-RAD can analyze the circuit to provide a reference for him by simulating the
       expression of the product.
       We use evolutionary algorithm to assist the user in modifying his own circuit designs. After the user
       determines the desired expression level, the algorithm simulates the process of reproduction, elimination,
       mutation, and iteratively obtains the optimal kinetics component dynamics parameters. These parameters can help
       the user to modify or optimize their circuit design.
       <img style="width: 35%;" src="T--SYSU-Software--simulation2.png" />
       <img style="width: 35%;" src="T--SYSU-Software--simulation3.png" />