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<div class="row text-center"> | <div class="row text-center"> | ||
<div class="col-lg-10 col-lg-offset-1"> | <div class="col-lg-10 col-lg-offset-1"> | ||
− | <h2>Our | + | <h2>Our Tool</h2> |
<hr class="small"> | <hr class="small"> | ||
<div class="row"> | <div class="row"> | ||
− | <div class="col-md-3 col-sm-6"> | + | <div class="col-md-3 col-sm-6"> |
<div class="service-item"> | <div class="service-item"> | ||
− | + | <span class="fa-stack fa-4x"> | |
<i class="fa fa-circle fa-stack-2x"></i> | <i class="fa fa-circle fa-stack-2x"></i> | ||
<i class="fa fa-cloud fa-stack-1x text-primary"></i> | <i class="fa fa-cloud fa-stack-1x text-primary"></i> | ||
</span> | </span> | ||
<h4> | <h4> | ||
− | <strong> | + | <strong>Specify</strong> |
</h4> | </h4> | ||
− | <p> | + | <p>Specify your microfluidic tool: inputs, outputs. Are there any limitations in terms of port size, channel width? </p> |
− | + | <p>These will enable Fluigi to best place and route the control and flow layer of the microfluidic chip. The flow layer is the layer through which fluid flows, and the control layer consists of valves that open and close to pull/push fluid through using pressure.</p> | |
+ | <p>One part of the specification, which is the mapper (MM) tool, has been done by our iGem Team. Click the button below to learn more about our MM tool. </p> | ||
+ | <a href="#" class="btn btn-light">Learn More</a> | ||
</div> | </div> | ||
</div> | </div> | ||
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</span> | </span> | ||
<h4> | <h4> | ||
− | <strong> | + | <strong>Design</strong> |
</h4> | </h4> | ||
− | <p> | + | <p>Use the Fluigi graphical user interface to view and edit your microfluidic chip. </p> |
+ | <p> This graphical user interface ties together the design and build components of Fluigi. The interface has been made completely by the iGEM Team</p> | ||
<a href="#" class="btn btn-light">Learn More</a> | <a href="#" class="btn btn-light">Learn More</a> | ||
</div> | </div> | ||
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</span> | </span> | ||
<h4> | <h4> | ||
− | <strong> | + | <strong>Build</strong> |
− | + | ||
− | + | ||
− | + | ||
− | + | ||
− | + | ||
− | + | ||
− | + | ||
− | + | ||
− | + | ||
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− | + | ||
− | + | ||
− | + | ||
</h4> | </h4> | ||
− | <p> | + | <p>Ready to make your chip? Import our design files into a 3D Printer and CNC mill to make the chip! You can also make/change the setup using our parameterized designs.</p> |
+ | <p> The design of the setup is BU iGEM work, whilst the chip manufacturing is the work of our mentors. </P> | ||
<a href="#" class="btn btn-light">Learn More</a> | <a href="#" class="btn btn-light">Learn More</a> | ||
</div> | </div> | ||
</div> | </div> | ||
+ | |||
</div> | </div> | ||
<!-- /.row (nested) --> | <!-- /.row (nested) --> |
Revision as of 19:02, 25 June 2016
Fluigi is a specify, design, build workflow to aid microfluidic device development.
Our Tool
Specify
Specify your microfluidic tool: inputs, outputs. Are there any limitations in terms of port size, channel width?
These will enable Fluigi to best place and route the control and flow layer of the microfluidic chip. The flow layer is the layer through which fluid flows, and the control layer consists of valves that open and close to pull/push fluid through using pressure.
One part of the specification, which is the mapper (MM) tool, has been done by our iGem Team. Click the button below to learn more about our MM tool.
Learn MoreDesign
Use the Fluigi graphical user interface to view and edit your microfluidic chip.
This graphical user interface ties together the design and build components of Fluigi. The interface has been made completely by the iGEM Team
Learn MoreBuild
Ready to make your chip? Import our design files into a 3D Printer and CNC mill to make the chip! You can also make/change the setup using our parameterized designs.
The design of the setup is BU iGEM work, whilst the chip manufacturing is the work of our mentors.
Learn More