Biomod/2014/Komaba: Difference between revisions

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It is possible to break only optional bonding when high frequency is applied to the magnetic beads and beads become at a high temperature.  
It is possible to break only optional bonding when high frequency is applied to the magnetic beads and beads become at a high temperature.  
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<h2>Movie</h2>
<iframe width="560" height="315" src="//www.youtube.com/embed/648IYxbR99U" frameborder="0" allowfullscreen></iframe>
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Revision as of 07:45, 29 August 2014

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   <a class="navbar-brand" href="http://openwetware.org/wiki/Biomod/2014/Komaba">Komaba</a>
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</html> <html> <head> <style>

  1. con{
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} </style> </head> <body> <div id="con"> <img src="http://openwetware.org/images/7/7c/Komaba.png" width="600px"> <h2>abstract</h2> <p> We aim to make “the DNA mag-beads” that 3-dimentional structure can be controlled by DNA and magnetic force on nanoscale.

A DNA mag-bead is a magnetic bead that is attached by 2 kinds of DNA added cvU (Carboxyvinyl uracil) on each hemisphere.

This DNA mag-beads can join together in a straight line by complementary binding

of DNA with cvU attached on both hemispheres of bead. It is also possible to make high precision sheets or 3-dimentional structures by joining strings made from DNA mag-beads.

We can control 3-dimentional structure and localization of magnetic beads by applying a magnetic field from the outside because DNA mag-beads use magnetic beads.

It is possible to break only optional bonding when high frequency is applied to the magnetic beads and beads become at a high temperature. </p> <h2>Movie</h2> <iframe width="560" height="315" src="//www.youtube.com/embed/648IYxbR99U" frameborder="0" allowfullscreen></iframe> </div> </body> </html>