Biomod/2013/Hokkaido: Difference between revisions

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[[Biomod/2013/Hokkaido | <font face="trebuchet ms" style="color:#FFFFFF" size="4"> '''Home''' </font>]] &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
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[["What's "Marimo"?" | <font face="trebuchet ms" style="color:#FFFFFF" size="4"> '''What's Marimo''' </font>]]  
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[["Sponsors" | <font face="trebuchet ms" style="color:#FFFFFF" size="4">'''Sponsors''' </font>]]
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<p>
<p>
Biomolecular motors (kinesin/microtubule(MT)) are regarded as smallest natural machine which can perform work with a high efficiency.<br>
Biomolecular motors (kinesin/microtubule(MT)) are regarded as smallest natural  
Because of these reasons, biomolecular motors are thought to be component of a molecular robot which have small size and high performance.<br>
 
Now we aim at using the MT ring as a rotational nanodevice for molecular robot’s central power generating unit by running micro-sized gear.<br>
machine which can perform work with a high efficiency.<br>
In addition, we make it possible for long time running of the gear by introducing ATP-cyclable gel(MARIMO-Gel).<br>
Because of these reasons, biomolecular motors are thought to be component of a  
Our research will be the method which can practicalize the molecular-robot in future.
 
molecular robot which have small size and high performance.<br>
Now we aim at using the MT ring as a rotational nanodevice for molecular robot’
 
s central power generating unit by running micro-sized gear.<br>
In addition, we make it possible for long time running of the gear by  
 
introducing ATP-cyclable gel(MARIMO-Gel).<br>
Our research will be the method which can practicalize the molecular-robot in  
 
future.
</p>
</p>

Revision as of 22:40, 27 August 2013

Home        What's Marimo        Design
                                      Materials        Diary        People        Sponsors

Welcome to HOKKAIDO-U MARIMOD page

 overview

Biomolecular motors (kinesin/microtubule(MT)) are regarded as smallest natural machine which can perform work with a high efficiency.
Because of these reasons, biomolecular motors are thought to be component of a molecular robot which have small size and high performance.
Now we aim at using the MT ring as a rotational nanodevice for molecular robot’ s central power generating unit by running micro-sized gear.
In addition, we make it possible for long time running of the gear by introducing ATP-cyclable gel(MARIMO-Gel).
Our research will be the method which can practicalize the molecular-robot in future.