Difference between revisions of "Template:TU Darmstadt/Flowchartb"

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               sodipodi:role="line">of chitosan and the modern detection</tspan><tspan
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               sodipodi:role="line">of chitosan and the novel detection</tspan><tspan
 
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               sodipodi:role="line">resolution of up to 10µm including</tspan><tspan
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               sodipodi:role="line">resolution of up to 10 µm including</tspan><tspan
 
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               sodipodi:role="line">to see our E. coli cells during the production process</tspan><tspan
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               sodipodi:role="line">to see our <tspan style="font-style:italic;">E. coli</tspan> cells during the production process</tspan><tspan
 
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Revision as of 13:36, 31 October 2017

image/svg+xml 6. Hydrogel:To use the wound healing supportive properties of chitosan,we manufactured non-toxic, low-cost hydrogels, containingdefined chitosans for usage in wound care.Visit the subpage! 9. CloneCademy:In order to share the knowledge aboutsynthetic biology and the achievementsof our project, we developed a web-basedinteractive learning platform calledCloneCademy. This education tool makesit possible for other iGEM teams to sharetheir ideas with society.Visit the subpage! 7. Solution:By combining the physiological propertiesof chitosan and the novel detectionsystem for wound infections in a hydrogelbandaid, we realized next generation wound care. Furthermore, we successfullyproved all milestones of our project.Visit the subpage! 8. Tech:We constructed a low costdigital inline holographic microscope (DIHM) with aresolution of up to 10 µm includinga software solution. This makes it possible for usto see our E. coli cells during the production processof chitosan. The reconstruction of our microscope is executed with the open source Holopy package.Visit the subpage!