Commit 83f2a7c3 authored by Filippos Tourlomousis's avatar Filippos Tourlomousis
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updated index

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</ul>
<p>
<figure class="figure">
<img src="images/Fig_1_300 DPI.jpg" width="800" height="700"
alt="SEM Micrographs of 2D non-woven solution electrospun meshes and representative stem cell morphologies"/>
<figcaption> Control glass petri dish with representative stem cell morphologies. SEM Micrographs of 2D non-woven solution electrospun meshes and representative stem cell morphologies. Solution electrospun meshes fabricated with varying spinning time (1 min and 3 min). By tuning the spinning time, we can tune fiber density and thus the pore size distribution. </figcaption>
</figure>
</p>
<p>
<figure class="figure">
<img src="images/Fig_2_A_B.jpg" width="800" height="450"
alt="SEM Micrographs of 2D non-woven solution electrospun meshes and representative stem cell morphologies"/>
<figcaption> SEM Micrographs of 3D woven solution electrospun meshes (0-90o porous microarchitecture) and representative stem cell morphologies.</figcaption>
</figure>
</p>
<p>
<figure class="figure">
<img src="images/Fig_2_C_D.jpg" width="815" height="460"
alt="SEM Micrographs of 2D glass petri dishes and 2D non-woven solution electrospun meshes and representative stem cell morphologies"/>
<figcaption> SEM micrographs of 3D woven direct electrowritten meshes (0-45o porous microarchitecture) and representative stem cell morphologies. </figcaption>
</figure>
</p>
<ul>
<li><b>High-resolution Printing of Organic Electronics</b></li>
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