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rheometry and microfluidic flow cells will provide insight into DCH processability for injectable biomaterial design. The doctoral student will work in close collaboration with and be supported by
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composed of a highly interdisciplinary and international team of motivated researchers. To expand on our ability to engineer viscoelastic biomaterials and deploy them as tailorable 3D cell culture platforms
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studies of non-linear flow behavior using shear rheometry and microfluidic flow cells will provide insight into DCH processability for injectable biomaterial design. The doctoral student will work in close
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international team of motivated researchers. To expand on our ability to engineer viscoelastic biomaterials and deploy them as tailorable 3D cell culture platforms for mechanobiology and tissue repair, we