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Data_Sheet_1_Investigating Tissue Mechanics in vitro Using Untethered Soft Robotic Microdevices.pdf

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https://figshare.com/articles/dataset/Data_Sheet_1_Investigating_Tissue_Mechanics_in_vitro_Using_Untethered_Soft_Robotic_Microdevices_pdf/14235398
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This paper presents the design, fabrication, and operation of a soft robotic compression device that is remotely powered by laser illumination. We combined the rapid and wireless response of hybrid nanomaterials with state-of-the-art microengineering techniques to develop machinery that can apply physiologically relevant mechanical loading. The passive hydrogel structures that constitute the compliant skeleton of the machines were fabricated using single-step in situ polymerization process and directly incorporated around the actuators without further assembly steps. Experimentally validated computational models guided the design of the compression mechanism. We incorporated a cantilever beam to the prototype for life-time monitoring of mechanical properties of cell clusters on optical microscopes. The mechanical and biochemical compatibility of the chosen materials with living cells together with the on-site manufacturing process enable seamless interfacing of soft robotic devices with biological specimen.
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2021-03-18
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