19 research outputs found

    Low-power, low-pressure reactive-ion etching process for silicon etching with vertical and smooth walls for mechanobiology application

    No full text
    10.1117/1.JMM.16.3.034501Journal of Micro/ Nanolithography, MEMS, and MOEMS1633450

    Next Generation of Electrosprayed Fibers for Tissue Regeneration

    No full text
    Electrospinning is a widely established polymer-processing technology that allows generation of fibers (in nanometer to micrometer size) that can be collected to form nonwoven structures. By choosing suitable process parameters and appropriate solvent systems, fiber size can be controlled. Since the technology allows the possibility of tailoring the mechanical properties and biological properties, there has been a significant effort to adapt the technology in tissue regeneration and drug delivery. This review focuses on recent developments in adapting this technology for tissue regeneration applications. In particular, different configurations of nozzles and collector plates are summarized from the view of cell seeding and distribution. Further developments in obtaining thick layers of tissues and thin layered membranes are discussed. Recent advances in porous structure spatial architecture parameters such as pore size, fiber size, fiber stiffness, and matrix turnover are summarized. In addition, possibility of developing simple three-dimensional models using electrosprayed fibers that can be utilized in routine cell culture studies is described
    corecore