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c Pressure sensors made with MEMS technology and electronic components providing signal conditioning, power management and radio frequency transmission are encapsulated in glass encapsulation devices (Reproduced with permission from Ref. [53], Copyright © 2012 by the American Society for Artificial Internal Organs) Fig. 9 a Pictures of devices implanted in the left ventricular apex.
We report a simple and universal approach to fabricate robust, hydrogel-based, nanofiber-enabled encapsulation devices (NEEDs) with macroscopic dimensions.
Microfabricated inorganic encapsulation devices may provide biocompatibility, in vivo chemical and mechanical stability, tailored pore geometries, and superior immunoisolation for encapsulated cells over conventional encapsulation approaches.
Improvement of long-term drug release and design of mechanically more stable encapsulation devices are still major challenges in the field of cell encapsulation.
In the present work, we have optimized the macromolecular architecture and functionality of the precursors for allowing the use of the tandem process in encapsulation devices designed for calcium alginate.
The novel method has widely potential applications in the field of MEMS, such as reconstructing the internal profile of encapsulation devices and analyzing the quality evaluation of bonding interface based on semiconductor materials.
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Another study was conducted using a diffusion chamber with a bi-laminar encapsulation device implanted within streptozotocin (STZ -induced diabetic ratSTZ -induced
Microgels of varying dimensions were formed using either a hand-held syringe or a vibrating nozzle encapsulation device with different nozzle sizes.
To address this issue, we used a newly developed cell encapsulation device to study the functional consequence of the foreign body response on soluble factor delivery from fibroblasts transplanted into adult brain tissue.
Encapsulation device designs are being optimized alongside the development of clinically viable, replenishable, insulin-producing stem cells, for the first time creating the possibility of widespread therapeutic use of this technology.
To acquire a better understanding of dosing, implant mechanism of action, and how certain cell types affect remodeling of central nervous system (CNS) tissue, a refillable cell encapsulation device was developed for introducing cells into the brain while keeping them physically isolated from contact with brain tissue with a semipermeable membrane.
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