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https://www.sciencedirect.com/science/article/pii/S0142961202005653
The biocompatibility and biofouling of the microfabrication materials for a MEMS drug delivery device have been evaluated. The in vivo inflammatory and wound healing response of MEMS drug delivery component materials, metallic gold, silicon nitride, silicon dioxide, silicon, and SU-8 TM photoresist, were evaluated using the cage implant system. Materials, placed into stainless-steel cages, were …Author: Gabriela Voskerician, Matthew S. Shive, Rebecca S. Shawgo, Horst A Von Recum, James M Anderson, Mich...
https://www.researchgate.net/publication/10874201_Biocompatibility_and_biofouling_of_MEMS_drug_delivery_device
The biocompatibility and biofouling of the microfabrication materials for a MEMS drug delivery device have been evaluated. The in vivo inflammatory and wound healing response of MEMS drug delivery component materials, metallic gold, silicon nitride, silicon dioxide, silicon, and SU-8(TM) photoresist, were evaluated using the cage implant system.
https://www.semanticscholar.org/paper/Biocompatibility-and-biofouling-of-MEMS-drug-Voskerician-Shive/bde87aef04aad3053b3bac15dbc3ff3ab4e61f4d
The biocompatibility and biofouling of the microfabrication materials for a MEMS drug delivery device have been evaluated. The in vivo inflammatory and wound healing response of MEMS drug delivery component materials, metallic gold, silicon nitride, silicon dioxide, silicon, and SU-8(TM) photoresist, were evaluated using the cage implant system.
https://www.academia.edu/13214505/Biocompatibility_and_biofouling_of_MEMS_drug_delivery_devices
Biocompatibility and biofouling of MEMS drug delivery devices
http://clifton.mech.northwestern.edu/~me381/project/done/BioMEMS.pdf
Implantable devices can be actuated such that the drug is released continuously, periodically, or selectively by the doctor or patient. Thus, very complex dosing patterns can be achieved. MEMS devices hold a great deal of promise in the area of transdermal drug delivery techniques as well.
https://www.sciencedirect.com/science/article/pii/S0169409X17302429
Microtechnology or Microelectromechanical Systems (MEMS) is another promising technology for developments of the novel drug delivery systems that overcome the current challenges and accommodate a vast variety of drug delivery applications.Author: Hyunjoo J. Lee, Nakwon Choi, Nakwon Choi, Eui-Sung Yoon, Il-Joo Cho, Il-Joo Cho
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