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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 ...Author: Gabriela Voskerician, Matthew S. Shive, Rebecca S. Shawgo, Horst A Von Recum, James M Anderson, Mich...
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.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 ...
http://clifton.mech.northwestern.edu/~me381/project/done/BioMEMS.pdf
for improving the capabilities for these drug delivery systems. Although MEMS devices provided solutions to the problems faced in drug delivery, it also gives rise to several challenges. When working on the micro scale, the mechanics of the system are different then on …
https://www.sciencedirect.com/science/article/pii/S0169409X17302429
Liu, et al. devised a refillable MEMS drug delivery device which consisted of electrodes for actuation, a drug reservoir, and a cannula . Metal electrodes for the actuation were fabricated on a silicon wafer while the 10-mm-long, 10-mm-wide, and 2-mm-thick drug reservoir was fabricated using an SU-8 photoresist.Author: Hyunjoo J. Lee, Nakwon Choi, Nakwon Choi, Eui-Sung Yoon, Il-Joo Cho, Il-Joo Cho
https://www.deepdyve.com/lp/elsevier/biocompatibility-and-biofouling-of-mems-drug-delivery-devices-eob0hqC9OB
May 01, 2003 · 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
https://www.technologyreview.com/s/409122/delivering-drugs-with-mems/
Nov 30, 2007 · An MIT spinoff is finally ready to begin testing smart implants for drug delivery and sensing. ... Delivering Drugs with MEMS. ... decade of working on …
https://saliterman.umn.edu/sites/saliterman.dl.umn.edu/files/general/biocompatibility_fda_and_iso_10993.pdf
Biocompatibility, FDA and ISO 10993 ... Biosensors, integrated smart stents, advanced drug delivery systems, and actuator driven devices in ... et al., Biocompatibility and biofouling of MEMS drug delivery devices. Biomaterials 24(11), 2003 . Steven S. Saliterman Cellular response to implanted materials…
http://jprsolutions.info/newfiles/journal-file-56b3fe45a5e358.79043294.pdf
tion of MEMS for drug delivery through biocapsules, microneedles. MEMS: a new drug delivery system Micropumps and microreservoirs offer a less invasive therapy and improve the quality of life in patients. 4 MEMS MEMS, is the ultimate technology for integration of physical, chemi-cal and biological phenomena that include motion, light, sound, chem-
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