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pro vyhledávání: '"Frewin, Christopher"'
Autor:
Frewin, Christopher L.
Thesis (M.S.E.E.)--University of South Florida, 2006.
Title from PDF of title page. Document formatted into pages; contains 189 pages. Includes bibliographical references.
Title from PDF of title page. Document formatted into pages; contains 189 pages. Includes bibliographical references.
Externí odkaz:
http://purl.fcla.edu/usf/dc/et/SFE0001855
Autor:
Pancrazio, Joseph J. *, ***, Deku, Felix *, Ghazavi, Atefeh *, Stiller, Allison M. *, Rihani, Rashed *, Frewin, Christopher L. *, Varner, Victor D. *, Gardner, Timothy J., Cogan, Stuart F. *
Publikováno v:
In Neuromodulation: Technology at the Neural Interface December 2017 20(8):745-752
Autor:
Charkhkar, Hamid, Frewin, Christopher, Nezafati, Maysam, Knaack, Gretchen L., Peixoto, Nathalia, Saddow, Stephen E., Pancrazio, Joseph J.
Publikováno v:
In Biosensors and Bioelectronics 15 March 2014 53:316-323
Autor:
Feng, Chenyin, Frewin, Christopher L., Rubayat-E Tanjil, Md, Everly, Richard, Bieber, Jay, Kumar, Ashok, Wang, Michael Cai, Saddow, Stephen E.
Publikováno v:
In Silicon Carbide Technology for Advanced Human Healthcare Applications 2022:197-216
Publikováno v:
In Silicon Carbide Technology for Advanced Human Healthcare Applications 2022:125-159
Autor:
Beygi, Mohammad, Dominguez-Viqueira, William, Mumcu, Gokhan, Frewin, Christopher L., La Via, Francesco, Saddow, Stephen E.
Publikováno v:
In Silicon Carbide Technology for Advanced Human Healthcare Applications 2022:161-195
Autor:
Frewin, Christopher L
Publikováno v:
Graduate Theses and Dissertations.
Damage to the central nervous system (CNS) leads to the generation of an immune response which culminates with the encapsulation of the damaged area. The encapsulation, known as a glial scar, essentially breaks neural signal pathways and blocks signa
Autor:
Frewin, Christopher L
Publikováno v:
Graduate Theses and Dissertations.
Silicon carbide, SiC, is a semiconductor material which has many diverse uses in many of today's leading technologies. The wide band-gap aspect of the material has been utilized to create power and high frequency electronics, its physical hardness en
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Akademický článek
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