Characterization of Glassy Polymeric Carbon as Biomaterial for Mechanical Cardic Valves (2000)
- Authors:
- Autor USP: ZIMMERMAN, ROBERT LEE - FFCLRP
- Unidade: FFCLRP
- Subjects: BIOENGENHARIA; CARDIOLOGIA
- Language: Inglês
- Imprenta:
- Conference titles: World Congresson Medical Physics and Biomedical Engeneering
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ABNT
RODRIGUES, M. e ZIMMERMAN, Robert Lee e ILA, D. Characterization of Glassy Polymeric Carbon as Biomaterial for Mechanical Cardic Valves. 2000, Anais.. Chicago: Faculdade de Filosofia, Ciências e Letras de Ribeirão Preto, Universidade de São Paulo, 2000. . Acesso em: 04 ago. 2025. -
APA
Rodrigues, M., Zimmerman, R. L., & Ila, D. (2000). Characterization of Glassy Polymeric Carbon as Biomaterial for Mechanical Cardic Valves. In . Chicago: Faculdade de Filosofia, Ciências e Letras de Ribeirão Preto, Universidade de São Paulo. -
NLM
Rodrigues M, Zimmerman RL, Ila D. Characterization of Glassy Polymeric Carbon as Biomaterial for Mechanical Cardic Valves. 2000 ;[citado 2025 ago. 04 ] -
Vancouver
Rodrigues M, Zimmerman RL, Ila D. Characterization of Glassy Polymeric Carbon as Biomaterial for Mechanical Cardic Valves. 2000 ;[citado 2025 ago. 04 ] - Atom force microscopy characterization of treated surface glassy polymeric carbon
- Surface modification of glassy polymeric carbon by glow discharge
- Chameling in 'LI''NB''O IND.3': 'FE' modulated by holographic stress field superlattice
- Ion beam promoted lithium absorption in glassy polymetric carbon
- Mev ion beam induced index of refraction changes il layered 'GA''AS' / ai'GA''AS' waveguides
- Storage of lithium salts in carbon
- Maximum heating rates for producing undistorted glassy carbon ware determined by wedge-shaped samples
- Medidas viscoelasticas in vivo do olho humano
- Detector fotoacustico para luz sincrotronica
- Regenerative chaotic dynamics in josephson junction circuit
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