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The Future of Aerogels in Biomedical Applications

Lysaght MJ and O Loughlin JA (2000) Demographic scope and economic magnimde of contemporary organ replacement therapies. ASAIO J 46 515-521 [Pg.694]

Andrade JD and Hlady V (1986) Protein Adsorption and Materials BiocompatibUity - A Tutorial Review and Suggested Hypotheses. Advances in Polymer Science 79 1-63 [Pg.694]

Wu Y and Meyerhoff ME (2008) Nitric oxide-releasing/generating polymers for the development of implantable chemical sensors with enhanced biocompatibiUty. Talanta 75 642-650 [Pg.694]

Burd J, Noetzel V and Tamerius J (1993) Rapid testing of biomaterials for complement activation using in vitro complement immunoassays. 19 Annual Meeting of the Society of Biomaterials, Birmingham, Alabama Maines BH and Brennen CE (2005) Lumped parameter model for computing the minimum pressure during mechanical heart valve closure. J Biomech Eng 127 648-655 [Pg.694]

Venkitachalam SM, Jarrett E, Staggs S, Leventis N, Lu H and Rubenstein DA (2010) BiocompatibUity of surfactant-templated polyurea-nanoencapsulated macroporous silica aerogels with plasma platelets and endothelial cells. J Biomed Mater Res A 92A 1431-1439 [Pg.694]


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