000 03041cam a2200325 i 4500
999 _c30805
_d30805
003 CUTN
005 20190906131756.0
008 170720s2017 nyu b 001 0 eng
020 _a9781108415156 (hardback : alk. paper)
041 _aEnglish
042 _apcc
060 1 0 _aQT 37
082 0 0 _a610.28
_223
_bBAS
100 1 _aBasu, Bikramjit,
245 1 0 _aBiomaterials science and tissue engineering :
_bprinciples and methods /
_cBikramjit Basu.
260 _aCambridge, United Kingdom ; New York, NY, USA :
_bCambridge University Press,
_c2017. ©2017
300 _axxv, 696 pages ;
_c25 cm.
440 _aCambridge - IISc series.
505 0 _aMaterials for biomedical applications -- Tissue engineering scaffolds : principles and properties -- Conventional and advanced manufacturing of biomaterials -- Probing structure of materials at multiple length scales -- Mechanical properties : principles and assessment -- Cells, proteins and nucleic acids : structure and properties -- Cell-material interaction and biocompatibility -- Probing cell response, in vitro -- Bacterial growth and biofilm formation -- Probing tissue response, in vivo -- Case study : corrosion and wear of selected Ti-alloys -- Case study : calcium phosphate-mullite composites -- Case study : compression moulded HDPE-based hybrid biocomposites -- Case study : phase stability, bactericidal and cytocompatibility of HA-Ag -- Case study : HA-CaTiO3 based multifunctional composites -- Case study : compatibility of neuronal/cardiac cells with patterned substrates -- Perspectives.
_tMaterials for biomedical applications --
_tTissue engineering scaffolds : principles and properties --
_tConventional and advanced manufacturing of biomaterials --
_tProbing structure of materials at multiple length scales --
_tMechanical properties : principles and assessment --
_tCells, proteins and nucleic acids : structure and properties --
_tCell-material interaction and biocompatibility --
_tProbing cell response, in vitro --
_tBacterial growth and biofilm formation --
_tProbing tissue response, in vivo --
_tCase study : corrosion and wear of selected Ti-alloys --
_tCase study : calcium phosphate-mullite composites --
_tCase study : compression moulded HDPE-based hybrid biocomposites --
_tCase study : phase stability, bactericidal and cytocompatibility of HA-Ag --
_tCase study : HA-CaTiO3 based multifunctional composites --
_tCase study : compatibility of neuronal/cardiac cells with patterned substrates --
520 _a"Provides an encyclopedic coverage of biomaterials science which, at the same time, has enough to interest the biomedical scientists and engineers"--
650 1 2 _aBiocompatible Materials
650 2 2 _aTissue Engineering
650 2 2 _aMolecular Probe Techniques
942 _2ddc
_cBOOKS
100 1 _eauthor.
504 _aIncludes bibliographical references and index.
650 2 2 _xmethods
906 _a7
_bcbc
_corignew
_d1
_eecip
_f20
_gy-gencatlg