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|a 0123983703 (electronic bk)
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|a 10.1016/c2011-0-07193-4
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|a eng
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|a 612.028
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|0 (IdRef)052647617
|1 http://www.idref.fr/052647617/id
|a Lanza, Robert Paul
|d (1956-....).
|4 pbd.
|e Directeur de la publication
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|a Principles of tissue engineering
|c edited by Peter Robert P. Lanza,... Robert Langer,... and Joseph Vacanti,....
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|a 4th edition.
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|a Livre électronique. Données textuelles.
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|a [Amsterdam] :
|b Elsevier B. V.,
|c 2013.
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|b txt
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|b ceb
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|a Titre provenant de la page de titre du document numérique.
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|a Version électronique de l'édition de London : Academic Press, 2014.
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|a Accessible sur les plateformes de plusieurs diffuseurs : plateforme Sciencedirect de l'éditeur Elsevier, plateforme Scholarvox de la société Cyberlibris.
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|a L'édition numérique reprenant la mise en forme PDF comporte 1935 p.
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|a Notice rédigée d'après la consultation du 2014-06-02, et modifiée après celle du 2017-03-15.
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|a Réf. bibliogr. en fin de chapitres. Glossaire. Index.
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|a L'accès complet à la ressource est réservé aux usagers des établissements qui en ont fait l'acquisition
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|a Fichier PDF.
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|a Now in its fourth edition, Principles of Tissue Engineering has been the definite resource in the field of tissue engineering for more than a decade. The fourth edition provides an update on this rapidly progressing field, combining the prerequisites for a general understanding of tissue growth and development, the tools and theoretical information needed to design tissues and organs, as well as a presentation by the world's experts of what is currently known about each specific organ system. As in previous editions, this book creates a comprehensive work that strikes a balance among the diversity of subjects that are related to tissue engineering, including biology, chemistry, material science, and engineering, among others, while also emphasizing those research areas that are likely to be of clinical value in the future. This edition includes greatly expanded focus on stem cells, including induced pluripotent stem (iPS) cells, stem cell niches, and blood components from stem cells. This research has already produced applications in disease modeling, toxicity testing, drug development, and clinical therapies. This up-to-date coverage of stem cell biology and other emerging technologies -such as brain-machine interfaces for controlling bionics and neuroprostheses- is complemented by a series of new and updated chapters on recent clinical experience in applying tissue engineering, as well as a new section on the application of tissue-engineering techniques for food production. The result is a comprehensive textbook that will be useful to students and experts alike. Includes new chapters on biomaterial-protein interactions, nanocomposite and three-dimensional scaffolds, skin substitutes, spinal cord, vision enhancement, and heart valvesOffers expanded coverage of adult and embryonic stem cells of the cardiovascular, hematopoietic, musculoskeletal, nervous, and other organ systemsFull-color presentation throughout
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|a Configuration requise sur la plateforme Sciencedirect : navigateur internet pour le format HTML ; lecteur de fichiers PDF pour les déchargements au format PDF ; lecteur de fichier EPUB pour les exports EPUB ; lecteur de fichiers Mobipocket (Kindle) pour les exports Mobipocket. Configuration requise sur la plateforme Scholarvox : navigateur html.
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|b Part 1: The Basis of Growth and Differentiation
|b Part 2: In Vitro Control of Tissue Development
|b Part 3: In Vivo Synthesis of Tissues and Organs
|b Part 4: Biomaterials in Tissue Engineering
|b Part 5: Transplantation of Engineered Cells and Tissues
|b Part 6: Stem Cells
|b Part 7: Gene Therapy
|b Part 8: Breast
|b Part 9: Cardiovascular System
|b Part 10: Endocrinology and Metabolism
|b Part 11: Gastrointestinal System
|b Part 12: Hematopoietic System
|b Part 13: Kidney and Genitourinary System
|b Part 14: Musculoskeletal System
|b Part 15: Nervous System
|b Part 16: Ophthalmic
|b Part 17: Oral/Dental Applications
|b Part 18: Respiratory System
|b Part 19: Skin
|b Part 20: Tissue-Engineered Food
|b Part 21: Clinical Experience
|b Part 22: Regulation, Commercialization and Ethics
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|0 (IdRef)031734758
|1 http://www.idref.fr/031734758/id
|a Cellules animales
|x Biotechnologie.
|2 ram
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|0 (IdRef)027883388
|1 http://www.idref.fr/027883388/id
|a Tissus (histologie)
|x Cultures cellulaires.
|2 ram
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|0 (IdRef)031341330
|1 http://www.idref.fr/031341330/id
|a Transplantation (chirurgie).
|2 ram
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|0 (IdRef)04082375X
|1 http://www.idref.fr/04082375X/id
|a Transplantation cellulaire.
|2 fmesh
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|0 (IdRef)040812235
|1 http://www.idref.fr/040812235/id
|a Transplantation de tissu.
|2 fmesh
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|0 (IdRef)11459418X
|1 http://www.idref.fr/11459418X/id
|a Techniques de culture de tissus.
|2 fmesh
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|0 (IdRef)040670805
|1 http://www.idref.fr/040670805/id
|a Matériaux biocompatibles.
|2 fmesh
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|0 (IdRef)040671062
|1 http://www.idref.fr/040671062/id
|a Génie biomédical.
|2 fmesh
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|0 (IdRef)032896190
|1 http://www.idref.fr/032896190/id
|a Langer, Robert S.
|d (1948-....).
|4 pbd.
|e Directeur de la publication
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|0 (IdRef)117822302
|1 http://www.idref.fr/117822302/id
|a Vacanti, Joseph.
|4 pbd.
|e Directeur de la publication
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