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020 _a9783319293288
040 _aES-MaUEC
050 4 _aR856.3
_bM537 2016
082 0 4 _a610.28
245 1 0 _aMicrosystems for Enhanced Control of Cell Behavior :
_bFundamentals, Design and Manufacturing Strategies, Applications and Challenges
_cedited by Andrés Díaz Lantada
250 _a1st ed.
260 _aCham
_bSpringer International Publishing
_c2016
300 _a1 recurso en línea (XVII, 454 páginas)
_b175 ilustraciones
336 _aTexto
_btxt
_2rdacontent
337 _aelectrónico
_bc
_2rdamedia
338 _arecurso electrónico
_bcr
_2rdacarrier
490 0 _aStudies in Mechanobiology, Tissue Engineering and Biomaterials
_x1868-2006
_v18
505 0 _aSome introductory notes to cell behavior -- Brief introduction to the field of biomedical microsystems -- Brief introduction to bio-microsystems for interacting with cells -- Common bioengineering resources for interacting with cells -- Methodologies for the development of bio-microsystems -- Addressing the complexity of biomaterials by biomimetic CAD -- Multi-scale and multi-physical/biochemical modeling in bio-MEMS -- Rapid prototyping of bio-MEMS for interacting with cells -- Nanomanufacturing for biomedical MEMS -- Issues linked to the mass-production of biomedical microsystems -- Biomedical microsystems for disease management -- Overview of microsystems for studying cell behavior under culture -- Microsystems for studying cell adhesion, dynamics and and overall mechanobiology -- Smart microsystems for active cell culture toward relevant tissues -- Tissue engineering scaffolds for 3D cell culture -- Tissue engineering scaffolds for bone repair: General aspects -- Tissue engineering scaffolds for bone repair: Dental repair -- Tissue engineering scaffolds for repairing soft tissues -- Tissue engineering scaffolds for osteochondral repair -- From labs-on-chips to microfluidic cell culture -- Cell-based sensors and cell-based actuators -- Towards reliable organs-on-chips and humans-on-chips -- Towards effective and efficient biofabrication technologies -- Project-based learning in the field of biomedical microsystems -- Annexes.
520 3 _aThis handbook focuses on the entire development process of biomedical microsystems that promote special interactions with cells. Fundamentals of cell biology and mechanobiology are described as necessary preparatory input for design tasks. Advanced design, simulation, and micro/nanomanufacturing resources, whose combined use enables the development of biomedical microsystems capable of interacting at a cellular level, are covered in depth. A detailed series of chapters is then devoted to applications based on microsystems that offer enhanced cellular control, including microfluidic devices for diagnosis and therapy, cell-based sensors and actuators (smart biodevices), microstructured prostheses for improvement of biocompatibility, microstructured and microtextured cell culture matrices for promotion of cell growth and differentiation, electrophoretic microsystems for study of cell mechanics, microstructured and microtextured biodevices for study of cell adhesion and dynamics, and biomimetic microsystems (including organs-on-chips), among others. Challenges relating to the development of reliable in vitro biomimetic microsystems, the design and manufacture of complex geometries, and biofabrication are also discussed.
710 2 _aSpringerLink (Online service)
_0Local
_9106996
942 _2lcc
_cLE
988 _aEBOOK, asignarmaterias , EBSPRINGER
650 0 7 _aCitología
_0
_2embne
_9139477
650 7 _aNanotecnología
_0comprobar BNE20011268513
_2embne
_9158453
700 1 _aDíaz Lantada, Andrés.
_eeditor literario
_943649
856 4 0 _uhttps://go.openathens.net/redirector/universidadeuropea.es?url=https://link.springer.com/book/10.1007/978-3-319-29328-8
_zAcceso a este recurso digital (usuarios Universidad Europea de Madrid)
901 _ai9783319293288
907 _a.b12948378
_b10-10-17
_c21-11-16
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