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020 _a9783319435770
024 7 _a10.1007/978-3-319-43577-0
_2doi
040 _aES-MaUEC
050 4 _aTP248.2
_b.L48 2016 EB
100 1 _aLetfullin, Renat R.
_9101626
_0Local
245 1 0 _aComputational Nanomedicine and Nanotechnology :
_bLectures with Computer Practicums
_cby Renat R. Letfullin, Thomas F. George
260 _aCham, Switzerland
_bSpringer
_c2016
300 _a1 recurso en línea (XX, 682 p.)
_b104 ilustraciones, 100 ilustraciones en color
336 _aTexto (visual)
_btxt
_2rdacontent
337 _aelectrónico
_bc
_2rdamedia
338 _arecurso electrónico
_bcr
_2rdacarrier
505 0 _a1. Introduction to Nanomedicine -- 2. Introduction to Cancer Cells and Targeting -- 3. Introduction to Cancer Therapy and Detection by Plasmonic Nanoparticles -- 4. Introduction to Light-Particle Interactions
520 _aThis textbook, aimed at advanced undergraduate and graduate students, introduces the basic knowledge required for nanomedicine and nanotechnology, and emphasizes how the combined use of chemistry and light with nanoparticles can serve as treatments and therapies for cancer. This includes nanodevices, nanophototherapies, nanodrug design, and laser heating of nanoparticles and cell organelles. In addition, the book covers the emerging fields of nanophotonics and nanoplasmonics, which deal with nanoscale confinement of radiation and optical interactions on a scale much smaller than the wavelength of the light. The applications of nanophotonics and nanoplasmonics to biomedical research discussed in the book range from optical biosensing to photodynamic therapies. Cutting-edge and reflective of the multidisciplinary nature of nanomedicine, this book effectively combines knowledge and modeling from nanoscience, medicine, biotechnology, physics, optics, engineering, and pharmacy in an easily digestible format. Among the topics covered in-depth are. The structure of cancer cells and their properties, as well as techniques for selective targeting of cancer and gene therapy. Nanoplasmonics: Lorentz-Mie simulations of optical properties of nanoparticles and the use of plasmonic nanoparticles in diagnosis and therapy. Nanophotonics: short and ultrashort laser pulse interactions with nanostructures, time and space simulations of thermal fields in and around the nanobioparticles, and nanoclusters heated by radiation. Modeling of soft and hard biological tissue ablation by activated nanoparticles, as well as optical, thermal, kinetic, and dynamic modeling. Detection techniques, including the design and methods of activation of nanodrugs and plasmon resonance detection techniques. Design and fabrication of nanorobots and nanoparticles. Effective implementation of nanotherapy treatments. Nanoheat transfer, particularly the heating and cooling kinetics of nanoparticles. Each chapter contains a set of lectures in the form of text for student readers and PowerPoints for use by instructors, as well as homework exercises. Selected chapters also contain computer practicums, including Maple codes and worked-out examples. This book helps readers become more knowledgeable and versant in nanomedicine and nanotechnology, inspires readers to work creatively and go beyond the ideas and topics presented within, and is sufficiently comprehensive to be of value to research scientists as well as students
942 _2lcc
_cLE
988 _aEBOOK, EBSPRINGER
650 7 _aBiotecnología
_0comprobar BNE19900991605
_2embne
_9140931
650 7 _aNanotecnología
_0comprobar BNE20011268513
_2embne
_9158453
650 0 7 _aNanomedicina
_2embne
_9445593
700 1 _aGeorge, Thomas F.
_926667
_0comprobar BNE19982482927
856 4 0 _uhttps://go.openathens.net/redirector/universidadeuropea.es?url=https://link.springer.com/book/10.1007/978-3-319-43577-0zAcceso a este recurso digital (usuarios Universidad Europea de Madrid)
901 _ai9783319435770
907 _a.b12981588
_b10-10-17
_c08-03-17
998 _am
_a_alco
_a_vill
_b26-07-17
_cm
_dz
_eu
_feng
_ggw
_h0
945 _aTP248.2 .L48 2016 EB
_g1
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