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020 _a9781493920952
024 7 _a10.1007/978-1-4939-2095-2
_2doi
040 _cES-MaUEC
050 4 _aQP91
_b.C674 2014
082 0 4 _a610
100 1 _aCorey, Seth Joel
_eeditor.
_0Local
_986835
245 1 2 _aA Systems Biology Approach to Blood
_cedited by Seth Joel Corey, Marek Kimmel, Joshua N. Leonard.
260 _aNew York
_bSpringer
_c2014
300 _a1 recurso en línea (IX, 403 p.)
_b73 ilustraciones, 52 ilustraciones en color
336 _aTexto (visual)
_btxt
_2rdacontent
337 _aelectrónico
_bc
_2rdamedia
338 _arecurso electrónico
_bcr
_2rdacarrier
490 1 _aAdvances in Experimental Medicine and Biology
_x0065-2598
_v844
505 0 _aPart I: Basic Components -- Systems Hematology:Â{u006E} Introduction -- Quantification and Modeling of Stem Cell - Niche Interaction -- Angiogenesis: A Systems Biology View of Blood Vessel Remodeling -- Erythropoiesis: From Molecular Pathways to System Properties -- Systems Biology of Megakaryocytes -- Systems Biology of Platelet-Vessel Wall Interactions -- Systems Approach to Phagoycte Production and Activation: Neutrophils and Monocytes -- Part II: Physiological Processes -- Stochasticity and Determinism in Models of Hematopoiesis -- Systems Analysis of Highâ€{u4A32}oughput Data -- Developing a Systems-Based Understanding of Hematopoietic Stem Cell Cycle Control -- A Systems Biology Approach to Iron Metabolism -- Innate Immunity in Disease - Insights from Mathematical Modeling and Analysis -- Modeling Biomolecular Site Dynamics in Immunoreceptor Signaling Systems -- Structure and Function of Platelet Receptors Initiating Blood Clotting -- Part III: Clinical Applications -- Understanding and Treating Cytopenia through Mathematical Modeling -- Drug Resistance -- Etiology and Treatment of Hematological Neoplasms: Stochastic Mathematical Models -- Assessing Hematopoietic (Stem-) Cell Behavior during Regenerative Pressure -- Engineered Cell-Based Therapies: A Vanguard of Design-Driven Medicine -- Part IV: Epilogue -- A Systems Approach to Blood Disorders -- Index.
520 _aThe blood system is multi-scale, from the organism to the organs to cells to intracellular signaling pathways to macromolecule interactions. Blood consists of circulating cells, cellular fragments (platelets and microparticles), and plasma macromolecules.Â{u2B2F}ood cells and their fragments result from a highly-ordered process, hematopoiesis. Definitive hematopoiesis occurs in the bone marrow, where pluripotential stem cells give rise to multiple lineages of highly specialized cells.Â{u8A67}ghly-productive and continuously regenerative, hematopoiesis requires a microenvironment of mesenchymal cells and blood vessels. A Systems Biology Approach to Blood is divided into three main sections: basic components, physiological processes, and clinical applications. Using blood as a window, one can study health and disease through this unique tool box with reactive biological fluids that mirrors the prevailing hemodynamics of the vessel walls and the various blood cell types. Many blood diseases, rare and common can and have been exploited using systems biology approaches with successful results and therefore ideal models for systems medicine.Â{uDBF2}re importantly, hematopoiesis offers one of the best studied systems with insight into stem cell biology, cellular interaction, development; linage programing and reprograming that are every day influenced by the most mature and understood regulatory networks.
650 2 7 _aHematología
_2embne
_9140122
650 7 _aSistemas biológicos
_2embne
_9403517
700 1 _aKimmel, Marek
_eeditor literario
_986836
_0Local
700 1 _aLeonard, Joshua N.
_eeditor literario
_0Local
_986837
710 2 _aSpringerLink (Online service)
_0Local
_9106996
830 0 _aAdvances in Experimental Medicine and Biology
_x0065-2598
_v844
_9133153
856 4 0 _uhttps://go.openathens.net/redirector/universidadeuropea.es?url=https://link.springer.com/book/10.1007/978-1-4939-2095-2
_zAcceso a este recurso digital (usuarios Universidad Europea de Madrid)
907 _a.b12843428
_b10-10-17
_c23-02-15
942 _2lcc
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945 _aQP91 .C674 2014 EB
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