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OverviewThe human genome of three billion letters has been sequenced. So have the genomes of thousands of other organisms. With unprecedented resolution, modern technologies are allowing us to peek into the world of genes, biomolecules, and cells - and flooding us with data of immense complexity that we are just barely beginning to understand. A huge gap separates our knowledge of the components of a cell and what is known from our observations of its physiology. The authors have written this graduate textbook to explore what has been done to close this gap of understanding between the realms of molecules and biological processes. They have gathered together illustrative mechanisms and models of gene regulatory networks, DNA replication, the cell cycle, cell death, differentiation, cell senescence, and the abnormal state of cancer cells. The mechanisms are biomolecular in detail, and the models are mathematical in nature. The interdisciplinary presentation will be of interest to both biologists and mathematicians, and every discipline in between. Full Product DetailsAuthor: Baltazar Aguda (, Visiting Associate Professor, The Ohio State University) , Avner Friedman (Director, Mathematical Biosciences Institute, The Ohio State University) , Visiting Associate Professor, The Ohio State UniversityPublisher: Oxford University Press Imprint: Oxford University Press Dimensions: Width: 17.60cm , Height: 1.50cm , Length: 25.40cm Weight: 0.562kg ISBN: 9780198570912ISBN 10: 0198570910 Pages: 200 Publication Date: 31 July 2008 Audience: College/higher education , Postgraduate, Research & Scholarly Format: Hardback Publisher's Status: Active Availability: To order ![]() Stock availability from the supplier is unknown. We will order it for you and ship this item to you once it is received by us. Table of Contents1: General Introduction 2: From Molecules to a Living Cell 3: Mathematical and Computational Modeling Tools 4: Gene regulatory networks: from DNA to metabolites and back 5: Control of DNA replication in a prokaryote 6: The Eukaryotic Cell Cycle Engine 7: Cell Cycle Control 8: Cell Death 9: Cell Differentiation 10: Cell Aging and Renewal 11: Multiscale Modeling of CancerReviewsAuthor InformationBaltazar Aguda is currently associate professor of Genetics & Genomics at the Boston University School of Medicine. He holds joint appointments in Biomedical Engineering, in the Bioinformatics & Systems Biology program at Boston University, and a membership in the Center for Biodynamics in the same university. Recently, he was appointed member of the National Science Foundation's (NSF, USA) research proposal review panel in molecular & cellular biosciences (2004-7). He was a visiting faculty at the Mathematical Biosciences Institute at Ohio State University (2003), at the Weizmann Institute of Science in Israel (2000), and a visiting associate at the California Institute of Technology (2000-2001). Dr. Aguda obtained his PhD in Chemistry (Chemical Physics Program) from the University of Alberta in Canada (1986), and was a tenured faculty member of the Department of Chemistry & Biochemistry at Laurentian University in Canada (1994-2002) before moving to Boston. Avner Friedman is a Distinguished Professor of Mathematics and Physical Sciences at the Ohio State University, where he also serves as the Director of the Mathematical Biosciences Institute. He received his Ph.D. degree in 1956 from the Hebrew University. He was Professor of Mathematics at Northwestern University (1962-1985), and a Duncan Distinguished Professor of Mathematics at Purdue University (1985-1987). Tab Content 6Author Website:Countries AvailableAll regions |