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Titlebook: Cellular and Biomolecular Mechanics and Mechanobiology; Amit Gefen Book 2011 Springer-Verlag Berlin Heidelberg 2011 Biorheology.Cell defor

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Amit GefenShows new insights how cells produce and respond to mechanical loads.Provides a better understanding of the mechanical function of cells, and its relevance to their biological function.Describes the f
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Studies in Mechanobiology, Tissue Engineering and Biomaterialshttp://image.papertrans.cn/c/image/223079.jpg
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Cellular and Biomolecular Mechanics and Mechanobiology978-3-642-14218-5Series ISSN 1868-2006 Series E-ISSN 1868-2014
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Sumit Sen,Suman Somavarapu,N. L. Sarda understand the intrinsically coupled mechanobiology of the cell and describe its macroscopic response to externally applied stresses. This indeed is both a challenge and an excellent research opportunity. This chapter reviews the latest advancements in this field by bringing together the recent exp
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https://doi.org/10.1007/978-3-540-75474-9ward during spreading and stabilize cell shape in adherent and migrating cells. A balance of intracellular force with exogenous forces is required for maintenance of basic cell functions and cellular homeostasis. Here, we provide a multi-scale overview of the cellular machinery and intracellular for
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Orthopedic Traumatology - A Resident‘s Guideies of living matter. Recent successes in sequencing the genome have revived interest the generation of physical shape, or morphogenesis, the physical properties of living matter, and how biological and biophysical processes shape that living matter during development. One of the goals of modern dev
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Common Orthopaedic Emergencies, exposed to fluid flow. The process by which flow-induced mechanical loads are sensed by these cells and transduced into a biochemical signal is mostly unknown. The primary cilium is a rod-like, microtubule-based structure that projects from the cell surface into the extracellular environment. By po
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Principles of Fracture Fixation,ontacting shear, specifically in the reorganization of the cytoskeletal actin fibrils, is not yet fully understood. Many techniques such as atomic force microscopy and micro-pipette aspiration are currently used to deform or stress cells in a controlled way. Assessments are typically measured change
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