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Titlebook: Biomechanics of the Human Stomach; Roustem N. Miftahof Book 2017 Springer International Publishing AG 2017 Human stomach.Biomechanics.Math

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Parameterization of Shells of Complex Geometry,ible. Almost all numerical methods, on the other hand, are based on discretization of the computational domain and as such may appear to be secluded from the problem. However, computational algorithms are most efficient and accurate only when they operate in regular, canonical domains and become com
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Nonlinear Theory of Thin Shells,n shell be associated with the orthogonal curvilinear coordinates .., ... The position vector . of an arbitrary point .. on the equidistant surface .. (..∥.) is given by Eq. (1.39), where . ∈ [–./2, +./2] and . is the thickness of the shell. The coordinate vectors and the Lamé coefficients satisfy E
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Continuum Model of the Biological Tissue,nships among the stresses and deformations, their rates, temperature and structural changes of constructive materials, e.g. the tissue that forms the wall of a biological shell. The complete theoretical formulation is best achieved with application of the principles of thermodynamics supported by ex
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Intrinsic Regulatory and Effector Systems,nglia is generated. Different subtypes of ganglionic cells, based on a combination of their morphology, neurochemical coding, electrophysiological responses, connections, projections and function are identified in the enteric nervous system. Morphofunctional and projectile classification reflects on
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Pharmacology of Gastric Dysmotility,chanisms of drug action. It should involve a multilevel conceptual framework which would allow the integration and variation of parameters and constants within the biological system with high precision. Systems computational biology approach, as a thorough, quantitative and qualitative, interrogatio
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A Model of the SIP/Ganglion Unit,To understand biological phenomena that underlie complex processes like peristalsis, gastroparesis, myenteric neuropathy, gastric arrhythmia, etc we begin with analysis of the basic myoelectrical phenomena.
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Dysmotility of the Human Stomach, and manometrically confirmed abnormal motility and pathologically documented neuromusclular disease. Nosologically these range from loco-regional: achalasia, gastro-esophageal reflux disease, gastroparesis, colonic pseudo-obstruction and Hirschprung’s disease, to panenteric conditions such as funct
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Prokinetics in Treatment of Gastric Motility Disorders, and Parkinson’s diseases to name a few have the common manifestation of altered gastric movements in the form of either atony, hypo- or hypermotility. These are a result of pathological changes in the anatomical structure of the organ, the central and myenteric nervous system, interstitial cells of
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