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Occupational therapy --- Models, Theoretical --- Occupational Therapy
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Nursing models --- Nursing models --- Models, Theoretical --- Nursing --- Evaluation
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Biomechanics. --- Biomecànica --- Organs (Anatomy) --- Tissues --- Biomechanical Phenomena --- Models, Theoretical --- Computer simulation.
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Psychophysics and Experimental Phenomenology of Pattern Cognition examines the cognitive transformations that underly this cognitive system, and the specialized subsystems for processing these transformations. Sections cover symmetry cognition, contour perception, and geometric illusion. Weight sensation is also discussed, as are repetitive and dot patterns. Incorporating the fields of psychophysics and experimental phenomenology, pattern cognition is examined from both the physical and mental sensory perspective, providing a comprehensive view of this cognitive system. Examines the cognitive transformations underlying pattern cognition, and the specialized subsystems for processing transformations Provides an interdisciplinary psychophysics and experimental phenomenology perspective Features sections on cover symmetry cognition, contour perception, and geometric illusion Describes weight sensation, and repetitive and dot patterns.
Psychology, Experimental. --- Experimental psychology --- Psychology --- Experimental psychologists --- Research --- Experiments --- Psychophysics. --- Physics --- Psychophysiology --- Psychophysics --- Pattern Recognition, Visual --- Models, Theoretical --- Mathematics. --- methods
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Myocardial infarction --- Depression, Mental. --- Complications. --- R (Computer program language) --- Mathematical models. --- Myocardial Infarction --- Continuity of Patient Care --- Models, Theoretical
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Biomechanics of the Spine encompasses the basics of spine biomechanics, spinal tissues, spinal disorders and treatment methods. Organized into four parts, the first chapters explore the functional anatomy of the spine, with special emphasis on aspects which are biomechanically relevant and quite often neglected in clinical literature. The second part describes the mechanics of the individual spinal tissues, along with commonly used testing set-ups and the constitutive models used to represent them in mathematical studies. The third part covers in detail the current methods which are used in spine research: experimental testing, numerical simulation and in vivo studies (imaging and motion analysis). The last part covers the biomechanical aspects of spinal pathologies and their surgical treatment. This valuable reference is ideal for bioengineers who are involved in spine biomechanics, and spinal surgeons who are looking to broaden their biomechanical knowledge base. The contributors to this book are from the leading institutions in the world that are researching spine biomechanics.
Spine --- Biomechanical Phenomena. --- Spine. --- Mechanical properties. --- Diseases. --- Spinal Diseases. --- Spinal Injuries. --- Models, Theoretical. --- Dos --- Biomécanique. --- physiology. --- Physiologie. --- Maladies. --- Blessures.
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Nursing Theory --- periodicals. --- Nursing --- Nursing. --- Nursing Theory. --- Models, Theoretical. --- Philosophy --- Philosophy. --- Experimental Model --- Experimental Models --- Mathematical Model --- Model, Experimental --- Models (Theoretical) --- Models, Experimental --- Models, Theoretic --- Theoretical Study --- Mathematical Models --- Model (Theoretical) --- Model, Mathematical --- Model, Theoretical --- Models, Mathematical --- Studies, Theoretical --- Study, Theoretical --- Theoretical Model --- Theoretical Models --- Theoretical Studies --- Theory, Nursing --- Nursing Theories --- Theories, Nursing --- Clinical nursing --- Nurses and nursing --- Nursing process --- Computer Simulation --- Systems Theory --- Care of the sick --- Medicine --- Models, Theoretical --- Nursings --- Soins infirmiers --- Modèles de soins infirmiers --- Philosophie
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Nursing ethics. --- Decision Making --- Ethics, Nursing. --- Models, Theoretical. --- nurses' instruction. --- Nursing ethics --- Nurses --- Nursing --- Professional ethics --- Medical ethics --- Moral and ethical aspects
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In Silico Approach Towards Magnetic Fluid Hyperthermia in Cancer Treatment: Modeling and Simulation presents mathematical modeling and simulation approaches contrary to costly and time consuming in-vivo and in-vitro studies. Finite element method-based models of all hyperthermia processes of liver, brain and breast tumors are simulated on COMSOL Multiphysics software. Problems of constant versus variable heat sources, the backflow problem, the enhanced permeation and retention effect, the flow around Happel's sphere in cells model structure, the deformation effect in poroelastic brain tumor, 3D flow through porous tissue, the reacting nanofluid flows, and optimization of parameters have been simulated for quantitative analysis. This important reference aids in hyperthermia treatment planning in clinical applications and provides an important compendium for practitioners as well as non-medical practicing scientists and engineers and is resource for both research and medical practice in hyperthermia treatment planning in clinical applications. Includes the diversities of cancer treatment modalities for their eradication with minimum damage to surrounding normal tissue Addresses tumors of different organs including liver, brain and breast Deals with mathematical modeling and simulation approaches contrary to costly and time consuming in-vivo and in-vitro studies Provides insights on how to use hyperthermia in cancer treatments in addition to other conventional types of treatments.
Cancer --- Thermotherapy. --- Heat therapy --- Heat --- Physiological effect. --- Heat stress (Biology) --- High temperatures --- Hyperthermia --- Physiological effect --- Computer Simulation --- Models, Theoretical --- Hyperthermia, Induced --- Neoplasms --- Thermotherapy --- Mathematical models.
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Numerical PDE Analysis of Retinal Neovascularization Mathematical Model Computer Implementation in R provides a methodology for the analysis of neovascularization (formation of blood capillaries) in the retina. It describes the starting point-a system of three partial differential equations (PDEs)-that define the evolution of (1) capillary tip density, (2) blood capillary density and (3) concentration of vascular endothelial growth factor (VEGF) in the retina as a function of space (distance along the retina), x, and time, t, the three PDE dependent variables for (1), (2) and (3), and designated as u1(x, t), u2(x, t), u3(x, t), amongst other topics.--
Differential equations, Partial. --- Neovascularization --- Retina --- R (Computer program language) --- Retinal Neovascularization. --- Models, Theoretical. --- Computer Simulation. --- Mathematical Computing. --- Mathematical models. --- Blood-vessels.
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