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Biomedical Engineering Fundamentals(CRC,2006)
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Biomedical Engineering Fundamentals (The Electrical Engineering Handbook) Author: Joseph D. Bronzino Publisher: CRC Publication Date: 2006-04-14 Number Of Pages: 1560 Already referred to as the "bible" of biomedical engineering, the third edition of The Biomedical Engineering Handbook is even more vast in its scope and depth than the previous two editions. Ranging from the theoretical to state-of-the-art applications, this edition includes so much new and updated material that it has expanded from two volumes into a three-volume set. The first volume, Biomedical Engineering Fundamentals, builds a strong foundation in the underlying concepts of biomedical engineering. It includes updated coverage of physiologic systems, bioelectric phenomena, biomechanics, biomaterials, physiologic modeling, and ethics. This book also includes a new section on neuroengineering Contents Physiologic Systems An Outline of Cardiovascular Structure and Function Endocrine System Nervous System Vision System Auditory System Gastrointestinal System Respiratory System Physiological Modeling, Simulation, and Control Modeling Strategies and Cardiovascular Dynamics Compartmental Models of Physiologic Systems Cardiovascular Models and Control Respiratory Models and Control Neural Networks for Physiological Control Methods and Tools for Identification of Physiologic Systems Autoregulating Windkessel Dynamics May Cause Low Frequency Oscillations External Control of Movements The Fast Eye Movement Control System A Comparative Approach to Analysis and Modeling of Cardiovascular Function Cardiopulmonary Resuscitation: Biomedical and Biophysical Analyses Bioelectric Phenomena Basic Electrophysiology Volume Conductor Theory The Electrical Conductivity of Tissues Membrane Models Numerical Methods for Bioelectric Field Problems Principles of Electrocardiography Principles of Electromyography Principles of Electroencephlography Biomagnetism Electrical Stimulation of Excitable Systems Neuroengineering History and Overview of Neural Engineering Electrical Stimulation of the Central Nervous System Transcutaneous FES for Ambulation: The Parastep System Comparing Electrodes for Use as Cortical Control Signals: Tiny Tines, Tiny Wires, or Tiny Cones on Wires: Which is Best Development of a Multi-Functional 22-Channel Functional Electrical Stimulator for Paraplegia An Implantable Bionic Network of Injectable Neural Prosthetic Devices: The Future Platform for Functional Electrical Stimulation and Sensing to Restore Movement and Sensation Visual Prostheses Interfering with the Genesis and Propagation of Epileptic Seizures by Neuromodulation Transcranial Magnetic Stimulation of Deep Brain Regions Biomaterials Metallic Biomaterials Ceramic Biomaterials Polymeric Biomaterials Composite Biomaterials Biodegradable Polymeric Biomaterials: An Updated Overview Biologic Biomaterials: Tissue-Derived Biomaterials (Collagen) Soft Tissue Replacements Hard Tissue Replacements Controlling and Assessing Cell-Biomaterial Interactions at the Micro- and Nanoscale: Applications in Tissue Engineering Biomechanics Mechanics of Hard Tissue Musculoskeletal Soft Tissue Mechanics Joint-Articulating Surface Motion Joint Lubrication Analysis of Gait Mechanics of Head/Neck Biomechanics of Chest and Abdomen Impact Cardiac Biomechanics Heart Valve Dynamics Arterial Macrocirculatory Hemodynamics Mechanics of Blood Vessels The Venous System Mechanics, Molecular Transport, and Regulation in the Microcirculation Mechanics and Deformability of Hematocytes Mechanics of Tissue/Lymphatic Transport Modeling in Cellular Biomechanics Cochlear Mechanics Vestibular Mechanics Exercise Physiology Factors Affecting Mechanical Work in Humans Rehabilitation Engineering Rehabilitation Engineering, Science, and Technology Orthopedic Prosthetics and Orthotics in Rehabilitation Wheeled Mobility: Wheelchairs and Personal Transportation Externally Powered and Controlled Orthoses and Prostheses Sensory Augmentation and Substitution Augmentative and Alternative Communication Measurement Tools and Processes in Rehabilitation Engineering Rehabilitation Engineering Technologies: Principles of Application Human Performance Engineering The Elemental Resource Model for Human Performance Measurement of Neuromuscular Performance Capacities Measurement of Sensory-Motor Control Performance Capacities: Tracking Tasks Measurement of Information-Processing Subsystem Performance Capacities High-Level Task Analysis: Cognitive Components Task Analysis and Decomposition: Physical Components Human-Computer Interaction Design Applications of Human Performance Measurements to Clinical Trials to Determine Therapy Effectiveness and Safety Applications of Quantitative Assessment of Human Performance in Occupational Medicine Human Performance Engineering Design and Analysis Tools Human Performance Engineering: Challenges and Prospects for the Future Ethics Beneficence, Nonmaleficence, and Medical Technology Ethical Issues Related to Clinical Research Index Download Details: http://rapidshare.com/files/4374680/BEF.rar chapter 28 http://rapidshare.com/files/4427996/BEF28.rar chapter 38 http://rapidshare.com/files/4428097/BEF38.rar chapter 9 http://rapidshare.com/files/4495360/BEF9.rar ![]() [ Last edited by aoying2008 on 2006-11-24 at 11:24 ] |
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Medical Devices and Systems (The Biomedical Engineering Handbook) Author: Publisher: CRC Publication Date: 2006-04-19 Number Of Pages: 1376 Download Details: http://rapidshare.com/files/4507150/MDS1.rar http://rapidshare.com/files/4502111/MDS2.rar Book Description Already referred to as the "bible" of biomedical engineering, the third edition of The Biomedical Engineering Handbook is even more vast in its scope and depth than the previous two editions. Ranging from the theoretical to state-of-the-art applications, this edition includes so much new and updated material that it has expanded from two volumes into a three-volume set. The author again employs an interdisciplinary approach to the field. The second volume, Medical Devices and Systems has been updated to reflect the most recent advances in both research and practice in all pertinent fields. It authoritatively covers sensor and imaging technologies, signal analysis, medical instrumentation, and much more ![]() |
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