Biomedical engineering fundamentals /
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Format: | Book |
Language: | English |
Published: |
Boca Raton :
CRC/Taylor & Francis,
2006
Boca Raton : c2006 |
Series: | The electrical engineering handbook series
Electrical engineering handbook series |
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245 | 0 | 0 | |a Biomedical engineering fundamentals / |c edited by Joseph D. Bronzino |
260 | |a Boca Raton : |b CRC/Taylor & Francis, |c 2006 | ||
260 | |a Boca Raton : |b CRC/Taylor & Francis, |c c2006 | ||
300 | |a 1 v. (various pagings) : |b ill. (some col.) ; |c 27 cm | ||
440 | 4 | |a The electrical engineering handbook series | |
490 | 1 | |a Electrical engineering handbook series | |
500 | |a First volume of the 3rd ed. of The biomedical engineering handbook | ||
504 | |a Includes bibliographical references and index | ||
505 | 0 | |a Sect. I. Physiologic systems. An outline of cardiovascular structure and function -- Endocrine system -- Nervous system -- Vision system -- Auditory system -- Gastrointestinal system -- Respiratory system -- sect. II. 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 -- sect. III. Bioelectric phenomena. Basic electrophysiology -- Volume conductor theory -- The electrical conductivity of tissues -- Membrane models -- Computaitonal methods and software for bioelectric field problems -- Principles of electrocardiography -- Principles of electromyography -- Principles of electroencephalography -- Biomagnetism -- Electrical stimulation of excitable systems -- sect. IV. 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 -- sect. V. 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 -- sect. VI. 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 -- sect. VII. 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 -- sect. VIII. 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 -- sect. IX. Ethics. Beneficence, nonmaleficence, and medical technology -- Ethical issues related to clinical research | |
650 | 0 | |a Biomedical engineering | |
650 | 2 | |a Biomedical Technology | |
650 | 7 | |a Biomedical engineering |2 fast | |
700 | 1 | |a Bronzino, Joseph D., |d 1937- |0 http://viaf.org/viaf/11003025 | |
700 | 1 | |a Bronzino, Joseph D., |d 1937- | |
730 | 0 | |a Biomedical engineering handbook | |
830 | 0 | |a Electrical engineering handbook series | |
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