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Electrical Stimulation Research Techniques
  • Language: en
  • Pages: 387

Electrical Stimulation Research Techniques

  • Type: Book
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  • Published: 2013-07-10
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  • Publisher: Elsevier

Methods in Psychological Physiology, Volume 3: Electrical Stimulation Research Techniques is a compilation of papers that focus on the different theories and techniques of electrical stimulation and its applications to psychology. The first five chapters cover different kinds of electrical stimulation, their basic principles, and techniques involved. These include extracellular and intracellular stimulation, the microstimulation technique, and the stimulation of the brain. Chapters 6 to 9 discuss the beneficial effects and uses of these stimulation techniques, such as motivation and reinforcement, memory research, its relation to brain lesions, and the implications for electroconvulsive therapy. The last two chapters talk about the electrical stimulation of the peripheral nerve and the grid and peripheral shock stimulation. The book is recommended for psychotherapists who wish to learn more about the use of electrical stimulation techniques as treatment, and for neurologists who would like to further understand the effects of electrical stimulation.

The Cerebral Cortex of Man
  • Language: en
  • Pages: 248

The Cerebral Cortex of Man

  • Type: Book
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  • Published: 1968
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  • Publisher: Unknown

None

Applied Bioelectricity
  • Language: en
  • Pages: 581

Applied Bioelectricity

Electric currents and electromagnetic fields have been applied to biological systems, particularly humans, with both therapeutic and pathological results. This text discusses biological responses to electric currents and electromagnetic fields, including medical applications and shock hazards. It covers fundamental physical and engineering principles of responses to short-term electrical exposure and emphasises human reactions, although animal responses are considered as well, and the treatment covers reactions from the just-detectable to the clearly detrimental. An important new chapter discusses standards for human exposure to electromagnetic fields and electric current and demonstrates how these standards have been developed using the principles treated in earlier chapters.

Electrical Stimulation and Electropathology
  • Language: en
  • Pages: 536

Electrical Stimulation and Electropathology

Human response to short-term electrical exposure can be beneficial, as in the application of electrical stimulation for medical purposes, or pathological, as in unintended electric shock. This book is the first to offer a cohesive treatment of the subject, covering fundamental principles, specific human responses, and electrical safety.

Handbook of Research on Smart Technology Models for Business and Industry
  • Language: en
  • Pages: 520

Handbook of Research on Smart Technology Models for Business and Industry

  • Type: Book
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  • Published: 2020-06-19
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  • Publisher: IGI Global

Advances in machine learning techniques and ever-increasing computing power has helped create a new generation of hardware and software technologies with practical applications for nearly every industry. As the progress has, in turn, excited the interest of venture investors, technology firms, and a growing number of clients, implementing intelligent automation in both physical and information systems has become a must in business. Handbook of Research on Smart Technology Models for Business and Industry is an essential reference source that discusses relevant abstract frameworks and the latest experimental research findings in theory, mathematical models, software applications, and prototypes in the area of smart technologies. Featuring research on topics such as digital security, renewable energy, and intelligence management, this book is ideally designed for machine learning specialists, industrial experts, data scientists, researchers, academicians, students, and business professionals seeking coverage on current smart technology models.

Functional Electrical Stimulation
  • Language: en
  • Pages: 212

Functional Electrical Stimulation

  • Type: Book
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  • Published: 1989-01-31
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  • Publisher: CRC Press

This reference text covers the fundamental knowledge and principles of functional electrical stimulation (FES) as applied to the spinal cord injured (SCI) patient. The principles of FES application and basic biomechanical issues related to FES in SCI are stressed. The fundamentals regarding patient selection criteria, indication, contraindications, and descriptions of procedures are clearly presented. Also included are the fundamentals and rationale of gait restoration with patient selection, control strategies, and the synthesis of gait sequences with trends in the field. Each chapter contains numerous references to the FES literature for the reader to easily evaluate and extend his knowledge in the area of interest. Biomedical and rehabilitation engineering professionals and researchers for medical doctors, physical therapists, and orthotists will find this publication invaluable.

The Cell Cycle in the Central Nervous System
  • Language: en
  • Pages: 555

The Cell Cycle in the Central Nervous System

Cell Cycle in the Central Nervous System overviews the changes in cell cycle as they relate to prenatal and post natal brain development, progression to neurological disease or tumor formation.Topics covered range from the cell cycle during the prenatal development of the mammalian central nervous system to future directions in postnatal neurogenesis through gene transfer, electrical stimulation, and stem cell introduction. Additional chapters examine the postnatal development of neurons and glia, the regulation of cell cycle in glia, and how that regulation may fail in pretumor conditions or following a nonneoplastic CNS response to injury. Highlights include treatments of the effects of deep brain stimulation on brain development and repair; the connection between the electrophysiological properties of neuroglia, cell cycle, and tumor progression; and the varied immunological responses and their regulation by cell cycle.

Brain Repair After Stroke
  • Language: en
  • Pages: 307

Brain Repair After Stroke

Increasing evidence identifies the possibility of restoring function to the damaged brain via exogenous therapies. One major target for these advances is stroke, where most patients can be left with significant disability. Treatments have the potential to improve the victim's quality of life significantly and reduce the time and expense of rehabilitation. Brain Repair After Stroke reviews the biology of spontaneous brain repair after stroke in animal models and in humans. Detailed chapters cover the many forms of therapy being explored to promote brain repair and consider clinical trial issues in this context. This book provides a summary of the neurobiology of innate and treatment-induced repair mechanisms after hypoxia and reviews the state of the art for human therapeutics in relation to promoting behavioral recovery after stroke. Essential reading for stroke physicians, neurologists, rehabilitation physicians and neuropsychologists.

Cochlear Implants: Auditory Prostheses and Electric Hearing
  • Language: en
  • Pages: 448

Cochlear Implants: Auditory Prostheses and Electric Hearing

Cochlear implants have instigated a popular but controversial revolution in the treatment of deafness. This book discusses the physiological bases of using artificial devices to electrically stimulate the brain to interpret sounds. As the first successful device to restore neural function, the cochlear implant serves as a model for research in neuroscience and biomedical engineering. These and other auditory prostheses are discussed in the context of historical treatments, engineering, psychophysics and clinical issues as well as implications for speech, behavior, cognition and long-term effects on people.

Brain Stimulation
  • Language: en
  • Pages: 41

Brain Stimulation

Deep brain stimulation is a remarkable therapy that has mainstreamed electrical stimulation of the brain for the treatment of neurological dysfunction. To appreciate the mechanisms of deep brain stimulation, we need to understand the excitability of neural tissue. Here, we survey the pertinent principles of electrical excitation in the brain. The amount of current delivered and the tissue conductivity together determine the strength and extent of potentials generated by stimulation. The electrode–tissue interface is an important junction where electrical charge carriers in the stimulation hardware are converted to ionic charge carriers in the tissue. Cathodic stimulation tends to depolariz...