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Neuroergonomics can be defined as the study of brain and behavior at work. It combines two disciplines--neuroscience, the study of brain function, and human factors, the study of how to match technology with the capabilities and limitations of people so they can work effectively and safely. The goal of merging these two fields is to use the startling discoveries of human brain and physiological functioning both to inform the design of technologies in the workplace and home, and to provide new training methods that enhance performance, expand capabilities, and opitimize the fit between people and technology. Research in the area of neuroergonomics has blossomed in recent years with the emergence of noninvasive techniques for monitoring human brain function that cna be used to study various aspects of human behavior in relation to technology and work, including mental workload, visual attention, working memory, motor control, human-automation interaction, and adaptive automation. This volume will provide the first systematic overview of this emerging area, describing the theoretical background, basic research, major methods, as well as the new and future areas of application. This collection will benefit a number of readers: the experienced researcher investigating related questions in human factors and cognitive neuroscience, the student wishing to get a rapid but systematic overview of the field, and the designer interested in novel approaches and new ideas for application. Researchers in human factors and ergonomics, neuroscience, cognitive psychology, medicine, industrial engineering, and computer science will find this volume most helpful.
This volume investigates the intersection of neuroscience and human factors engineering to determine how brain function can inform the design of technology for improved workplace performance and safety. Authors Matthew Rizzo and Raja Parasuraman synthesize current research in cognitive neuroscience and industrial design to establish a framework for neuroergonomics. They argue that by monitoring brain activity through noninvasive techniques, designers can better align technological systems with human cognitive capabilities and limitations.
What You Will Find
Scope Limits
Experts recognize this volume as a foundational text that successfully bridges the gap between laboratory neuroscience and applied human factors engineering. Readers frequently note the academic density of the prose, making it a primary resource for researchers and students entering the field of human-technology interaction.
Page Count:
442
Publication Date:
2006-01-01
Publisher:
Oxford University Press
ISBN-10:
0190292229
ISBN-13:
9780190292225
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