Perspectives of Motor Behavior and Its Neural Basis


Book Description

This publication provides the reader with a better understanding of some basic principles of motor behavior and gives an update on modern approaches of human motor control. It contains abundant information on the current trends and illustrates the progress from laboratory findings to the investigation of more natural movements as well as of the cognitive aspects of motor behavior. As an additional benefit for the reader, the collected data is put in a historical perspective. Basic and clinical neuroscientists, rehabilitation specialists, physiotherapists and in particular students in system neuroscience, robotics and bioengineering will find this book a noteworthy contribution to the field.




Motor Control and Learning


Book Description

Motor Control and Learning, Sixth Edition With Web Resource, focuses on observable movement behavior, the many factors that influence quality of movement, and how movement skills are acquired. The text examines the motivational, cognitive, biomechanical, and neurological processes of complex motor behaviors that allow human movement to progress from unrefined and clumsy to masterfully smooth and agile. This updated sixth edition builds upon the foundational work of Richard Schmidt and Timothy Lee in previous editions. The three new authors—each a distinguished scholar—offer a range and depth of knowledge that includes current directions in the field. The extensively revised content reflects the latest research and new directions in motor control and learning. Additional new features of the sixth edition include the following: • A web resource that includes narratives and learning activities from Motor Control in Everyday Actions that correspond with the chapters in the book, giving students additional opportunities to analyze how research in motor learning and control can be expanded and applied in everyday settings • An instructor guide that offers sample answers for the learning experiences found in the student web resource • New content on sleep and movement memory, the role of vision, illusions and reaching, the OPTIMAL theory of motor learning, the neuroscience of learning, and more Motor Control and Learning begins with a brief introduction to the field and an introduction to important concepts and research methods. Part II thoroughly covers motor control with topics such as closed-loop perspective, the role of the central nervous system for movement control, speed and accuracy, and coordination. Part III deals with motor learning, exploring the effects of attentional focus, the structure of practice sessions, the role of feedback, theoretical views of motor learning, and the retention and transfer of skills. Throughout the book, art and practical examples are included to elucidate complex topics. Sidebars with historical examples, classic research, and examples of real-world applications highlight the importance of motor control and learning research and bring attention to influential research studies and pioneers. End-of-chapter summaries and student assignments reinforce important concepts and terms and provide review opportunities. For instructors, an image bank complements the new instructor guide; it is available to course adopters at www.HumanKinetics.com/MotorControlAndLearning. The updated research, new features, and highly respected authors of Motor Control and Learning, Sixth Edition With Web Study Guide, provide a solid foundation for both students and practitioners who study and work in fields that encompass movement behavior.




The Acquisition of Motor Behavior in Vertebrates


Book Description

Our motor skills determine how well we perform in athletics, dance, music, and in carrying out countless daily chores. While our proficiency at performing individual actions and synthesizing them into seamless sequences limits our athletic and artistic talents, we are not perpetually bound by such limitations. The nervous system can acquire new, and modify old, motor behaviors through experience and practice. That is motor learning.The Acquisition of Motor Behavior in Vertebratesprovides a broad, multidisciplinary survey of recent research on the brain systems and mechanisms underlying motor learning. Following the editors' introduction, nineteen contributions report on the neurobiology of these higher brain functions and on diverse types of motor learning such as reflex adaptation, conditioned and instrumental reflex learning, visually guided actions, and complex sequences and skills.




Neurons, Networks, and Motor Behavior


Book Description

Recent advances in motor behavior research rely on detailed knowledge of the characteristics of the neurons and networks that generate motor behavior. At the cellular level, Neurons, Networks, and Motor Behavior describes the computational characteristics of individual neurons and how these characteristics are modified by neuromodulators. At the network and behavioral levels, the volume discusses how network structure is dynamically modulated to produce adaptive behavior. Comparisons of model systems throughout the animal kingdom provide insights into general principles of motor control. Contributors describe how networks generate such motor behaviors as walking, swimming, flying, scratching, reaching, breathing, feeding, and chewing. An emerging principle of organization is that nervous systems are remarkably efficient in constructing neural networks that control multiple tasks and dynamically adapt to change.The volume contains six sections: selection and initiation of motor patterns; generation and formation of motor patterns: cellular and systems properties; generation and formation of motor patterns: computational approaches; modulation and reconfiguration; short-term modulation of pattern generating circuits; and sensory modification of motor output to control whole body orientation.




The Neural Basis of Behavior


Book Description

The Symposium on the Neural Basis of Behavior, from which this volume was produced, was held at the Alfred I. duPont Institute on June 7 and 8, 1979. It brought outstanding investigators in four fundamental areas of behavioral neurobiology into juxtaposition, there to provide an integrated, multidisciplinary perspective on behaviorally significant brain mechanisms. Particular emphasis was placed on topics of interest to neurobiologists as well as to clinicians in neurological and psychiatric disciplines. The session on central activity states was selected as an appropriate point of departure because the continuum of brain activity states extending from the natural depression of hibernation through the heightened levels of arousal accom panying learning is such a clear and basic determinant of behavioral output. The papers on learning and memory outlined diverse approaches to un derstanding the basis of these interrelat~d CNS capabilities that constitute the neural basis of behavioral adaptation. Finally, the topics of affective states and mechanisms of pain provided a focus of clinically relevant discus sion covering multiple levels of functional and anatomical CNS organiza tion. The success of the symposium bore testimony to the excellence of the presentations and to the symbiosis of their content; both are preserved herein. The support and encouragement of Dr. G. Dean MacEwen, Medical Director of the Alfred I. duPont Institute, is gratefully acknowl edged. Alexander L. Beckman Wilmington, July 1979 The Neural Basis of Behavior PART I Central Activity States Copyright © 1982, Spectrum Publications, Inc.




Vision and Goal-Directed Movement


Book Description

Vision and Goal-Directed Movement: Neurobehavioral Perspectives is also available as an e-book. The e-book is available at a reduced price and allows readers to highlight and take notes throughout the text. When purchased through the Human Kinetics Web site, access to the e-book is immediately granted when the order is received. To interact with the environment, an individual must code, store, and translate spatial information into the appropriate motor commands for achieving an outcome. Working from this premise, Vision and Goal-Directed Movement: Neurobehavioral Perspectives discusses how visual perception, attention, and memory are linked to the processes of movement preparation and execution. With contributions from active researchers in movement science, Vision and Goal-Directed Movement presents the latest theories on the utilization of vision in goal-directed movement control. As a resource for motor control and motor learning researchers, students, educators, and clinicians, Vision and Goal-Directed Movement offers the following: • Comprehensive coverage of current behavior-based literature on the visual control of goal-directed movement • A systematic explication of the sensory and physiological processes and systems responsible for fast, accurate, and efficient performance • A solid foundation for further study of the sensory and neural systems responsible for precise goal-directed behavior • A discussion of how current research on vision and goal-directed movement can assist in creating efficient and safe work environments Using research informed by neural imaging and magnetic brain stimulation, this text provides readers with a better understanding of the neural foundations for goal-directed movement, illustrates the flexibility of the human visuomotor system, and discusses how regulation of movements depends on the learning and developmental history of the performer. It begins by reviewing the works of R.S. Woodworth and the influence of his theories on current research. The majority of the chapters in the first section of the book take a behavioral and process-oriented approach to exploring goal-directed movement. The text then explores the sensory and neural foundations for goal-directed action, including issues related to both pursuit and saccadic eye movements as well as discussion of the specialization of various cortical systems for the regulation of movement. Especially relevant to professionals and scientists concerned with skill instruction and rehabilitation, the final part of the text provides a review of recent research on how and why limb control changes occur with practice and development. In addition, Vision and Goal-Directed Movement considers how the research presented can maximize precision, efficiency, and safety in workspace design. Vision and Goal-Directed Movement: Neurobehavioral Perspectives adds a unique offering to the literature base for motor behavior, demonstrating how advances in both behavioral and neurophysiological methods can inform theories related to the biological systems contributing to skilled performance.




The Neural Basis of Motor Control


Book Description

"A superb and insightful description of the area of motor control. The most modern approaches to understanding motor information are clearly described."--Emilio Bizzi, Massachusetts Institute of Technology. "Anyone with an interest in the field will find a place for this book on the desk, in the laboratory and at the bedside....All will find stimulation to new ideas and experiments."--C.D. Marsden, Maudsley Institute of Psychiatry. "A highly enlightening overview." --Shirley A. Sahrmann, Washington University School of Medicine, St. Louis The first systematic text on motor neurophysiology, this authoritative study is arranged by behavioural categories such as standing, walking, intended movements, automatic responses, attention and learning, and motivation. The author shows how the nervous system processes information, how the brain learns from previous experience, and how behavioural intent is fitted to material conditions. Written by a well-known authority and integrating anatomical and physiological information, this book will be an effective text for physical/occupational therapy students and neuroscience students, and represents an important reference for neuroscientists and physiologists.




Perspectives on the Coordination of Movement


Book Description

Is there a `right way' to study coordination? What experimental paradigms are appropriate? Are there laws and principles that the biological system uses to coordinate movement? Do all biological systems - human and otherwise - share these same principles? Is coordination inherited or acquired? Is it a central nervous system, muscular, or mechanical problem? Indeed, what is coordination and how can it be quantified?This volume attempts to help to answer some of these questions by bringing together a collection of conceptual approaches to and empirical investigations of the coordination of movement. The authors of the chapters are well known and respected researchers from a variety of disciplines.New theoretical developments such as in synergetics and dynamic pattern formation are presented together with extensive reviews and new experimental work on infant motor behavior, and the coordination of prehension, multi-limb, gait and speech movement. The volume contains perspectives on the problem of movement coordination relevant to various disciplines such as psychology, biology, engineering and robotics, physical education, physical therapy, kinesiology and physiology and so will be of interest to all students and scientists working in such fields.




Interlimb Coordination


Book Description

This comprehensive edited treatise discusses the neurological, physiological, and cognitive aspects of interlimb coordination. It is unique in promoting a multidisciplinary perspective through introductory chapter contributions from experts in the neurosciences, experimental and developmental psychology, and kinesiology. Beginning with chapters defining the neural basis of interlimb coordination in animals, the book progresses toward an understanding of human locomotor control and coordination and the underlying brain structures and nerves that make such control possible. Section two focuses on the dynamics of interlimb coordination and the physics of movement. The final section presents information on how practice and experience affect coordination, including general skill acquisition, learning to walk, and the process involved in rhythmic tapping.




Modularity in Motor Control: From Muscle Synergies to Cognitive Action Representation


Book Description

Mastering a rich repertoire of motor behaviors, as humans and other animals do, is a surprising and still poorly understood outcome of evolution, development, and learning. Many degrees-of-freedom, non-linear dynamics, and sensory delays provide formidable challenges for controlling even simple actions. Modularity as a functional element, both structural and computational, of a control architecture might be the key organizational principle that the central nervous system employs for achieving versatility and adaptability in motor control. Recent investigations of muscle synergies, motor primitives, compositionality, basic action concepts, and related work in machine learning have contributed to advance, at different levels, our understanding of the modular architecture underlying rich motor behaviors. However, the existence and nature of the modules in the control architecture is far from settled. For instance, regularity and low-dimensionality in the motor output are often taken as an indication of modularity but could they simply be a byproduct of optimization and task constraints? Moreover, what are the relationships between modules at different levels, such as muscle synergies, kinematic invariants, and basic action concepts? One important reason for the new interest in understanding modularity in motor control from different viewpoints is the impressive development in cognitive robotics. In comparison to animals and humans, the motor skills of today’s best robots are limited and inflexible. However, robot technology is maturing to the point at which it can start approximating a reasonable spectrum of isolated perceptual, cognitive, and motor capabilities. These advances allow researchers to explore how these motor, sensory and cognitive functions might be integrated into meaningful architectures and to test their functional limits. Such systems provide a new test bed to explore different concepts of modularity and to address the interaction between motor and cognitive processes experimentally. Thus, the goal of this Research Topic is to review, compare, and debate theoretical and experimental investigations of the modular organization of the motor control system at different levels. By bringing together researchers seeking to understand the building blocks for coordinating many muscles, for planning endpoint and joint trajectories, and for representing motor and behavioral actions in memory we aim at promoting new interactions between often disconnected research areas and approaches and at providing a broad perspective on the idea of modularity in motor control. We welcome original research, methodological, theoretical, review, and perspective contributions from behavioral, system, and computational motor neuroscience research, cognitive psychology, and cognitive robotics.