Control System Design for Electrical Stimulation in Upper Limb Rehabilitation
Title | Control System Design for Electrical Stimulation in Upper Limb Rehabilitation PDF eBook |
Author | Chris Freeman |
Publisher | Springer |
Pages | 182 |
Release | 2015-10-28 |
Genre | Technology & Engineering |
ISBN | 3319257064 |
This book presents a comprehensive framework for model-based electrical stimulation (ES) controller design, covering the whole process needed to develop a system for helping people with physical impairments perform functional upper limb tasks such as eating, grasping and manipulating objects. The book first demonstrates procedures for modelling and identifying biomechanical models of the response of ES, covering a wide variety of aspects including mechanical support structures, kinematics, electrode placement, tasks, and sensor locations. It then goes on to demonstrate how complex functional activities of daily living can be captured in the form of optimisation problems, and extends ES control design to address this case. It then lays out a design methodology, stability conditions, and robust performance criteria that enable control schemes to be developed systematically and transparently, ensuring that they can operate effectively in the presence of realistic modelling uncertainty, physiological variation and measurement noise.
Control System Design for Electrical Stimulation in Upper Limb Rehabilitation
Title | Control System Design for Electrical Stimulation in Upper Limb Rehabilitation PDF eBook |
Author | Chris T. Freeman (College teacher) |
Publisher | |
Pages | 176 |
Release | 2016 |
Genre | Arm |
ISBN | 9783319257051 |
This book presents a comprehensive framework for model-based electrical stimulation (ES) controller design, covering the whole process needed to develop a system for helping people with physical impairments perform functional upper limb tasks such as eating, grasping and manipulating objects. The book first demonstrates procedures for modelling and identifying biomechanical models of the response of ES, covering a wide variety of aspects including mechanical support structures, kinematics, electrode placement, tasks, and sensor locations. It then goes on to demonstrate how complex functional activities of daily living can be captured in the form of optimisation problems, and extends ES control design to address this case. It then lays out a design methodology, stability conditions, and robust performance criteria that enable control schemes to be developed systematically and transparently, ensuring that they can operate effectively in the presence of realistic modelling uncertainty, physiological variation and measurement noise.
System Identification, Environmental Modelling, and Control System Design
Title | System Identification, Environmental Modelling, and Control System Design PDF eBook |
Author | Liuping Wang |
Publisher | Springer Science & Business Media |
Pages | 653 |
Release | 2011-10-20 |
Genre | Technology & Engineering |
ISBN | 0857299743 |
This book is dedicated to Prof. Peter Young on his 70th birthday. Professor Young has been a pioneer in systems and control, and over the past 45 years he has influenced many developments in this field. This volume comprises a collection of contributions by leading experts in system identification, time-series analysis, environmetric modelling and control system design – modern research in topics that reflect important areas of interest in Professor Young’s research career. Recent theoretical developments in and relevant applications of these areas are explored treating the various subjects broadly and in depth. The authoritative and up-to-date research presented here will be of interest to academic researcher in control and disciplines related to environmental research, particularly those to with water systems. The tutorial style in which many of the contributions are composed also makes the book suitable as a source of study material for graduate students in those areas.
Iterative Learning Control for Electrical Stimulation and Stroke Rehabilitation
Title | Iterative Learning Control for Electrical Stimulation and Stroke Rehabilitation PDF eBook |
Author | Chris T. Freeman |
Publisher | Springer |
Pages | 130 |
Release | 2015-06-25 |
Genre | Technology & Engineering |
ISBN | 1447167260 |
Iterative learning control (ILC) has its origins in the control of processes that perform a task repetitively with a view to improving accuracy from trial to trial by using information from previous executions of the task. This brief shows how a classic application of this technique – trajectory following in robots – can be extended to neurological rehabilitation after stroke. Regaining upper limb movement is an important step in a return to independence after stroke, but the prognosis for such recovery has remained poor. Rehabilitation robotics provides the opportunity for repetitive task-oriented movement practice reflecting the importance of such intense practice demonstrated by conventional therapeutic research and motor learning theory. Until now this technique has not allowed feedback from one practice repetition to influence the next, also implicated as an important factor in therapy. The authors demonstrate how ILC can be used to adjust external functional electrical stimulation of patients’ muscles while they are repeatedly performing a task in response to the known effects of stimulation in previous repetitions. As the motor nerves and muscles of the arm reaquire the ability to convert an intention to move into a motion of accurate trajectory, force and rapidity, initially intense external stimulation can now be scaled back progressively until the fullest possible independence of movement is achieved.
Applications of Rehabilitation Engineering Technologies for the Intervention of Neural and Motor Impairment Post Stroke
Title | Applications of Rehabilitation Engineering Technologies for the Intervention of Neural and Motor Impairment Post Stroke PDF eBook |
Author | Dong Feng Huang |
Publisher | Frontiers Media SA |
Pages | 107 |
Release | 2020-01-10 |
Genre | |
ISBN | 2889633012 |
Stroke is the leading cause of disability worldwide. Stroke survivors often have motorimpairments which contribute to upper limbs dysfunctions, reduced balance, posturalcontrol and reduced mobility and proprioception. These physical symptoms lead toreduced social participation and poor quality of life. Over the past ten years, therehad been an enormous focus on the use of virtual reality (VR) and other technologiesto improve clinical outcomes for people with stroke. These technologies includelarge scale bespoke manufactured immersvie virtual reality system, or home basedrehabilitation device such as the commercially available device Nitendo Wii andMicrosoft XBox. The clinical efficacy of these rehabilitation technologies had beenstudied extensively but our understanding of the underlying mechanism of recoveryinduced by these technologies is poor. There are two aspects of “recovery” must beconsidered. One is the learning compensation strategies where patients acquired“new” skills to improve functional abilities. The other aspect is the neuroplasticitymechanism which leads to cortical map reorganisation. The patient is able to re-usethe same body segments in the same way as they did before the stroke. Publishedstudies generally reported improvement in upper limb function, lower limb function,balance and gait. This leads to the uncertainty whether these technologies areeffective in promoting “recovery” at neural level or functional level. With the advance in technology, monitoring techniques such as neural imaging,motion analysis, and EMGs devices have broad applications in the understandingof neural recovery post stroke. Studies that utilize functional outcome measuresor observational design may be more effective in identifying functional recovery.A combination of the two designs may be helpful to provide new insights on therecovery mechanism induced by rehabilitation devices.
Iterative Learning Control Algorithms and Experimental Benchmarking
Title | Iterative Learning Control Algorithms and Experimental Benchmarking PDF eBook |
Author | Eric Rogers |
Publisher | John Wiley & Sons |
Pages | 454 |
Release | 2023-01-12 |
Genre | Technology & Engineering |
ISBN | 1118535375 |
Iterative Learning CONTROL ALGORITHMS AND EXPERIMENTAL BENCHMARKING Iterative Learning Control Algorithms and Experimental Benchmarking Presents key cutting edge research into the use of iterative learning control The book discusses the main methods of iterative learning control (ILC) and its interactions, as well as comparator performance that is so crucial to the end user. The book provides integrated coverage of the major approaches to-date in terms of basic systems, theoretic properties, design algorithms, and experimentally measured performance, as well as the links with repetitive control and other related areas. Key features: Provides comprehensive coverage of the main approaches to ILC and their relative advantages and disadvantages. Presents the leading research in the field along with experimental benchmarking results. Demonstrates how this approach can extend out from engineering to other areas and, in particular, new research into its use in healthcare systems/rehabilitation robotics. The book is essential reading for researchers and graduate students in iterative learning control, repetitive control and, more generally, control systems theory and its applications.
Introduction to Biomedical Engineering
Title | Introduction to Biomedical Engineering PDF eBook |
Author | John Enderle |
Publisher | Elsevier |
Pages | 1141 |
Release | 2005-05-20 |
Genre | Science |
ISBN | 0080473148 |
Under the direction of John Enderle, Susan Blanchard and Joe Bronzino, leaders in the field have contributed chapters on the most relevant subjects for biomedical engineering students. These chapters coincide with courses offered in all biomedical engineering programs so that it can be used at different levels for a variety of courses of this evolving field. Introduction to Biomedical Engineering, Second Edition provides a historical perspective of the major developments in the biomedical field. Also contained within are the fundamental principles underlying biomedical engineering design, analysis, and modeling procedures. The numerous examples, drill problems and exercises are used to reinforce concepts and develop problem-solving skills making this book an invaluable tool for all biomedical students and engineers. New to this edition: Computational Biology, Medical Imaging, Genomics and Bioinformatics.* 60% update from first edition to reflect the developing field of biomedical engineering* New chapters on Computational Biology, Medical Imaging, Genomics, and Bioinformatics* Companion site: http://intro-bme-book.bme.uconn.edu/* MATLAB and SIMULINK software used throughout to model and simulate dynamic systems* Numerous self-study homework problems and thorough cross-referencing for easy use