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Augmenting human manipulation abilities with supernumerary robotic limbs / by Irfan Hussain, Domenico Prattichizzo

Por: Hussain, Irfan, autor.
Colaborador(es): Prattichizzo, Domenico, autor | SpringerLink.
Tipo de material: materialTypeLabelE-bookSeries (Biosystems & Biorobotics, 2195-3562; 26); (Medicine (SpringerNature-11650)); (Medicine (R0) (SpringerNature-43714)).Editor: Cham : Springer International Publishing, 2020Edición: First edition.Descripción: 1 recurso en línea (XIII, 145 páginas) : 77 ilustraciones, 72 ilustraciones a color.ISBN: 9783030520021.Tema: Ingeniería biomédica | Robótica médicaRecursos en línea: Acceso a este recurso digital (usuarios Universidad Europea de Valencia)Digital Resources
Contenidos:
Introduction -- Enhancing human hand manipulation abilities through supernumerary robotic fingers -- Compensating hand function in chronic stroke patients through the supernumerary robotic finger -- Design and development of soft supernumerary robotic fingers for grasp compensation in chronic stroke patients -- Wearable sensory motor interfaces for supernumerary robotic fingers -- Wearable EMG interfaces for motion control of supernumerary robotic fingers -- From grasp compensation towards hemiparetic upper limb rehabilitation -- Conclusions and future work.
Resumen: This book offers a timely report on an emerging topic in the field of wearable assistive technology: the design and development of robotic extra fingers. After a concise review of the state of the art and a description of earlier prototypes, it discusses the authors' efforts to address issues such as portability and wearability of the devices, including strategies to reduce fatigue and to integrate the motion of the extra fingers with that of the human hand. The book also explores optimized control algorithms and the design of wearable sensorimotor interfaces, and presents a set of tests carried out on healthy subjects and chronic stroke patients. Merging concepts from robotics, biomechanics, human factors and control theory and offering an overview of supernumerary robotic fingers, including the challenges, this book will inspire researchers involved in the development of wearable robotic devices and interfaces based on the principles of wearability, safety, ergonomics and user comfort.
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Existencias
Tipo de ítem Biblioteca actual Colección Signatura topográfica Estado Fecha de vencimiento Código de barras Reserva de ítems
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Valencia Digital Acceso Electrónico (UEV) Ciencias de la Salud R856 .H87 2020 EB (Navegar estantería(Abre debajo)) Acceso electrónico
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Introduction -- Enhancing human hand manipulation abilities through supernumerary robotic fingers -- Compensating hand function in chronic stroke patients through the supernumerary robotic finger -- Design and development of soft supernumerary robotic fingers for grasp compensation in chronic stroke patients -- Wearable sensory motor interfaces for supernumerary robotic fingers -- Wearable EMG interfaces for motion control of supernumerary robotic fingers -- From grasp compensation towards hemiparetic upper limb rehabilitation -- Conclusions and future work.

This book offers a timely report on an emerging topic in the field of wearable assistive technology: the design and development of robotic extra fingers. After a concise review of the state of the art and a description of earlier prototypes, it discusses the authors' efforts to address issues such as portability and wearability of the devices, including strategies to reduce fatigue and to integrate the motion of the extra fingers with that of the human hand. The book also explores optimized control algorithms and the design of wearable sensorimotor interfaces, and presents a set of tests carried out on healthy subjects and chronic stroke patients. Merging concepts from robotics, biomechanics, human factors and control theory and offering an overview of supernumerary robotic fingers, including the challenges, this book will inspire researchers involved in the development of wearable robotic devices and interfaces based on the principles of wearability, safety, ergonomics and user comfort.

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