Haptic Devices for Studies on Human Grasp and Rehabilitation Haptic Devices for Studies on Human Grasp and Rehabilitation
Springer Series on Touch and Haptic Systems

Haptic Devices for Studies on Human Grasp and Rehabilitation

    • $84.99
    • $84.99

Publisher Description

This book presents a new set of devices for accurate investigation of human finger stiffness and force distribution in grasping tasks. The ambitious goal of this research is twofold, the first is to advance the state of the art on human strategies in manipulation tasks and provide tools to assess rehabilitation procedure and the second is to investigate human strategies for impedance control that can be used for human robot interaction and control of myoelectric prosthesis.
Part one describes two types of systems that are able to achieve a complete set of measurements on force distribution and contact point locations. The effectiveness of these devices in grasp analysis is also experimentally demonstrated and applications to neuroscientific studies are discussed. In part two, the devices are exploited in two different studies to investigate stiffness regulation principles in humans. The first study provides evidence on the existence of coordinated stiffening patterns in the fingers of human hands and establishes initial steps towards a real-time and effective modelling of finger stiffness in tripod grasp.  The second study presents experimental findings on how humans modulate their hand stiffness whilst grasping objects of varying levels of compliance.
The overall results give solid evidence on the validity and utility of the proposed devices to investigate human grasp properties. The underlying motor control principles that are exploited by humans in the achievement of a reliable and robust grasp can potentially be integrated into the control framework of robotic or prosthetic hands to achieve a similar interaction performance.

GENRE
Computers & Internet
RELEASED
2016
November 23
LANGUAGE
EN
English
LENGTH
98
Pages
PUBLISHER
Springer International Publishing
SELLER
Springer Nature B.V.
SIZE
3.1
MB
Haptics: Neuroscience, Devices, Modeling, and Applications Haptics: Neuroscience, Devices, Modeling, and Applications
2014
Tactile Sensing, Skill Learning, and Robotic Dexterous Manipulation Tactile Sensing, Skill Learning, and Robotic Dexterous Manipulation
2022
Haptics: Perception, Devices, Control, and Applications Haptics: Perception, Devices, Control, and Applications
2016
Haptics: Perception, Devices, Control, and Applications Haptics: Perception, Devices, Control, and Applications
2016
Haptics: Science, Technology, and Applications Haptics: Science, Technology, and Applications
2018
Robotic Grasping and Manipulation Robotic Grasping and Manipulation
2018
Musical Haptics Musical Haptics
2018
Engineering Haptic Devices Engineering Haptic Devices
2022
Tactile Sensing, Information, and Feedback via Wave Propagation Tactile Sensing, Information, and Feedback via Wave Propagation
2022
Tactile Perception by Electrovibration Tactile Perception by Electrovibration
2020
Personalizing Haptics Personalizing Haptics
2019
Making Sense of Haptics Making Sense of Haptics
2018