Perspectives on human-human sensorimotor interactions for the design of rehabilitation robots

被引:0
作者
Andrew Sawers
Lena H Ting
机构
[1] Emory University and Georgia Institute of Technology,Wallace H. Coulter Department of Biomedical Engineering
来源
Journal of NeuroEngineering and Rehabilitation | / 11卷
关键词
Rehabilitation; Human-human interaction; Human-robot interaction; Haptics; Rehabilitation robotics;
D O I
暂无
中图分类号
学科分类号
摘要
Physical interactions between patients and therapists during rehabilitation have served as motivation for the design of rehabilitation robots, yet we lack a fundamental understanding of the principles governing such human-human interactions (HHI). Here we review the literature and pose important open questions regarding sensorimotor interaction during HHI that could facilitate the design of human-robot interactions (HRI) and haptic interfaces for rehabilitation. Based on the goals of physical rehabilitation, three subcategories of sensorimotor interaction are identified: sensorimotor collaboration, sensorimotor assistance, and sensorimotor education. Prior research has focused primarily on sensorimotor collaboration and is generally limited to relatively constrained visuomotor tasks. Moreover, the mechanisms by which performance improvements are achieved during sensorimotor cooperation with haptic interaction remains unknown. We propose that the effects of role assignment, motor redundancy, and skill level in sensorimotor cooperation should be explicitly studied. Additionally, the importance of haptic interactions may be better revealed in tasks that do not require visual feedback. Finally, cooperative motor tasks that allow for motor improvement during solo performance to be examined may be particularly relevant for rehabilitation robotics. Identifying principles that guide human-human sensorimotor interactions may lead to the development of robots that can physically interact with humans in more intuitive and biologically inspired ways, thereby enhancing rehabilitation outcomes.
引用
收藏
相关论文
共 227 条
[1]  
Oguz SO(2012)Supporting negotiation behavior with haptics-enabled human-computer interfaces IEEE Trans Haptics 5 274-284
[2]  
Kucukyilmaz A(2012)The role of roles: physical cooperation between humans and robots Int J Robot Res 31 1656-1674
[3]  
Metin Sezgin T(2005)A shared-control approach to haptic interface design for minimally invasive telesurgical training IEEE Trans Controls Syst Technol 13 588-592
[4]  
Basdogan C(2009)Review of control strategies for robotic movement training after neurologic injury J Neuroeng Rehabil 6 20-35
[5]  
Mortl A(2000)Treadmill training of paraplegic patients using a robotic orthosis J Rehabil Res Dev 37 693-700
[6]  
Lawitzky M(1998)Robot-aided neurorehabilitation IEEE Trans Rehabil Eng 6 75-87
[7]  
Kucukyilmaz A(2006)Implications of assist-as-needed robotic step training after a complete spinal cord injury on intrinsic strategies of motor learning J Neurosci 26 10564-10568
[8]  
Sezgin M(2005)Patient-cooperative strategies for robot-aided treadmill training: first experimental results IEEE Trans Neural Syst Rehabil Eng 13 380-394
[9]  
Basdogan C(2009)Multicenter randomized clinical trial evaluating the effectiveness of the Lokomat in subacute stroke Neurorehab Neural Re 23 5-13
[10]  
Hirche S(2011)Influence of a locomotor training approach on walking speed and distance in people with chronic spinal cord injury: a randomized clinical trial Phys Ther 91 48-60