Augmented reality-based training system for hand rehabilitation

被引:0
作者
Jia Liu
Jianhui Mei
Xiaorui Zhang
Xiong Lu
Jing Huang
机构
[1] Nanjing University of Information Science & Technology,B
[2] Nanjing University of Aeronautics and Astronautics,DAT & CICAEET, School of Information and Control
来源
Multimedia Tools and Applications | 2017年 / 76卷
关键词
Augmented reality; Hand rehabilitation; Stroke; Marker;
D O I
暂无
中图分类号
学科分类号
摘要
This study designs a training system for hand rehabilitation on the basis of augmented reality technology, which enables patients to simultaneously interact with real and virtual environments. The system framework is introduced, and four rehabilitation programs, namely, trajectory training, shelf training, batting training, and spile training, are presented. As a requirement of hand rehabilitation training, a color marker that is suitable for hand rehabilitation training is adopted. Following the Hamming coding principle, this marker is designed as a 7 × 7 square that is filled up by four designated colors with a binary bit of “0” or “1”. The check code in each row of the color marker is applied to restore the occluded binary bits, solve the occlusion issue of color markers, and complete the tracking registration of the color markers. The effectiveness of the developed system is evaluated via a usability study and questionnaires. The evaluation provides positive results. Therefore, the developed system has potential as an effective rehabilitation system for upper limb impairment.
引用
收藏
页码:14847 / 14867
页数:20
相关论文
共 37 条
  • [1] Alamri A(2010)AR-REHAB: an augmented reality framework for poststroke-patient rehabilitation IEEE Trans Instrum Meas 59 2554-2563
  • [2] Cha J(2014)Exploiting wearable goniometer technology for motion sensing gloves IEEE J Biomed Health Inform 18 1788-1795
  • [3] Saddik AE(2011)Harnessing neuroplasticity for clinical applications Brain 134 1591-1609
  • [4] Carbonaro N(2005)Virtual environments for motor rehabilitation: review Cyberpsychol Behav 8 187-211
  • [5] Mura GD(2013)A spatial augmented reality rehab system for post-stroke hand rehabilitation Stud Health Technol Inform 184 279-285
  • [6] Lorussi F(2009)Motor recovery after stroke: a systematic review Lancet Neurol 8 741-754
  • [7] Cramer SC(2005)Integration of augmented reality and assistive devices for post-stroke hand opening rehabilitation Proc IEEE Int Conf Eng Med Biol Soc 7 6855-6858
  • [8] Sur M(1985)Adult norms for the nine hole peg test of finger dexterity OTJR 5 24-38
  • [9] Dobkin BH(1991)Massive cortical reorgazation after sensory deafferentation in adult macaques Science 252 1857-1860
  • [10] Holden MK(2014)Manipulating the experience of reality for rehabilitation applications Proc IEEE 102 170-184