期刊文献+

基于微型传感器的可穿戴远程康复设备的设计 被引量:16

Design of Wearable Telerehabilitation Device Based on Micro-sensors
下载PDF
导出
摘要 针对目前远程康复设备体积大、价格高、不易操作等问题,该文设计开发了基于微型传感器的可穿戴远程康复设备。该设备采用自主研发的算法,能够流畅无延迟的追踪单关节运动,并实现了动作评定的量化考核,同时,微型传感器具有体积小、价格低、易于穿戴等特点。临床研究结果表明,该远程康复设备可以提供便利、有效的康复训练。 In order to overcome the disadvantages of current telerehabilitation equipment, such as large volume, high price and difficult to operate, in this paper, we designed and developed a wearable telerehabilitation device based on micro- sensors. Self-developed algorithms were adopted, so that the device can track single-joint movement without delay and realize the quantitative evaluation of motor assessment, meanwhile, the micro-sensor has the characteristics of small volume, low price and convenient wearing. The clinical research showed that this remote rehabilitation equipment can provide flexible and effective rehabilitation training.
出处 《中国医疗器械杂志》 2017年第3期189-192,共4页 Chinese Journal of Medical Instrumentation
基金 四川旭康医疗电器有限公司委托项目(H1212128)
关键词 远程康复设备 微传感器 有效性 telerehabilitation device, micro-sensors, effectiveness
  • 相关文献

参考文献2

二级参考文献22

  • 1Oberg T,Karsznia A,Oberg K.Joint angle parameters in gait:Reference data for normal subjects,10-79years of age.Journal of Rehabilitation Research and Development,1994,31(3):199~213
  • 2Zijlstra W,Hof At L.Assessment of spatio-temporal gait parameters from trunk accelerations during human walking.Gait Posture,2003,18(2):1~10
  • 3Pataky Z,Faravel L,Silva J D,Assal J P.A new ambulatory foot pressure device for patients with sensory impairment.A system for continuous measurement of plantar pressure and a feed-back alarm.Journal of Biomechanics,2000,33(9):1135~1138
  • 4Menz H B,Lord S R,Fitzpatrick R C.Acceleration patterns of the head and pelvis when walking on level and irregular surfaces.Gait Posture,2003,18(2):35~46
  • 5Salarian A,Russmann H,Vingerhoets F J,Dehollain C,Blanc Y,Burkhard P R,Aminian K.Gait assessment in Parkinson's disease:Toward an ambulatory system for long-term monitoring.IEEE Transactions on Biomedical Engineering,2004,51(8):1434~1443
  • 6Willemsen A Th M,Bloemhof F,Boom H B K.Automatic stance-swing phase detection from accelerometer data for peroneal nerve stimulation.IEEE Transactions on Bio-medical Engineering,1990,37(12):1201~1208
  • 7Sabatini A M,Martelloni C,Scapellato S,Cavallo F.Assessment of walking features from foot inertial sensing.IEEE Transactions on Bio-medical Engineering,2005,52(3):486~494
  • 8Li H Q,Wu J K,Bao X M,Cheng D L,Dong L.Real-time activity monitoring using wireless wearable sensors.In:Proceedings of International Conference on Pervasive Systems and Computing.Las Vegas,USA,2005
  • 9Luinge H J,Veltink P H.Inclination measurement of human movement using a 3-D accelerometer with autocalibration.IEEE Transactions on Neural Systems and Rehabilitation Engineering,2004,12(1):112~121
  • 10Najafi B,Aminian K,Paraschiv-Ionescu A,Loew F,Bula C J,Robert P.Ambulatory system for human motion analysis using a kinematic sensor:Monitoring of daily physical activity in the elderly.IEEE Transactions on Bio-medical Engineering,2003,50(6):711~723

共引文献3

同被引文献178

引证文献16

二级引证文献61

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部