[1] 李雪敏. 大艾机器人:让患者站起来,重获行走的信心[J]. 科技创新与品牌,2019(8):48-51. LI Xuemin. Ai robot:Help patients stand up and regain confidence in walking[J]. Technology Innovation and Branding,2019(8):48-51. [2] CHEN B,ZHONG C H,ZHAO X,et al. A wearable exoskeleton suit for motion assistance to paralysed patients[J]. Journal of Orthopaedic Translation,2017,11:7-18. [3] Esquenazi A,Talaty M,Packel A,et al. The ReWalk powered exoskeleton to restore ambulatory function to individuals with thoracic-level motor-complete spinal cord injury[J]. American Journal of Physical Medicine & Rehabilitation,2012,91(11):911-921. [4] Hidler J,Wisman W,Neckel N. Kinematic trajectories while walking within the Lokomat robotic gait-orthosis[J]. Clinical Biomechanics,2008,23(10):1251-1259. [5] Asbeck A T,SMMD R,Holt K G,et al. A biologically inspired soft exosuit for walking assistance[J]. The International Journal of Robotics Research,2015,34(6):744-762. [6] 宋利平,王强,周平,等. 并联式髋关节康复机构设计及分析[J]. 西华大学学报,2013,32(3):77-80. SONG Liping,WANG Qiang,ZHOU Ping,et al. Design and analysis of parallel hip rehabilitation mechanism[J]. Journal of Xihua University,2013,32(3):77-80. [7] 王森,李艳文,陈子明,等. 变轴线生物融合式膝关节康复机构型综合[J]. 机械工程学报,2020,56(11):84-91. WANG Sen,LI Yanwen,CHEN Ziming,et al. Variable axis biological fusion knee joint rehabilitation mechanism type synthesis[J]. Journal of Mechanical Engineering,2020,56(11):84-91. [8] 李剑锋,李世才,陶春静,等. 并联2-UPS/RRR踝关节康复机构及运动性能分析[J]. 机器人,2016, 38(2):144-153. LI Jianfeng,LI Shicai,TAO Chunjing,et al. Parallel 2-UPS/RRR ankle rehabilitation mechanism and analysis of athletic performance[J]. Robots,2016,38(2):144-153. [9] LYU M X,CHEN W H,DING X L,et al. Design of a biologically inspired lower limb exoskeleton for human gait rehabilitation[J]. The Review of Scientific Instruments,2016,87(10):289-304. [10] 刘凤臣,姚赟峰,刘黎明,等. 高速搬运机器人产业应用及发展[J]. 轻工机械,2012(2):108-112. LIU Fengchen,YAO Yunfeng,LIU Liming,et al. Application and development of high speed handling robot industry[J]. Light Industrial Machinery,2012(2):108-112. [11] 黄真,赵永生,赵铁石. 高等空间机构学[M]. 北京:高等教育出版社,2006. HUANG Zhen,ZHAO Yongsheng,ZHAO Tieshi. Advanced spatial mechanism[M]. Beijing:Higher Education Press,2006. [12] 赵萍,宋皖兵,顾晨晨,等. 基于GA-BFGS的六杆下肢康复机构设计[J]. 华中科技大学学报,2020,48(10):50-56. ZHAO Ping,SONG Wanbing,GU Chenchen,et al. Design of six-bar lower limb rehabilitation mechanism based on GA-BFGS[J]. Journal of Huazhong University of Science and Technology,2020:48(10):50-56. |