Pană Cristina Floriana, Popescu Dorin, Rădulescu Virginia Maria
Department of Mechatronics and Robotics, University of Craiova, 200440 Craiova, Romania.
Department of Automation and Electronics, University of Craiova, 200440 Craiova, Romania.
Sensors (Basel). 2023 Jul 7;23(13):6237. doi: 10.3390/s23136237.
Robotic systems for lower limb rehabilitation are essential for improving patients' physical conditions in lower limb rehabilitation and assisting patients with various locomotor dysfunctions. These robotic systems mainly integrate sensors, actuation, and control systems and combine features from bionics, robotics, control, medicine, and other interdisciplinary fields. Several lower limb robotic systems have been proposed in the patent literature; some are commercially available. This review is an in-depth study of the patents related to robotic rehabilitation systems for lower limbs from the point of view of the sensors and actuation systems used. The patents awarded and published between 2013 and 2023 were investigated, and the temporal distribution of these patents is presented. Our results were obtained by examining the analyzed information from the three public patent databases. The patents were selected so that there were no duplicates after several filters were used in this review. For each patent database, the patents were analyzed according to the category of sensors and the number of sensors used. Additionally, for the main categories of sensors, an analysis was conducted depending on the type of sensors used. Afterwards, the actuation solutions for robotic rehabilitation systems for upper limbs described in the patents were analyzed, highlighting the main trends in their use. The results are presented with a schematic approach so that any user can easily find patents that use a specific type of sensor or a particular type of actuation system, and the sensors or actuation systems recommended to be used in some instances are highlighted.
用于下肢康复的机器人系统对于改善下肢康复患者的身体状况以及帮助患有各种运动功能障碍的患者至关重要。这些机器人系统主要集成了传感器、驱动和控制系统,并结合了仿生学、机器人技术、控制、医学和其他跨学科领域的特点。专利文献中已经提出了几种下肢机器人系统;有些已经商业化。本综述从所使用的传感器和驱动系统的角度对与下肢机器人康复系统相关的专利进行了深入研究。对2013年至2023年期间授予和公布的专利进行了调查,并呈现了这些专利的时间分布。我们的结果是通过检查来自三个公共专利数据库的分析信息获得的。在本综述中使用了几个过滤器后,选择的专利没有重复。对于每个专利数据库,根据传感器类别和所使用的传感器数量对专利进行了分析。此外,对于主要的传感器类别,根据所使用的传感器类型进行了分析。之后,对专利中描述的上肢机器人康复系统的驱动解决方案进行了分析,突出了其使用的主要趋势。结果以示意图的方式呈现,以便任何用户都可以轻松找到使用特定类型传感器或特定类型驱动系统的专利,并突出了在某些情况下建议使用的传感器或驱动系统。