Departamento de Electrónica, Universidad de Málaga, 29071 Málaga, Spain.
Instituto de Investigación Biomédica de Málaga (IBIMA), 29071 Málaga, Spain.
Sensors (Basel). 2021 Aug 21;21(16):5632. doi: 10.3390/s21165632.
Gait analysis has many applications, and specifically can improve the control of prosthesis, exoskeletons, or Functional Electrical Stimulation systems. The use of canes is common to complement the assistance in these cases, and the synergy between upper and lower limbs can be exploited to obtain information about the gait. This is interesting especially in the case of unilateral assistance, for instance in the case of one side lower limb exoskeletons. If the cane is instrumented, it can hold sensors that otherwise should be attached to the body of the impaired user. This can ease the use of the assistive system in daily life as well as its acceptance. Moreover, Force Sensing Resistors (FSRs) are common in gait phase detection systems, and force sensors are also common in user intention detection. Therefore, a cane that incorporates FSRs on the handle can take advantage from the direct interface with the human and provide valuable information to implement real-time control. This is done in this paper, and the results confirm that many events are detected from variables derived from the readings of the FSRs that provide rich information about gait. However, a large inter-subject variability points to the need of tailored control systems.
步态分析有许多应用,特别是可以改善假肢、外骨骼或功能性电刺激系统的控制。在这些情况下,使用手杖是很常见的,可以补充辅助,上下肢之间的协同作用可以用来获取有关步态的信息。这在单侧辅助的情况下尤其有趣,例如在单侧下肢外骨骼的情况下。如果手杖被仪器化,它可以容纳传感器,否则这些传感器应该附着在受损用户的身体上。这不仅可以简化辅助系统在日常生活中的使用,还可以提高其接受程度。此外,力感电阻器(FSR)在步态相位检测系统中很常见,力传感器也常用于用户意图检测。因此,在手柄上集成了 FSR 的手杖可以利用与人体的直接接口,并提供有价值的信息来实现实时控制。本文就是这样做的,结果证实,从 FSR 读数中得出的变量可以检测到许多事件,这些变量提供了有关步态的丰富信息。然而,个体间的高度可变性表明需要定制控制系统。