Weathersby Ethan J, Garbini Joseph L, Larsen Brian G, McLean Jake B, Vamos Andrew C, Sanders Joan E
IEEE Trans Biomed Eng. 2021 Jan;68(1):36-46. doi: 10.1109/TBME.2020.2992739. Epub 2020 Dec 21.
The purpose was to design, implement, and test a control system for a motor-actuated, cable-panel prosthetic socket that automatically maintains socket fit by continuous adjustment of the socket size.
Sockets with motor-driven adjustable panels were fabricated for participants with transtibial amputation. A proportional-integral control system was implemented to adjust socket size based on Socket Fit Metric (SFM) data collected by an inductive sensor embedded within the socket wall. The sensed distance was representative of limb-to-socket distance. Testing was conducted with participants walking on a treadmill to characterize the system's capability to maintain a set point and to respond to a change in the set point.
Test results from 10 participants with transtibial amputation showed that the Integral of Absolute Error (IAE) to maintain a set point ranged from 0.001 to 0.046 mm with a median of 0.003 mm. When the set point was changed, IAE errors ranged from 0.001 to 0.005 mm, with a median of 0.003 mm. An IAE of 0.003 mm corresponded to approximately a 0.08% socket volume error, which was considered clinically acceptable.
The capability of the control system to maintain and respond to a change in set point indicates that it is ready for evaluation outside of the laboratory.
Integration of the developed control system into everyday prostheses may improve quality of life of prosthesis users by relieving them of the burden of continually adjusting socket size to maintain fit.
设计、实施并测试一种用于电动缆线面板假肢接受腔的控制系统,该系统通过持续调整接受腔尺寸来自动维持接受腔的贴合度。
为经胫截肢患者制作了带有电动可调面板的接受腔。实施了一种比例积分控制系统,根据嵌入接受腔壁内的感应传感器收集的接受腔贴合度指标(SFM)数据来调整接受腔尺寸。所感测的距离代表肢体与接受腔之间的距离。让参与者在跑步机上行走进行测试,以表征该系统维持设定点以及对设定点变化做出响应的能力。
10名经胫截肢患者的测试结果表明,维持设定点时的绝对误差积分(IAE)范围为0.001至0.046毫米,中位数为0.003毫米。当设定点改变时,IAE误差范围为0.001至0.005毫米,中位数为0.003毫米。IAE为0.003毫米相当于约0.08%的接受腔体积误差,这在临床上被认为是可接受的。
该控制系统维持设定点并对设定点变化做出响应的能力表明它已准备好在实验室之外进行评估。
将所开发的控制系统集成到日常假肢中,可能通过减轻假肢使用者不断调整接受腔尺寸以维持贴合度的负担,来改善他们的生活质量。