Department of Measurement Technology and Industrial Electrical Engineering, Lund University, Lund, Sweden.
J Rehabil Med. 2012 Jul;44(8):702-7. doi: 10.2340/16501977-1001.
Lack of sensory feedback is a drawback in today's hand prostheses. We present here a non-invasive simple sensory feedback system, which provides the user of a prosthetic hand with sensory feedback on the arm stump. It is mediated by air in a closed loop system connecting silicone pads on the prosthetic hand with pads on the amputation stump. The silicone pads in a "tactile display" on the amputation stump expand when their corresponding sensor-bulb in the prosthesis is touched, evoking an experience of "real touch".
Twelve trans-radial amputees and 20 healthy non-amputees participated in the study. We investigated the capacity of the system to mediate detection of touch, discrimination between different levels of pressure and, on the amputees also, the ability to locate touch.
The results showed a median touch threshold of 80 and 60 g in amputees and non-amputees, respectively, and 90% and 80% correct answers, respectively, in discrimination between 2 levels of pressure. The amputees located touch (3 sites) correctly in 96% of trials.
This simple sensory feedback system has the potential to restore sensory feedback in hand amputees and thus it could be a useful tool to enhance prosthesis use.
目前的假肢存在缺乏感官反馈的缺点。我们在此提出一种非侵入性的简单感官反馈系统,为假肢使用者提供手臂残肢的感官反馈。它通过在假肢和截肢残肢上的硅树脂垫之间的闭环系统中的空气来实现。当假肢上的相应传感器灯泡被触摸时,假肢上的硅树脂垫在“触觉显示器”中膨胀,从而产生“真实触感”的体验。
12 名桡骨截肢者和 20 名健康非截肢者参与了这项研究。我们调查了该系统介导触摸检测、区分不同压力水平以及在截肢者中定位触摸的能力。
结果显示,截肢者的触觉阈值中位数分别为 80 和 60 克,区分 2 个压力水平的正确答案分别为 90%和 80%。截肢者在 96%的试验中正确定位触摸(3 个部位)。
这种简单的感官反馈系统有可能恢复手部截肢者的感官反馈,因此它可能是增强假肢使用的有用工具。