Franceschi M, Seminara L, Pinna L, Dosen S, Farina D, Valle M
Annu Int Conf IEEE Eng Med Biol Soc. 2015 Aug;2015:4554-7. doi: 10.1109/EMBC.2015.7319407.
This research is motivated by the need of integrating cutaneous sensing into a prosthetic device, enabling a bidirectional communication between the amputee and the prosthetic limb. An electronic skin based on piezoelectric polymer sensors transduces mechanical contact into electrical response which is conveyed to the human subject by electrotactile stimulation. Rectangular electrode arrays are placed on each patient's forearm and experiments are conducted on five different subjects to determine how well the orientation, position and direction of single lines are recognized. Overall, subjects discriminate the different touch modalities with acceptable success rates. In particular, the direction is identified at best and longitudinal lines on the patient's skin are recognized with the highest success rates. These preliminary results assess the feasibility of the artificial skin - electrostimulation system for prosthetic applications.
这项研究的动机是将皮肤传感集成到假肢装置中的需求,以实现截肢者与假肢之间的双向通信。基于压电聚合物传感器的电子皮肤将机械接触转换为电响应,该响应通过电触觉刺激传递给人体受试者。在每位患者的前臂上放置矩形电极阵列,并对五名不同的受试者进行实验,以确定单线的方向、位置和方向的识别效果。总体而言,受试者以可接受的成功率区分不同的触摸方式。特别是,方向识别效果最佳,患者皮肤上的纵向线条识别成功率最高。这些初步结果评估了用于假肢应用的人造皮肤 - 电刺激系统的可行性。