Department of Bioengineering, University of Washington, 3720 15th Ave NE, Box 355061, Seattle, WA 98195-5061, USA.
Sensors (Basel). 2019 Sep 19;19(18):4041. doi: 10.3390/s19184041.
The purpose of this research was to create a thin ferrous polymer composite to be used as a target for inductive sensing in limb prosthetics. Inductive sensors are used to monitor limb-to-socket distance in prosthetic sockets, which reflects socket fit. A styrene-ethylene-ethylene/propylene-styrene (SEEPS) polymer was mixed with iron powder at three concentrations (75, 77, 85 wt%), and thin disk-shaped samples were fabricated (0.50, 0,75, 1.00 mm thickness). For 85 wt% samples of 0.50 mm thickness, which proved the best combination of high signal strength and low target volume, inductive sensor sensitivity ranged from 3.2E5 counts/mm at 0.00-1.00 mm distances to 7.2E4 counts/mm at 4.00-5.00 mm distances. The application of compressive stress (up to 425 kPa) introduced an absolute measurement error of less than 3.3 μm. Tensile elasticity was 282 kPa, which is comparable to that of commercial elastomeric liners. Durability testing in the shoe of an able-bodied participant demonstrated a change in calibration coefficient of less than 3.8% over two weeks of wear. The ferrous polymer composite may facilitate the development of automatically adjusting sockets that use limb-to-socket distance measurement for feedback control.
本研究旨在开发一种薄铁聚合物复合材料,用作假肢感应式传感器的目标。感应式传感器用于监测假肢套中的肢体到套子的距离,这反映了套子的适配情况。苯乙烯-乙烯-丙烯-苯乙烯(SEEPS)聚合物与铁粉以三种浓度(75、77、85wt%)混合,并制造出薄圆盘状样品(厚度为 0.50、0.75、1.00 毫米)。对于 85wt%的 0.50 毫米厚样品,其证明了高信号强度和低目标体积的最佳组合,感应传感器灵敏度范围从 0.00-1.00 毫米距离的 3.2E5 计数/毫米到 4.00-5.00 毫米距离的 7.2E4 计数/毫米。压缩应力(高达 425kPa)的应用引入了小于 3.3μm 的绝对测量误差。拉伸弹性为 282kPa,与商业弹性衬里相当。在健全参与者的鞋子中的耐用性测试表明,在两周的穿着过程中,校准系数的变化小于 3.8%。铁聚合物复合材料可能有助于开发使用肢体到套子距离测量进行反馈控制的自动调节套子。