Ferguson-Pell M, Hagisawa S, Bain D
Centre for Disability Research and Innovation, Institute of Orthopaedics and Musculo-Skeletal Sciences, Royal Free and University College Medical School, Brockley Hill, Stanmore, Middlesex HA7 4LP, UK.
Med Eng Phys. 2000 Nov;22(9):657-63. doi: 10.1016/s1350-4533(00)00080-1.
An ultra-thin, small sensor has recently been developed, "FlexiForce" (Tekscan, Boston, MA, USA), which may be effective for the measurement of low interface pressure between the skin, support surfaces and pressure garments. To evaluate the suitability of the sensor for these applications, drift, repeatability, linearity, hysteresis and curvature effects were tested under laboratory conditions. The drift was 1.7-2.5%/logarithmic time, the repeatability was 2.3-6.6% and the linearity was 1.9-9.9% in the range of forces of 10-50 g applied. The hysteresis was 5.4% on average. The output offset of the sensor increased with decreasing radius of curvature for radii less than 32 mm compared with a flat surface when no pressure was applied. The sensitivity to pressure decreased with curvature for radii less than 32 mm. It was found that the sensor had acceptable drift, repeatability, linearity and hysteresis. However, a significant curvature effect was observed indicating that the sensor is suitable for direct measurement on surfaces with the radii greater than 32 mm under static conditions.
最近开发出了一种超薄小型传感器“FlexiForce”(美国马萨诸塞州波士顿的Tekscan公司),它可能对测量皮肤、支撑表面和压力衣之间的低界面压力有效。为评估该传感器在这些应用中的适用性,在实验室条件下测试了其漂移、重复性、线性、滞后和曲率效应。在施加10 - 50克力的范围内,漂移为1.7 - 2.5%/对数时间,重复性为2.3 - 6.6%,线性为1.9 - 9.9%。滞后平均为5.4%。当未施加压力时,与平面相比,对于半径小于32毫米的情况,传感器的输出偏移随着曲率半径的减小而增加。对于半径小于32毫米的情况,对压力的敏感度随曲率降低。结果发现该传感器具有可接受的漂移、重复性、线性和滞后。然而,观察到显著的曲率效应,这表明该传感器适用于在静态条件下对半径大于32毫米的表面进行直接测量。