Abu-Faraj Z O, Harris G F, Abler J H, Wertsch J J
Biomedical Engineering Department, Marquette University, Milwaukee, WI 53233, USA.
J Rehabil Res Dev. 1997 Apr;34(2):187-94.
A Holter-type, microprocessor-based, portable, in-shoe, plantar pressure data acquisition system has been developed. The system allows continuous recording of pressure data between the sole of the foot and the shoe during the performance of daily living activities. Fourteen conductive polymer sensors acquire the plantar pressure history, which is then stored in the system memory. Pressures are sampled at a rate of 40 Hz from each of the 14 sensors for up to 8 hrs. The extended recording and processing capacity of the system developed in this study allows quantitative analysis of cumulative plantar pressure and temporal gait data necessary for characterization of event-related alterations in plantar pressures. The alterations that could be examined with the system include rehabilitative, therapeutic, surgical, and nonsurgical treatment. The system is fully portable and does not disrupt the natural gait pattern of the subject during ambulation. Peak plantar pressures, pressure-time integrals, and contact durations are determined for each of the insole sensors.
已开发出一种基于微处理器的便携式鞋内式动态足底压力数据采集系统,其类似于动态心电图监测仪(Holter)。该系统能够在日常生活活动期间持续记录足底与鞋子之间的压力数据。14个导电聚合物传感器采集足底压力历史数据,然后将其存储在系统内存中。从14个传感器中的每个传感器以40Hz的速率对压力进行采样,最长可达8小时。本研究中开发的系统具有扩展的记录和处理能力,可对累积足底压力进行定量分析,并获取表征与事件相关的足底压力变化所需的时间步态数据。可通过该系统检查的变化包括康复、治疗、手术和非手术治疗。该系统完全便携,在步行过程中不会干扰受试者的自然步态模式。为每个鞋垫传感器确定足底峰值压力、压力-时间积分和接触持续时间。