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首页> 外文期刊>IEEE transactions on rehabilitation engineering >A Holter-type microprocessor-based rehabilitation instrument for acquisition and storage of plantar pressure data in children with cerebral palsy
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A Holter-type microprocessor-based rehabilitation instrument for acquisition and storage of plantar pressure data in children with cerebral palsy

机译:一种基于Holter型微处理器的康复仪器,用于获取和存储脑瘫儿童的足底压力数据

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A multichannel, portable data acquisition system has been developed to measure discrete plantar pressures in the rehabilitation of children who have cerebral palsy and planovalgus foot deformity. The microprocessor-based system is designed to be lightweight (350 g with batteries) and portable (no umbilicus) in order to minimize encumbrances to gait patterns. It provides an improved method for obtaining accurate and reliable data during extended recording and rehabilitative periods that is not available from commercial systems. Twelve conductive polymer force (pressure) sensors are used to acquire pressure data, which are then stored in the system memory. Plantar pressures are sampled at a rate of 40 Hz from each of the 12 sensors for up to 2 h. The system consists of 16 analog amplifiers, a 12 b sampling analog-to-digital converter, an 8 b Dallas semiconductor microprocessor (DS5001FP-16, Dallas, TX), 4 MB of pseudo static RAM, and serial and parallel I/O interfaces. The interfaces are used to upload data into a PC for further processing, analysis, and display. During subject testing, sensors are located at predetermined anatomic areas under the calcaneus, medial and lateral midfoot, medial and lateral metatarsal heads, and hallux. Foot pressure data has been acquired from two pediatric subjects during multiple walking trials to illustrate system application in the normal and planovalgus foot. The system is considered to be appropriate for further clinical application and for characterization of event related alterations including rehabilitative, therapeutic, surgical, and nonsurgical treatment.
机译:已开发出一种多通道便携式数据采集系统,以测量患有脑瘫和扁平足畸形的儿童的康复中的离散足底压力。基于微处理器的系统设计为轻巧的(带电池350 g)和便携式的(无脐带),以最大程度地减少步态模式的障碍。它提供了一种改进的方法,用于在延长的记录和恢复期间获得准确和可靠的数据,这是商业系统无法提供的。十二个导电聚合物力(压力)传感器用于获取压力数据,然后将其存储在系统内存中。从12个传感器中的每个传感器以40 Hz的速率采样足底压力,持续2 h。该系统由16个模拟放大器,一个12b采样的模数转换器,一个8b Dallas半导体微处理器(DS5001FP-16,Dallas,TX),4 MB伪静态RAM以及串行和并行I / O接口组成。这些接口用于将数据上传到PC进行进一步的处理,分析和显示。在受试者测试期间,传感器位于跟骨,内侧和外侧中足,内侧和外侧meta骨头和拇趾下方的预定解剖区域。在多次步行试验中,已从两个儿科受试者中获取了足底压力数据,以说明该系统在正常足和扁平足中的应用。该系统被认为适用于进一步的临床应用以及表征与事件相关的改变,包括康复,治疗,手术和非手术治疗。

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