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Low-cost wearable measurement system for continuous real-time pedobarography

机译:低成本的可穿戴式测量系统,用于连续的实时人体气压计

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Pedobarography is fundamental for kinetic gait analysis and for diagnosis and investigation of a number of neurological and musculoskeletal diseases, such as peripheral neuropathy or Parkinson. Wearable plantar pressure sensing systems represent a powerful tool in this field. The continuous data they can provide are crucial for rehabilitation, sport applications, and to generate real-time alarms for foot ulceration prevention of neuropathic patients. Requirements of compactness, spatial resolution, range and power-consumption lead to the high cost of commercially available pedobarographic systems, which represents the major issue hindering their widespread use. Efforts of the authors' work are therefore aimed at the realization of a single system able to match all these requirements while overcoming the cost issue. This work presents a high-spatial-resolution, flexible system enabling wide-dynamic-range pressure measurements with different sensing materials, and suitable for both platforms and low-cost sensing insoles embeddable into normal shoes. Experimental tests and comparisons adopting an in-house developed piezoresistive substrate and a commercial sensing material are presented and discussed.
机译:Pedobarography是进行运动步态分析以及诊断和研究许多神经系统和肌肉骨骼疾病(例如周围神经病或帕金森病)的基础。穿戴式足底压力感测系统是该领域的强大工具。他们可以提供的连续数据对于康复,运动应用以及生成实时警报以预防神经病患者的足部溃疡至关重要。紧凑性,空间分辨率,范围和功耗的要求导致了市售的气压计系统的高昂成本,这是阻碍其广泛使用的主要问题。因此,作者的工作旨在实现一个能够满足所有这些要求同时克服成本问题的单一系统。这项工作提出了一种高空间分辨率,灵活的系统,可以使用不同的传感材料进行宽动态范围的压力测量,适用于平台和可嵌入普通鞋中的低成本传感鞋垫。介绍并讨论了采用内部开发的压阻基板和商业传感材料进行的实验测试和比较。

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