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Flexible sensor matrix film-based wearable plantar pressure force measurement and analysis system

机译:柔性传感器矩阵薄膜可穿戴跖骨压力测量和分析系统

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Plantar pressure force data derived from gait and posture are commonly used as health indicators for foot diagnosis, injury prevention, and rehabilitation. This study developed a wearable plantar pressure force measurement and analysis (WPPFMA) system based on a flexible sensor matrix film to monitor plantar pressure force in real time. The developed system comprised a flexible sensor matrix film embedded in the insole of the shoe, a wearable data acquisition (DAQ) device with a Bluetooth module, and dedicated software with an intuitive graphical user interface for displaying the plantar pressure force data from receivers by using a terminal unit (laptop or smart-phone). The flexible sensor matrix film integrated 16 piezoresistive cell sensors to detect pressure force at different anatomical zones of the plantar and under different body positions. The signals from the flexible sensor matrix film were collected using the DAQ module embedded in the shoe and transmitted to the receivers through Bluetooth. The real-time display and analysis software can monitor, visualize, and record the detailed plantar pressure force data, such as average pressure force, maximum pressure force, and pressure force distributions and variations over time. The outcomes of the trials in which the system was worn revealed the applicability of the developed WPPFMA system for monitoring plantar pressure force under static and dynamic wearing conditions. The plantar pressure force data derived from this system provide valuable insights for personal foot care, gait analysis, and clinical diagnosis.
机译:源自步态和姿势的跖骨压力数据通常用作足部诊断,伤害预防和康复的健康指标。本研究开发了基于柔性传感器基质薄膜的可穿戴的跖跖压力测量和分析(WPPFMA)系统,以实时监测跖骨压力。开发系统包括嵌入在鞋子的鞋垫中的柔性传感器矩阵膜,带有蓝牙模块的可穿戴数据采集(DAQ)设备,以及具有直观图形用户界面的专用软件,用于通过使用从接收器中显示Plantar压力数据终端单元(笔记本电脑或智能手机)。柔性传感器矩阵薄膜集成了16个压阻式电池传感器,以检测跖骨不同的解剖区域和不同的身体位置的压力力。使用嵌入在鞋中的DAQ模块收集来自柔性传感器矩阵膜的信号,并通过蓝牙传输到接收器。实时显示和分析软件可以监控,可视化和记录详细的跖骨压力数据,例如平均压力,最大压力和压力分布以及随时间的变化。佩戴系统的试验结果揭示了发达的WPPFMA系统的适用性,以监测静态和动态磨损条件下的跖骨压力。源自该系统的跖骨压力数据为个人足部护理,步态分析和临床诊断提供了有价值的见解。

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