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Computational Intelligent Gait-Phase Detection System to Identify Pathological Gait

机译:识别病态步态的计算机智能步态相位检测系统

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摘要

An intelligent gait-phase detection algorithm based on kinematic and kinetic parameters is presented in this paper. The gait parameters do not vary distinctly for each gait phase; therefore, it is complex to differentiate gait phases with respect to a threshold value. To overcome this intricacy, the concept of fuzzy logic was applied to detect gait phases with respect to fuzzy membership values. A real-time data-acquisition system was developed consisting of four force-sensitive resistors and two inertial sensors to obtain foot-pressure patterns and knee flexion/extension angle, respectively. The detected gait phases could be further analyzed to identify abnormality occurrences, and hence, is applicable to determine accurate timing for feedback. The large amount of data required for quality gait analysis necessitates the utilization of information technology to store, manage, and extract required information. Therefore, a software application was developed for real-time acquisition of sensor data, data processing, database management, and a user-friendly graphical-user interface as a tool to simplify the task of clinicians. The experiments carried out to validate the proposed system are presented along with the results analysis for normal and pathological walking patterns.
机译:提出了一种基于运动学和动力学参数的步态智能检测算法。步态参数对于每个步态阶段没有明显变化;因此,相对于阈值区分步态相位是复杂的。为了克服这种复杂性,将模糊逻辑的概念应用于检测关于模糊隶属度的步态相位。开发了一个实时数据采集系统,该系统由四个力敏电阻和两个惯性传感器组成,分别获得脚压模式和膝盖屈伸角度。可以进一步分析检测到的步态相位以识别异常情况,因此可用于确定准确的反馈时机。质量步态分析所需的大量数据使得必须利用信息技术来存储,管理和提取所需的信息。因此,开发了一种软件应用程序,用于实时采集传感器数据,数据处理,数据库管理和用户友好的图形用户界面,以此作为简化临床医生任务的工具。介绍了为验证所提出的系统而进行的实验以及正常和病理学步行模式的结果分析。

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