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An Easy Wearable Gait Assessment System for Assessing Stroke Patients

机译:用于评估中风患者的简单可穿戴步态评估系统

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The aftereffects of stroke are numerous, and about 88% of patients show hemiplegia with different severity after stroke. Patients can improve their condition through longterm rehabilitation. The effectiveness of rehabilitation can be assessed by the gait characteristics between the feet. However, most of today's gait analysis systems can only be carried out in biomechanical laboratories or medical related institutions. It has been proven that the equipment is expensive and takes up a long time and is not suitable for home care applications. A simple rehabilitation assessment system has become an important clinical issue. In this study, two inertial measurement components are respectively fixed on the instep of the two feet, then the acceleration and angular velocity in the inertial component are extracted as the basis for quantifying the gait characteristics. Due to the limitations of the accelerometer and the gyroscope itself, this study allows the two components to be calibrated to each other through the sensor fusion technique, and integrates the algorithms developed in the study to estimate the correct gait characteristics as much as possible. It can be known from the experimental results that for a normal subject with both feet, the symmetrical ratio presented in the gait characteristics of both feet is about 1. For subjects with difficulty walking on one foot, the symmetrical ratio is greater than 1 or less than 1, indicating that any one foot will be significantly different from the other in some gait characteristics. It can be seen from the results that the correlation of gait characteristics between the normal and abnormal gait feet is consistent with the pre-experiment hypothesis.
机译:中风的后果很多,约88%的患者显示出卒中后具有不同严重程度的偏瘫。患者可以通过Longterm康复来改善他们的病情。康复的有效性可以通过脚之间的步态特征来评估。然而,今天的大部分步态分析系统只能在生物力学实验室或医学相关机构中进行。已经证明,设备价格昂贵,占用长时间,不适合家庭护理应用。一个简单的康复评估系统已成为一个重要的临床问题。在该研究中,两个惯性测量部件分别固定在两英尺的脚背上,然后提取惯性部件中的加速度和角速度作为量化步态特性的基础。由于加速度计和陀螺仪本身的局限性,该研究允许通过传感器融合技术彼此校准两种组分,并集成了在研究中开发的算法以估计尽可能多的步态特性。从实验结果可以知道,对于具有双脚的正常对象,在双脚的步态特征中呈现的对称比是约1.对于难以一度行走的受试者,对称比率大于1或更小比1,表明在一些步态特征中,任何一英尺就会显着不同。从结果可以看出,正常和异常步态脚之间的步态特性的相关性与预测预假说一致。

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