Can trunk acceleration differentiate stroke patient gait patterns using time-and frequency-domain features?

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Abstract

This study classified the gait patterns of normal and stroke participants by using time- and frequency-domain features obtained from data provided by an inertial measurement unit sensor placed on the subject’s lower back (L5). Twenty-three participants were included and divided into two groups: healthy group (young and older adults) and stroke group. Time- and frequency-domain features from an accelerometer were extracted, and a feature selection method comprising statistical analysis and signal-to-noise ratio (SNR) calculation was used to reduce the number of features. The features were then used to train four Support Vector Machine (SVM) kernels, and the results were subsequently compared. The quadratic SVM kernel had the highest accuracy (93.46%), as evaluated through cross-validation. Moreover, when different datasets were used on model testing, both the quadratic and cubic kernels showed the highest accuracy (96.55%). These results demonstrated the effectiveness of this study’s classification method in distinguishing between normal and stroke gait patterns, with only using a single sensor placed on the L5.

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APA

Hsu, W. C., Sugiarto, T., Liao, Y. Y., Lin, Y. J., Yang, F. C., Hueng, D. Y., … Chou, K. N. (2021). Can trunk acceleration differentiate stroke patient gait patterns using time-and frequency-domain features? Applied Sciences (Switzerland), 11(4), 1–14. https://doi.org/10.3390/app11041541

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