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首页> 外文期刊>Procedia Computer Science >Classification of left and right knee extension motor imagery using common spatial pattern for BCI applications
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Classification of left and right knee extension motor imagery using common spatial pattern for BCI applications

机译:使用BCI应用的常见空间模式对左右膝盖伸展运动图像进行分类

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Research on the deployment of various cognitive tasks in the experimental paradigm of a human brain-computer interface (BCI) is on-going in particular upper-limb tasks. Less has been investigated on the lower-limbs, due to its somatotopic arrangement in the sensorimotor cortex compared to that of upper limbs. Hip, knee, foot and toes share spatial proximity with each other. We therefore investigated the possibility to deploy the left vs. right knee extension kinaesthetic motor imagery (KMI) as a cognitive task in a BCI for the control of lower-limbs, primarily for people with neurodegenerative disorders, spinal cord injury or lower-limb amputation. The method involved feature extraction using common spatial pattern (CSP), and filter bank common spatial pattern (FBCSP) algorithm for the optimization of individual spatial patterns. This was followed by supervised machine learning using logistic regression (Logreg) and linear discriminant analysis (LDA) for classification of tasks. The paradigms resulted in four combinations/methods for discriminating between left and right knee tasks. The FBCSP-Logreg outperformed remaining paradigms with a maximum accuracy of 70.00% ± 2.85 and kappa=0.40. The results elicit the possibility to deploy left vs. right knee extension KMI in a 2-class BCI for controlling robotic/prosthetic knee.
机译:在人脑计算机接口(BCI)的实验范式中,各种认知任务的部署研究正在进行中,尤其是上肢任务。由于下肢在感觉运动皮层中的体位排列方式与上肢相比有所减少,因此对这一方面的研究较少。臀部,膝盖,脚和脚趾彼此之间在空间上接近。因此,我们研究了将左与右膝关节伸展运动觉运动成像(KMI)部署为BCI中控制下肢的认知任务的可能性,主要针对神经退行性疾病,脊髓损伤或下肢截肢的人。该方法涉及使用公共空间图案(CSP)进行特征提取,以及使用滤波器组公共空间图案(FBCSP)算法来优化单个空间图案。接下来是使用Logistic回归(Logreg)和线性判别分析(LDA)对任务进行分类的有监督的机器学习。范例产生了四种组合/方法,用于区分左膝任务和右膝任务。 FBCSP-Logreg以70.00%±2.85的最大准确性和kappa = 0.40的表现优于其余范例。结果表明,有可能在2级BCI中部署左膝关节伸展KMI和右膝关节伸展KMI,以控制机器人/假肢膝盖。

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