首页> 外文会议>32nd Annual International Conference of the IEEE Engineering in Medicine and Biology Society >Predicting lower limb muscular activity during standing and squatting using spikes of primary motor cortical neurons in monkeys
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Predicting lower limb muscular activity during standing and squatting using spikes of primary motor cortical neurons in monkeys

机译:使用猴子原发性运动皮层神经元的突峰预测站立和蹲下时的下肢肌肉活动

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In this study, we investigated predicting lower limb muscular activities of monkeys during standing and squatting motions using neuronal spikes in primary motor cortex M1. Finite impulse response models were built for prediction. Acute electrode arrays were used to collect neuronal spikes in the lower limb representation area of M1 in the left hemisphere, and electrodes were implanted to the right leg muscles to collect EMG signals. Multiple regions of the lower limb representation area of M1 were explored. The neurons from two common regions demonstrated high predictive power on all 6 investigated right leg EMG signals. This study shows that the cortical neuronal spikes can be used to predict lower limb muscular activities with high accuracy, and identifies regions of high predictive power, where chronic electrodes can be implanted for future brain machine interface applications.
机译:在这项研究中,我们调查了使用原发性运动皮层M1中的神经元突峰来预测站立和下蹲运动期间猴子的下肢肌肉活动。建立了有限的脉冲响应模型进行预测。急性电极阵列用于收集左半球M1的下肢代表区域的神经元尖峰,并将电极植入右腿肌肉以收集EMG信号。探索了M1下肢代表区域的多个区域。来自两个共同区域的神经元在所有6个研究的右腿EMG信号上均显示出较高的预测能力。这项研究表明,皮质神经元尖峰可用于高精度预测下肢肌肉活动,并确定具有高预测能力的区域,可在其中植入慢性电极,以供将来的脑机接口应用。

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