首页> 外文会议>International IEEE/EMBS Conference on Neural Engineering >Comparison of long-term decoding stability of ultra high frequency band local field potentials (>500Hz) and spike signals in primate motor cortex
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Comparison of long-term decoding stability of ultra high frequency band local field potentials (>500Hz) and spike signals in primate motor cortex

机译:灵长类运动皮层中超高频带局部电场电势(> 500Hz)和尖峰信号的长期解码稳定性比较

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It has been widely reported that the local field potentials (LFPs) can be a useful signal for neural decoding as well as the spike in the brain-machine interfaces (BMIs) studies. However, most researchers mainly focused on the low-frequency bands LFPs and only a few studies used on the ultra high frequency band (>500 Hz) LFPs (uhfLFPs). In this study, we compare the long-term decoding stability of uhfLFPs and multi-unit activities (MUAs) when a male macaque monkey was performing a center-out task. LFPs and MUAs were collected from dorsal premotor cortex of the monkey with a microelectrode array. Neural data were recorded from 4 to 8 months post-implantation, during which period a part of the spikes were lost. The power spectrum of uhfLFPs (>500 Hz) and the firing rate of MUAs were calculated as the features of neural signals. A K-nearest neighbor classifier and a Kalman filter were used to decode the direction and the trajectories of wrist movement respectively. Our results showed that uhfLFPs got a better performance in long-term decoding in both discrete and continuous decoding. It infers that uhfLFPs could be an alternative source of control signals in long-term BMIs study.
机译:据广泛报道,局部场电势(LFP)可能是神经解码以及脑机接口(BMI)研究峰值的有用信号。但是,大多数研究人员主要集中在低频LFP,而很少有研究用于超高频(> 500 Hz)LFP(uhfLFP)。在这项研究中,我们比较了雄性猕猴执行中心向外任务时uhfLFP和多单元活动(MUA)的长期解码稳定性。用微电极阵列从猴子的背运动前皮层收集LFP和MUA。植入后4到8个月记录了神经数据,在此期间部分尖峰消失了。计算出uhfLFP的功率谱(> 500 Hz)和MUA的发射速率,作为神经信号的特征。使用K近邻分类器和卡尔曼滤波器分别对腕部运动的方向和轨迹进行解码。我们的结果表明,在离散解码和连续解码中,uhfLFP在长期解码中均具有更好的性能。推断在长期BMI研究中uhfLFP可能是控制信号的替代来源。

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