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Direction and speed tuning of motor-cortex multi-unit activity and local field potentials during reaching movements

机译:运动过程中运动皮质多单元活动和局部场电位的方向和速度调整

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Primary motor-cortex multi-unit activity (MUA) and local-field potentials (LFPs) have both been suggested as potential control signals for brain-computer interfaces (BCIs) aimed at movement restoration. Some studies report that LFP-based decoding is comparable to spiking-based decoding, while others offer contradicting evidence. Differences in experimental paradigms, tuning models and decoding techniques make it hard to directly compare these results. Here, we use regression and mutual information analyses to study how MUA and LFP encode various kinematic parameters during reaching movements. We find that in addition to previously reported directional tuning, MUA also contains prominent speed tuning. LFP activity in low-frequency bands (15–40Hz, LFP
机译:初级运动皮层多单元活动(MUA)和局部场电位(LFP)均已被建议作为旨在恢复运动的脑机接口(BCI)的电位控制信号。一些研究报告说,基于LFP的解码可与基于尖峰的解码媲美,而其他研究则提供了相互矛盾的证据。实验范式,调整模型和解码技术的差异使得很难直接比较这些结果。在这里,我们使用回归和互信息分析来研究MUA和LFP如何在到达运动期间编码各种运动学参数。我们发现,除了先前报告的方向调整之外,MUA还包含出色的速度调整。 LFP在低频频带(15–40Hz,LFP)中的活动

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