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首页> 外文期刊>IEEE transactions on neural systems and rehabilitation engineering >Single-Finger Neural Basis Information-Based Neural Decoder for Multi-Finger Movements
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Single-Finger Neural Basis Information-Based Neural Decoder for Multi-Finger Movements

机译:基于单手指神经基础信息的多手指运动神经解码器

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摘要

In this paper, we investigate the relationship between single and multi-finger movements. By exploiting the neural correlation between the temporal firing patterns between movements, we show that the Pearson’s correlation coefficient for the physically related movement pairs are greater than those of others; the firing rates of the neurons that are tuned to a single-finger movements also increases when the corresponding multi-finger movements are instructed. We also use a hierarchical cluster analysis to verify not only the relationship between the single and multi-finger movements, but also the relationship between the flexion and extension movements. Furthermore, we propose a novel decoding method of modeling neural firing patterns while omitting the training process of the multi-finger movements. For the decoding, the Skellam and Gaussian probability distributions are used as mathematical models. The probabilistic distribution model of the multi-finger movements was estimated using the neural activity that was acquired during single-finger movements. As a result, the proposed neural decoding accuracy comparable with that of the supervised neural decoding accuracy when all of the neurons were used for the multi-finger movements. These results suggest that only the neural activities of single-finger movements can be exploited for the control of dexterous multi-finger neuroprosthetics.
机译:在本文中,我们研究了单指运动和多指运动之间的关系。通过利用运动之间的时间激发模式之间的神经相关性,我们表明,与身体相关的运动对的皮尔逊相关系数大于其他运动对。当指示相应的多指运动时,调整为单指运动的神经元的放电速率也会增加。我们还使用层次聚类分析不仅验证了单指运动与多指运动之间的关系,还验证了屈伸运动之间的关系。此外,我们提出了一种新颖的解码方法,该方法在省略多指运动的训练过程的同时对神经发射模式进行建模。对于解码,将Skellam和高斯概率分布用作数学模型。多指运动的概率分布模型是使用在单指运动过程中获得的神经活动来估计的。结果,当所有神经元都用于多指运动时,拟议的神经解码精度与监督神经解码精度相当。这些结果表明,只有单指运动的神经活动才能用于控制灵巧多指神经假体。

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