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首页> 外文期刊>International Journal of Neural Systems >Probing to Observe Neural Dynamics Investigated with Networked Kuramoto Oscillators
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Probing to Observe Neural Dynamics Investigated with Networked Kuramoto Oscillators

机译:探索观察网络化的仓本振荡器研究的神经动力学

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摘要

The expansion of frontiers in neural engineering is dependent on the ability to track, detect and predict dynamics in neural tissue. Recent innovations to elucidate information from electrical recordings of brain dynamics, such as epileptic seizure prediction, have involved switching to an active probing paradigm using electrically evoked recordings rather than traditional passive measurements. This paper positions the advantage of probing in terms of information extraction, by using a coupled oscillator Kuramoto model to represent brain dynamics. While active probing performs better at observing underlying system synchrony in Kuramoto networks, especially in non-Gaussian measurement environments, the benefits diminish with increasing relative size of electrode spatial resolution compared to synchrony area. This suggests probing will be useful for improved characterization of synchrony for suitably dense electrode recordings.
机译:神经工程领域的扩展取决于跟踪,检测和预测神经组织动力学的能力。阐明诸如癫痫发作预测之类的大脑动态电记录信息的最新创新涉及使用电诱发记录​​而不是传统的被动测量来切换到主动探测范例。本文通过使用耦合振荡器Kuramoto模型代表大脑动力学,在信息提取方面定位了探测的优势。尽管在Kuramoto网络中,尤其是在非高斯测量环境中,主动探测在观察底层系统同步方面表现更好,但是与同步区域相比,随着电极空间分辨率的相对大小的增加,其收益会减少。这表明探测对于改善适当致密的电极记录的同步性的表征将是有用的。

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