论文标题

大脑节奏的模式动力学和随机性

Pattern dynamics and stochasticity of the brain rhythms

论文作者

Hoffman, Clarissa, Cheng, Jingheng, Ji, Daoyun, Dabaghian, Y.

论文摘要

我们目前对脑节律的理解是基于量化其瞬时或时间平均特征的基础。尚未探索的是波的实际结构 - 它们在有限的时间尺度上的形状和图案。为了解决这个问题,我们使用了两种独立的方法将波形形式与其生理功能联系起来:第一种是基于量化其与基本平均行为的一致性的基础,第二种评估了波浪特征的“秩序”。相应的措施捕获了波浪的特征和异常行为,例如非典型周期性或过度聚类,并在模式的动力学和动物的位置,速度和加速度之间展示了耦合。具体而言,我们研究了$θ$和$γ$波的模式,以及尖锐的波浪波动,以及观察到的速度调节波的节奏的变化,有序和加速度之间的反相关系以及模式的空间选择性。此外,我们发现有序性和规律性之间存在相互依赖性:稳定振荡行为的较大偏差倾向于伴随着峰值和低谷的时间混乱。综上所述,我们的结果提供了关于脑波结构,动力学和功能的互补性 - 中尺度的视角。

Our current understanding of brain rhythms is based on quantifying their instantaneous or time-averaged characteristics. What remains unexplored, is the actual structure of the waves -- their shapes and patterns over finite timescales. To address this, we used two independent approaches to link wave forms to their physiological functions: the first is based on quantifying their consistency with the underlying mean behavior, and the second assesses "orderliness" of the waves' features. The corresponding measures capture the wave's characteristic and abnormal behaviors, such as atypical periodicity or excessive clustering, and demonstrate coupling between the patterns' dynamics and the animal's location, speed and acceleration. Specifically, we studied patterns of $θ$ and $γ$ waves, and Sharp Wave Ripples, and observed speed-modulated changes of the wave's cadence, an antiphase relationship between orderliness and acceleration, as well as spatial selectiveness of patterns. Furthermore, we found an interdependence between orderliness and regularity: larger deviations from steady oscillatory behavior tend to accompany disarrayed temporal cluttering of peaks and troughs. Taken together, our results offer a complementary -- mesoscale -- perspective on brain wave structure, dynamics, and functionality.

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