Cognitive Brain Dynamics Lab National Brain Research Centre (NBRC), NH8 Nainwal Mode, 122051, Manesar, Haryana, India.
Institució Catalana de la Recerc Estudis Avançats (ICREA), Universitat Pompeu Fabra, Passeig Lluís, Companys 23, Barcelona, 08010, Spain.
Neuroimage. 2020 Aug 1;216:116824. doi: 10.1016/j.neuroimage.2020.116824. Epub 2020 Apr 11.
Healthy ageing is accompanied by changes to spontaneous electromagnetic oscillations. At the macroscopic scale, previous studies have quantified the basic features, e.g., power and frequencies in rhythms of interest from the perspective of attention, perception, learning and memory. On the other hand, signatures and modes of neural communication have recently been argued to be identifiable from global measures applied on neuro-electromagnetic data such as global coherence that quantifies the degree of togetherness of distributed neural oscillations and metastability that parametrizes the transient dynamics of the network switching between successive stable states. Here, we demonstrate that global coherence and metastability can be informative measures to track healthy ageing dynamics over lifespan and together with the traditional spectral measures provides an attractive explanation of neuronal information processing. Finding normative patterns of brain rhythms in resting state MEG would naturally pave the way for tracking task relevant metrics that could crucially determine cognitive flexibility and performance. While previously reported observations of a reduction in peak alpha frequency and increased beta power in older adults are reflective of changes at individual sensors (during rest and task), global coherence and metastability pinpoint the underlying coordination dynamics over multiple brain areas across the entire lifespan. In addition to replication of the previous observations in a substantially larger lifespan cohort than what was previously reported, we also demonstrate, for the first time to the best of our knowledge, age related changes in coherence and metastability in signals over time scales of neuronal processing. Furthermore, we observed a marked frequency dependence in changes in global coordination dynamics, which, coupled with the long-held view of specific frequency bands subserving different aspects of cognition, hints at differential functional processing roles for slower and faster brain dynamics.
健康的衰老伴随着自发电磁振荡的变化。在宏观尺度上,以前的研究已经从注意力、感知、学习和记忆的角度量化了感兴趣节律的基本特征,例如功率和频率。另一方面,最近有人认为,从神经电磁数据的全局测量中可以识别出神经通讯的特征和模式,例如全局相干性,它量化了分布式神经振荡的一致性程度,以及突现稳定性,它参数化了网络在连续稳定状态之间的瞬态动力学的转换。在这里,我们证明全局相干性和突现稳定性可以作为信息性指标,用于跟踪整个生命周期中的健康衰老动态。与传统的谱测量相结合,为跟踪与任务相关的指标提供了一种有吸引力的解释,这些指标可以决定认知灵活性和性能。在静息状态 MEG 中找到大脑节律的规范模式,自然会为跟踪与任务相关的指标铺平道路,这些指标可以决定认知灵活性和性能。虽然以前关于老年人峰值阿尔法频率降低和β波功率增加的观察结果反映了个体传感器(在休息和任务期间)的变化,但全局相干性和突现稳定性却能在整个生命周期中指出多个大脑区域的潜在协调动力学。除了在比以前报告的更大的寿命队列中复制以前的观察结果外,我们还首次展示了,就我们所知,在神经元处理的时间尺度上,相干性和突现稳定性随年龄的变化。此外,我们观察到全局协调动力学变化的显著频率依赖性,这与特定频带支持认知不同方面的长期观点相结合,暗示了较慢和较快的大脑动力学具有不同的功能处理作用。