Center for Brain and Cognition, Computational Neuroscience Group, Department of Information and Communication Technologies, Universitat Pompeu Fabra, Barcelona, 08005, Spain.
Departament de Matemàtiques, Universitat Politècnica de Catalunya, Barcelona, Spain.
Commun Biol. 2023 Jun 10;6(1):627. doi: 10.1038/s42003-023-05001-y.
Scale invariance is a characteristic of neural activity. How this property emerges from neural interactions remains a fundamental question. Here, we studied the relation between scale-invariant brain dynamics and structural connectivity by analyzing human resting-state (rs-) fMRI signals, together with diffusion MRI (dMRI) connectivity and its approximation as an exponentially decaying function of the distance between brain regions. We analyzed the rs-fMRI dynamics using functional connectivity and a recently proposed phenomenological renormalization group (PRG) method that tracks the change of collective activity after successive coarse-graining at different scales. We found that brain dynamics display power-law correlations and power-law scaling as a function of PRG coarse-graining based on functional or structural connectivity. Moreover, we modeled the brain activity using a network of spins interacting through large-scale connectivity and presenting a phase transition between ordered and disordered phases. Within this simple model, we found that the observed scaling features were likely to emerge from critical dynamics and connections exponentially decaying with distance. In conclusion, our study tests the PRG method using large-scale brain activity and theoretical models and suggests that scaling of rs-fMRI activity relates to criticality.
尺度不变性是神经活动的一个特征。这种特性如何从神经相互作用中产生,仍然是一个基本问题。在这里,我们通过分析人类静息状态(rs-)fMRI 信号,以及扩散 MRI(dMRI)连接及其作为脑区之间距离的指数衰减函数的近似值,研究了尺度不变的脑动力学与结构连接之间的关系。我们使用功能连接和最近提出的现象学重整化群(PRG)方法分析 rs-fMRI 动力学,该方法跟踪在不同尺度上进行连续粗粒化后集体活动的变化。我们发现,大脑动力学表现出幂律相关性和幂律缩放,这是基于功能或结构连接的 PRG 粗粒化的函数。此外,我们使用通过大尺度连接相互作用的自旋网络对大脑活动进行建模,并呈现出有序相和无序相之间的相变。在这个简单的模型中,我们发现观察到的缩放特征可能源自临界动力学和距离呈指数衰减的连接。总之,我们的研究使用大规模脑活动和理论模型测试了 PRG 方法,并表明 rs-fMRI 活动的缩放与临界性有关。