Graph-theoretical analysis for energy landscape reveals the organization of state transitions in the resting-state human cerebral cortex
PLOS ONE 14(9), e0222161Corresponding author
Abstract
The resting-state brain is often considered a nonlinear dynamic system transitioning among multiple coexisting stable states. Despite the increasing number of studies on the multistability of the brain system, the processes of state transitions have rarely been systematically explored. Thus, we investigated the state transition processes of the human cerebral cortex system at rest by introducing a graph-theoretical analysis of the state transition network. The energy landscape analysis of brain state occurrences, estimated using the pairwise maximum entropy model for resting-state fMRI data, identified multiple local minima, some of which mediate multi-step transitions toward the global minimum. The state transition among local minima is clustered into two groups according to state transition rates and most inter-group state transitions were mediated by a hub transition state. The distance to the hub transition state determined the path length of the inter-group transition. The cortical system appeared to have redundancy in inter-group transitions when the hub transition state was removed. Such a hub-like organization of transition processes disappeared when the connectivity of the cortical system was altered from the resting-state configuration. In the state transition, the default mode network acts as a transition hub, while coactivation of the prefrontal cortex and default mode network is captured as the global minimum. In summary, the resting-state cerebral cortex has a well-organized architecture of state transitions among stable states, when evaluated by a graph-theoretical analysis of the nonlinear state transition network of the brain.
Korean summary
휴지기 뇌가 여러 안정 상태 사이를 어떤 경로로 옮겨 다니는지, 그 상태 전이 과정의 조직 원리를 살핀 연구입니다. 휴지기 fMRI에 쌍별 최대 엔트로피 모델을 적용해 대뇌피질 상태의 에너지 지형을 추정하고, 국소 최소점들 사이의 전이를 하나의 연결망으로 보아 그래프 이론적으로 분석했습니다. 국소 최소점 간 전이는 전이율에 따라 두 군집으로 나뉘었고, 군집 사이의 전이는 대부분 하나의 허브 전이 상태를 거쳐 일어났으며, 이 허브를 제거하면 우회 경로가 나타나는 여유성(redundancy)도 확인되었습니다. 이러한 허브 중심 조직은 피질 연결성을 휴지기 구성에서 벗어나게 바꾸면 사라졌습니다. 상태 전이에서 기본상태망이 전이 허브로 작용하고 전전두피질과 기본상태망의 동시 활성이 전체 최소점으로 나타났는데, 이는 휴지기 대뇌피질이 안정 상태 간 전이에 잘 조직된 구조를 갖고 있음을 보여줍니다.