Characterization of the Community Structure of Large-Scale Functional Brain Networks During Ketamine-Medetomidine Anesthetic Induction
arXiv Preprint Archive June 15, 2016 via arXiv
Summary
AI-generated from the abstractThis research characterized the community structure of functional brain networks during anesthetic induction in a macaque. Intracranial recordings were taken during a Ketamine-Medetomidine anesthetic process. Changes in community structure appeared within about one and a half minutes after anesthetic administration. The awake state showed large clusters involving frontal and parietal regions, while the anesthetized state featured communities in primary visual and motor cortices, with secondary associative cortex areas most affected. The authors report that general anesthesia influences functional cluster structure, contributing to understanding neural correlates of consciousness.
Study at a glance
| Characteristics | Observational study Peer reviewed |
|---|---|
| Sample size | 1 |
| Population | Old-world macaque (Macaca fuscata) |
| Intervention | Ketamine-Medetomidine |
| Duration | Approximately one and a half minutes after administering the anesthetics |
| Keywords | Q-bio.nc |
| Key finding | Anesthetic induction with Ketamine-Medetomidine altered the community structure of functional brain networks, shifting from large frontal-parietal clusters in the awake state to communities in primary visual and motor cortices during anesthesia. |
Abstract
One of the main goals of neuroscience is to understand how an organism's cognitive capacities or physiological states are potentially related to brain activities that involve the interaction of multiple brain structures and cortical areas. A key feature of functional brain networks is that they are modularly structured, and this modular architecture is regarded as accounting for a range of properties and functional dynamics. In the neurobiological context, communities may indicate brain regions involved in the same activity, representing neural-segregated processes. Several studies have demonstrated the modular character of the organization of brain activities. However, empirical evidence regarding its dynamics and relation to different levels of consciousness has not yet been reported. In this context, this research sought to characterize the community structure of functional brain networks during an anesthetic induction process. The experiment was based on intracranial recordings of the neural activities of an old-world macaque of the species Macaca fuscata during a Ketamine-Medetomidine anesthetic induction process. Changes were observed within approximately one and a half minutes after administering the anesthetics, revealing a transition in the community structure. The awake state was characterized by large clusters involving the frontal and parietal regions. In contrast, the anesthetized state was marked by the presence of communities in the primary visual and motor cortices, while the areas of the secondary associative cortex were the most affected. The results report the influence of general anesthesia on the structure of functional clusters, contributing to understanding some novel aspects of the neural correlates of consciousness.