Search bioRxivSearch

Biology subjects

Crain, S.

Publications and source records attributed to Crain, S..

2 recordsLinked to original sources

Co-Increasing Neuronal Noise and Beta Power in the Developing Brain

Accumulating evidence across species indicates that brain oscillations are superimposed upon an aperiodic 1/f - like power spectrum. Maturational changes in neuronal oscillations have not been assessed in tandem with this underlying aperiodic spectrum. The current study uncovers co-maturation of the aperiodic component alongside the periodic components (oscillations) in spontaneous magnetoencephalography (MEG) data. Beamformer-reconstructed MEG time-series allowed a direct comparison of power in the source domain between 24 children (8.0 {+/-} 2.5 years, 17 males) and 24 adults (40.6 {+/-} 17.4 years, 16 males). Our results suggest that the redistribution of oscillatory power from lower to higher frequencies that is observed in childhood does not hold once the age-related changes in the aperiodic signal are controlled for. When estimating both the periodic and aperiodic components, we found that power increases with age in the beta band only, and that the 1/f signal is flattened in adults compared to children. These results suggest a pattern of co-maturing beta oscillatory power with the aperiodic 1/f signal in typical childhood development.

neuroscience

Dysbiosis in a canine model of human fistulizing Crohn’s disease

BackgroundCrohns disease (CD) is a chronic immune-mediated inflammatory condition caused by the loss of mucosal tolerance towards the commensal microbiota. Approximately 70% of CD patients experience perianal complications. Perianal fistulizing is a predictor of poor long-term outcomes. Animal models of gut inflammation have failed to fully recapitulate the human manifestations of fistulizing CD. Here, we evaluated dogs with spontaneous canine anal furunculosis (CAF), a disease with clinical similarities to fistulizing CD, as a surrogate model for human fistulizing CD.\n\nResultsBy comparing the gut microbiomes between dogs suffering from CAF (CAF dogs) and healthy dogs, we show that similar to microbiome population trends in CD humans, CAF dogs microbiomes are either very dissimilar (dysbiotic) or similar, yet unique, to healthy dogs microbiomes. Compared to healthy or healthy-like CAF microbiomes, dysbiotic CAF microbiomes showed an increased abundance of Bacteroides vulgatus and Escherichia coli and a decreased abundance of Megamonas species and Prevotella copri. These same determinant bacteria are associated with human CD.\n\nConclusionsOur results highlight the similarities in microbiome community patterns between CAF dogs and CD humans, including overlapping determinant bacterial taxa, and support the use of CAF dogs as a surrogate model to study human fistulizing CD.

microbiology