Collapse of complexity of brain and body activity due to excessive inhibition and MeCP2 disruption

Author:

Li Jingwen,Kells Patrick A.,Osgood Ayla C.,Gautam Shree HariORCID,Shew Woodrow L.ORCID

Abstract

Complex body movements require complex dynamics and coordination among neurons in motor cortex. Conversely, a long-standing theoretical notion supposes that if many neurons in motor cortex become excessively synchronized, they may lack the necessary complexity for healthy motor coding. However, direct experimental support for this idea is rare and underlying mechanisms are unclear. Here we recorded three-dimensional body movements and spiking activity of many single neurons in motor cortex of rats with enhanced synaptic inhibition and a transgenic rat model of Rett syndrome (RTT). For both cases, we found a collapse of complexity in the motor system. Reduced complexity was apparent in lower-dimensional, stereotyped brain–body interactions, neural synchrony, and simpler behavior. Our results demonstrate how imbalanced inhibition can cause excessive synchrony among movement-related neurons and, consequently, a stereotyped motor code. Excessive inhibition and synchrony may underlie abnormal motor function in RTT.

Funder

HHS | National Institutes of Health

Foundational Questions Institute

Arkansas Biosciences Institute

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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