Modelling brain based on canonical ensemble with functional MRI: A thermodynamic exploration on neural system
Chenxi Zhou, Bin Yang, Wenliang Fan, Wei Li

TL;DR
This paper introduces a novel thermodynamic model of the brain based on fMRI data, demonstrating that neural activity follows thermodynamic laws and improving Alzheimer's detection accuracy.
Contribution
The study is the first to model the brain at a system level using thermodynamics, linking neural activity to thermodynamic parameters for disease diagnosis.
Findings
Brain follows thermodynamic laws during activation.
Thermodynamic parameters effectively describe neural system states.
Model improves accuracy in Alzheimer's disease detection.
Abstract
Objective. Modelling is an important way to study the working mechanism of brain. While the characterization and understanding of brain are still inadequate. This study tried to build a model of brain from the perspective of thermodynamics at system level, which brought a new thinking to brain modelling. Approach. Regarding brain regions as systems, voxels as particles, and intensity of signals as energy of particles, the thermodynamic model of brain was built based on canonical ensemble theory. Two pairs of activated regions and two pairs of inactivated brain regions were selected for comparison in this study, and the analysis on thermodynamic properties based on the model proposed were performed. In addition, the thermodynamic properties were also extracted as input features for the detection of Alzheimer's disease. Main results. The experiment results verified the assumption that…
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Taxonomy
TopicsFunctional Brain Connectivity Studies · Neural dynamics and brain function · Photoreceptor and optogenetics research
