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Predicting alcohol-related memory problems in older adults: A machine learning study with multi-domain features

Kamarajan, C.; Pandey, A. K.; Chorlian, D. B.; Meyers, J. L.; Kinreich, S.; Pandey, G.; Subbie Saenz de Viteri, S.; Zhang, J.; Kuang, W.; Barr, P. B.; Aliev, F.; Anokhin, A. P.; Plawecki, M. H.; Kuperman, S.; Almasy, L.; Merikangas, A.; Brislin, S. J.; Bauer, L.; Hesselbrock, V.; Chan, G.; Kramer, J.; Lai, D.; Hartz, S.; Bierut, L. J.; McCutcheon, V. V.; Bucholz, K. K.; Dick, D. M.; Schuckit, M. A.; Edenberg, H. J.; Porjesz, B.

2023-01-02 neuroscience
10.1101/2022.12.30.522330 bioRxiv
Show abstract

Memory problems are common among older adults with a history of alcohol use disorder (AUD). Employing a machine learning framework, the current study investigates the use of multi-domain features to classify individuals with and without alcohol-induced memory problems. A group of 94 individuals (ages 50-81 years) with alcohol-induced memory problems (Memory group) were compared with a matched Control group who did not have memory problems. The Random Forests model identified specific features from each domain that contributed to the classification of Memory vs. Control group (AUC=88.29%). Specifically, individuals from the Memory group manifested a predominant pattern of hyperconnectivity across the default mode network regions except some connections involving anterior cingulate cortex which were predominantly hypoconnected. Other significant contributing features were (i) polygenic risk scores for AUD, (ii) alcohol consumption and related health consequences during the past 5 years, such as health problems, past negative experiences, withdrawal symptoms, and the largest number of drinks in a day during the past 12 months, and (iii) elevated neuroticism and increased harm avoidance, and fewer positive "uplift" life events. At the neural systems level, hyperconnectivity across the default mode network regions, including the connections across the hippocampal hub regions, in individuals with memory problems may indicate dysregulation in neural information processing. Overall, the study outlines the importance of utilizing multidomain features, consisting of resting-state brain connectivity collected [~]18 years ago, together with personality, life experiences, polygenic risk, and alcohol consumption and related consequences, to predict alcohol-related memory problems that arise in later life.

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