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Machine Learning Based Psychotic Behaviors Prediction from Facebook Status Updates

Lookup NU author(s): Dr Husnain SheraziORCiD

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This work is licensed under a Creative Commons Attribution 4.0 International License (CC BY 4.0).


Abstract

© 2022 Tech Science Press. All rights reserved.With the advent of technological advancements and the widespread Internet connectivity during the last couple of decades, social media platforms (such as Facebook, Twitter, and Instagram) have consumed a large proportion of time in our daily lives. People tend to stay alive on their social media with recent updates, as it has become the primary source of interactionwithin social circles. Although social media platforms offer several remarkable features but are simultaneously prone to various critical vulnerabilities. Recent studies have revealed a strong correlation between the usage of social media and associated mental health issues consequently leading to depression, anxiety, suicide commitment, and mental disorder, particularly in the young adults who have excessively spent time on socialmedia which necessitates a thorough psychological analysis of all these platforms. This study aims to exploit machine learning techniques for the classification of psychotic issues based on Facebook status updates. In this paper, we start with depression detection in the first instance and then expand on analyzing six other psychotic issues (e.g., depression, anxiety, psychopathic deviate, hypochondria, unrealistic, and hypomania) commonly found in adults due to extreme use of social media networks. To classify the psychotic issues with the user's mental state, we have employed different Machine Learning (ML) classifiers i.e., Random Forest (RF), Support Vector Machine (SVM), Naïve Bayes (NB), and K-Nearest Neighbor (KNN). The usedMLmodels are trained and tested by using different combinations of features selection techniques. To observe themost suitable classifiers for psychotic issue classification, a cost-benefit function (sometimes termed as 'Suitability') has been used which combines the accuracy of the model with its execution time. The experimental evidence argues that RF outperforms its competitor classifiers with the unigram feature set.


Publication metadata

Author(s): Ali M, Baqir A, Sherazi HHR, Hussain A, Alshehri AH, Imran MA

Publication type: Article

Publication status: Published

Journal: Computers, Materials and Continua

Year: 2022

Volume: 72

Issue: 2

Pages: 2411-2427

Online publication date: 29/02/2024

Acceptance date: 25/01/2022

Date deposited: 23/05/2024

ISSN (print): 1546-2218

ISSN (electronic): 1546-2226

Publisher: Tech Science Press

URL: https://doi.org/10.32604/cmc.2022.024704

DOI: 10.32604/cmc.2022.024704


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