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Journal Article

Citation

Burke TA, Ammerman BA, Jacobucci R. J. Affect. Disord. 2019; 245: 869-884.

Affiliation

University of Notre Dame, Department of Psychology, Notre Dame, IN, USA.

Copyright

(Copyright © 2019, Elsevier Publishing)

DOI

10.1016/j.jad.2018.11.073

PMID

30699872

Abstract

BACKGROUND: Machine learning techniques offer promise to improve suicide risk prediction. In the current systematic review, we aimed to review the existing literature on the application of machine learning techniques to predict self-injurious thoughts and behaviors (SITBs).

METHOD: We systematically searched PsycINFO, PsycARTICLES, ERIC, CINAHL, and MEDLINE for articles published through February 2018.

RESULTS: Thirty-five articles met criteria to be included in the review. Included articles were reviewed by outcome: suicide death, suicide attempt, suicide plan, suicidal ideation, suicide risk, and non-suicidal self-injury. We observed three general aims in the use of SITB-focused machine learning analyses: (1) improving prediction accuracy, (2) identifying important model indicators (i.e., variable selection) and indicator interactions, and (3) modeling underlying subgroups. For studies with the aim of boosting predictive accuracy, we observed greater prediction accuracy of SITBs than in previous studies using traditional statistical methods. Studies using machine learning for variable selection purposes have both replicated findings of well-known SITB risk factors and identified novel variables that may augment model performance. Finally, some of these studies have allowed for subgroup identification, which in turn has helped to inform clinical cutoffs. LIMITATIONS: Limitations of the current review include relatively low paper sample size, inconsistent reporting procedures resulting in an inability to compare model accuracy across studies, and lack of model validation on external samples.

CONCLUSIONS: We concluded that leveraging machine learning techniques to further predictive accuracy and identify novel indicators will aid in the prediction and prevention of suicide.

Copyright © 2018. Published by Elsevier B.V.


Language: en

Keywords

Big data; Exploratory data mining; Machine learning; Non-suicidal self-injury; Pattern recognition; Suicidal ideation; Suicide; Suicide attempt; Suicide risk

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