Hostname: page-component-848d4c4894-hfldf Total loading time: 0 Render date: 2024-06-06T04:44:06.625Z Has data issue: false hasContentIssue false

Predicting Suicide Attempts among Major Depressive Disorder Patients with Structural Neuroimaging: A Machine Learning Approach

Published online by Cambridge University Press:  19 July 2023

L. Fortaner-Uyà*
Affiliation:
University Vita-Salute San Raffaele, Division of Neuroscience IRCCS San Raffaele Hospital, Psychiatry and Clinical Psychobiology Unit - Division of Neuroscience
C. Monopoli
Affiliation:
IRCCS San Raffaele Hospital, Psychiatry and Clinical Psychobiology Unit - Division of Neuroscience
F. Calesella
Affiliation:
University Vita-Salute San Raffaele, Division of Neuroscience IRCCS San Raffaele Hospital, Psychiatry and Clinical Psychobiology Unit - Division of Neuroscience
F. Colombo
Affiliation:
University Vita-Salute San Raffaele, Division of Neuroscience IRCCS San Raffaele Hospital, Psychiatry and Clinical Psychobiology Unit - Division of Neuroscience
B. Bravi
Affiliation:
University Vita-Salute San Raffaele, Division of Neuroscience IRCCS San Raffaele Hospital, Psychiatry and Clinical Psychobiology Unit - Division of Neuroscience
E. Maggioni
Affiliation:
Politecnico di Milano, Department of Electronics - Information and Bioengineering Fondazione IRCCS Ca’ Granda Ospedale Maggiore Policlinico, Department of Neurosciences and Mental Health, Milan, Italy
E. Tassi
Affiliation:
Politecnico di Milano, Department of Electronics - Information and Bioengineering
S. Poletti
Affiliation:
University Vita-Salute San Raffaele, Division of Neuroscience IRCCS San Raffaele Hospital, Psychiatry and Clinical Psychobiology Unit - Division of Neuroscience
I. Bollettini
Affiliation:
IRCCS San Raffaele Hospital, Psychiatry and Clinical Psychobiology Unit - Division of Neuroscience
F. Benedetti
Affiliation:
University Vita-Salute San Raffaele, Division of Neuroscience IRCCS San Raffaele Hospital, Psychiatry and Clinical Psychobiology Unit - Division of Neuroscience
B. Vai
Affiliation:
University Vita-Salute San Raffaele, Division of Neuroscience IRCCS San Raffaele Hospital, Psychiatry and Clinical Psychobiology Unit - Division of Neuroscience
*
*Corresponding author.

Abstract

Core share and HTML view are not available for this content. However, as you have access to this content, a full PDF is available via the ‘Save PDF’ action button.
Introduction

Every year at least one million people die by suicide, with major depressive disorder (MDD) being one of the major causes of suicide deaths. Current suicide risk assessments rely on subjective information, are time consuming, low predictive, and poorly reliable. Thus, finding objective biomarkers of suicidality is crucial to move clinical practice towards a precision psychiatry framework, enhancing suicide risk detection and prevention for MDD.

Objectives

The present study aimed at applying machine learning (ML) algorithms on both grey matter and white-matter voxel-wise data to discriminate MDD suicide attempters (SA) from non-attempters (nSA).

Methods

91 currently depressed MDD patients (24 SA, 67 nSA) underwent a structural MRI session. T1-weighted images and diffusion tensor imaging scans were respectively pre-processed using Computational Atlas Toolbox 12 (CAT12) and spatial tract-based statistics (TBSS) on FSL, to obtain both voxel-based morphometry (VBM) and fractional anisotropy (FA) measures. Three classification models were built, entering whole-brain VBM and FA maps alone into a Support Vector Machine (SVM) and combining both modalities into a Multiple Kernel Learning (MKL) algorithm. All models were trained through a 5-fold nested cross-validation with subsampling to calculate reliable estimates of balanced accuracy, specificity, sensitivity, and area under the receiver operator curve (AUC).

Results

Models’ performances are summarized in Table 1.Table 1.

Models’ performances.

Input featuresAlgorithmSpecificitySensitivityBalanced accuracyAUC
VBMSVM55.00%50.00%52.50%0.55
FASVM72.00%54.00%63.00%0.62
VBM and FAMKL68.00%54.00%61.00%0.58

Abbreviations: AUC, area under the receiver operator curve; FA, fractional anisotropy; VBM, voxel-based morphometry.

Conclusions

Overall, although overcoming the random classification accuracy (i.e., 50%), performances of all models classifying SA and nSA MDD patients were moderate, possibly due to the imbalanced numerosity of classes, with SVM on FA reaching the highest accuracy. Thus, future studies may enlarge the sample and add different features (e.g., functional neuroimaging data) to develop an objective and reliable predictive model to assess and hence prevent suicide risk among MDD patients.

Disclosure of Interest

None Declared

Type
Abstract
Creative Commons
Creative Common License - CCCreative Common License - BY
This is an Open Access article, distributed under the terms of the Creative Commons Attribution licence (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted re-use, distribution, and reproduction in any medium, provided the original work is properly cited.
Copyright
© The Author(s), 2023. Published by Cambridge University Press on behalf of the European Psychiatric Association
Submit a response

Comments

No Comments have been published for this article.