Abstract Background Suicidal ideation is an important modifiable risk factor for suicide in major depressive disorder and understanding its neurobiological underpinnings has important clinical implications. We used resting-state functional magnetic resonance imaging to investigate functional connectivity correlates of suicidal ideation severity in patients with treatment-resistant depression. Aims & Objectives Primary objective was to utilize resting-state functional magnetic resonance imaging techniques to investigate functional connectivity correlates of suicidal ideation severity in patients with difficult-to-treat depression. Method The sample was comprised of n=41 patients with treatment-resistant depression and a lifetime history of suicidal ideation and n=47 age- and sex- matched controls. Resting-state functional magnetic resonance imaging data was acquired at 3T and analyzed using the CONN Functional Connectivity toolbox. A whole-brain-network-based statistics approach was used with 58 preselected regions of interest. Past-week suicidal ideation severity was measured using the Columbia Suicide Severity Rating Scale (C-SSRS). Results Group-level network based statistics analysis comparing patients and controls identified one significant cluster of connections comprising 11 regions of interest and 12 connections, all depicting lower functional connectivity in patients (pFWE=0.001). Correlational network based statistics analysis identified one significant cluster of connections associated with suicidal ideation severity centered on the right posterior parietal cortex (pFWE=0.02). Patients with higher suicidal ideation severity scores had lower functional connectivity between the right posterior parietal cortex and left anterior insula (pFDR=0.07), and bilateral temporooccipital middle temporal gyrus (left: pFDR=0.03, right: pFDR=0.08). All findings were significant when controlling for depression severity. Discussion & Conclusions Our findings support existing evidence of resting-state functional connectivity differences between treatment-resistant depression and controls and shows a significant cluster of connections centered on the right posterior parietal cortex functional network, with connections showing significant negative correlations with suicidal ideation severity. These findings provide valuable insight into the neural underpinnings of suicidal ideation in treatment-resistant depression.
Burhunduli et al. (Fri,) studied this question.