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American Journal of Psychiatry· 2026Q1

Connectomic Determinants of Subcallosal Cingulate Deep Brain Stimulation for Depression

Ha Neul Song, Ki Sueng Choi, Brian Harris Kopell, Martijn Figee et al.

Short summary

Stimulating the left cingulum bundle and medial uncinate fasciculus is essential for effective subcallosal cingulate deep brain stimulation (SCC-DBS) in treatment-resistant depression, with responders showing more focused tissue activation.

AI-generated from the title and abstract; the full text is not read.

Key points

  • Effective SCC-DBS for treatment-resistant depression requires precise stimulation of critical white matter bundles.
  • Responders showed a less variable spatial distribution of activated tissue volumes compared to non-responders.
  • Failure to activate the left cingulum bundle and medial uncinate fasciculus decreased therapeutic effects.
  • Connectome-based targeting may be superior to anatomical targeting for SCC-DBS efficacy.

AI-generated from the title and abstract; the full text is not read.

Abstract

OBJECTIVE: Subcallosal cingulate (SCC) deep brain stimulation (DBS) has shown promise for treatment-resistant depression. This study retrospectively evaluated a large curated SCC-DBS dataset to identify connectomic factors associated with sustained clinical improvement across patients, focusing on the white matter bundles consistently implicated in patient-specific connectome-based targeting. METHODS: A total of 131 patients (mean age=46.67 years, SD=9.79; 60.31% female) with treatment-resistant depression from three independent cohorts received bilateral SCC-DBS using site-specific targeting methods. Clinical improvements were assessed using the 17-item Hamilton Depression Rating Scale (HAM-D). Based on individual DBS settings, volumes of tissue activated were reconstructed, and voxel-wise stimulation mapping and normative fiber-wise analyses were performed to assess contributions of white matter bundles to therapeutic response. RESULTS: Responders (patients with ≥50% reduction in HAM-D score) exhibited a less variable spatial distribution of volumes of tissue activated than nonresponders. Probabilistic stimulation mapping identified a focal cluster associated with clinical improvement. Fiber-wise analyses showed that stimulation of predefined white matter tracts targeted by connectome-based SCC-DBS contributed to clinical efficacy. Notably, failure to activate the left cingulum bundle and medial uncinate fasciculus decreased the therapeutic effects of SCC-DBS. CONCLUSIONS: This study highlights the significance of stimulating critical white matter bundles for effective SCC-DBS. Available evidence supports the idea that precisely targeting the lateralized cingulum bundle and medial uncinate fasciculus is essential for sustained clinical improvement. These findings suggest potential advantages of connectome-based targeting for SCC-DBS over targeting based solely on anatomical landmarks or normative atlases, using a method that is precise, reliable, and scalable for future use in individual patients.

The authors' abstract, as published at the source. American Journal of Psychiatry, 2026 · DOI ↗

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Field: Neurology (Medicine)

NeurologyMedicine