Brain structural abnormalities in psychotropic drug-naive pediatric patients with obsessive-compulsive disorder

Philip R Szeszko1, Shauna MacMillan, Marjorie McMeniman

  • 1Department of Psychiatry Research, Zucker Hilside Hospital, Glen Oaks, NY 11004, USA. szeszko@lij.edu

Insights

Pediatric obsessive-compulsive disorder (OCD) is linked to smaller globus pallidus volume. Gray matter in the anterior cingulate gyrus is also affected in pediatric OCD patients, showing distinct structural changes.

Area of Science:

  • Neuroscience
  • Psychiatry
  • Radiology

Background:

  • Obsessive-compulsive disorder (OCD) is a disabling neuropsychiatric condition.
  • Cortical-striatal-thalamic-cortical (CSTC) circuits are implicated in OCD pathophysiology.
  • Structural brain abnormalities in pediatric OCD require further investigation.

Purpose of the Study:

  • To investigate structural abnormalities in CSTC loop regions in pediatric OCD patients.
  • To compare brain volumes between psychotropic drug-naive pediatric OCD patients and healthy controls.

Main Methods:

  • Magnetic resonance imaging (MRI) was used to compute regional brain volumes.
  • Key regions analyzed included the globus pallidus, caudate nucleus, putamen, anterior cingulate gyrus, and superior frontal gyrus.
  • 23 drug-naive pediatric OCD patients and 27 healthy volunteers were studied.

Main Results:

  • Pediatric OCD patients exhibited significantly smaller globus pallidus volumes compared to controls.
  • No significant differences were found in caudate nucleus, putamen, or frontal white matter volumes.
  • Patients showed increased anterior cingulate gyrus gray matter volume, which did not correlate with globus pallidus volume.

Conclusions:

  • Smaller globus pallidus volume is a characteristic finding in pediatric OCD, independent of psychotropic medication.
  • Gray matter abnormalities in the anterior cingulate gyrus are specific to OCD, aligning with functional neuroimaging findings.
  • These volumetric findings contribute to understanding the neuroanatomy of pediatric OCD.
Abstract

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