COVID-19 infection and longitudinal changes in olfactory-related brain structures in children: analysis of ABCD study

Carrson French1, Ashleigh Buzzell2, Zach Monahan2

  • 1Office of Medical Student Research, Oklahoma State University College of Osteopathic Medicine at Cherokee Nation, Tahlequah, OK, USA. james.c.french@okstate.edu.

PubMed

Insights

Children with COVID-19 showed brain structure differences, including smaller hippocampi in those with anosmia. This may impact memory and emotional processing, requiring increased healthcare awareness.

Area of Science:

  • Neuroscience
  • Pediatric Development
  • Infectious Disease Epidemiology

Background:

  • COVID-19 is linked to adult brain changes, especially in olfactory and limbic regions.
  • Pediatric brain structural effects of COVID-19 are understudied due to limited imaging data.

Purpose of the Study:

  • To investigate structural brain differences in children with a history of COVID-19.
  • To compare olfactory system structures in children with and without COVID-19.
  • To examine differences based on COVID-19-related anosmia.

Main Methods:

  • Utilized MRI data from the Adolescent Brain and Cognitive Development (ABCD) Study.
  • Conducted time-series and regression analyses on olfactory cortex structures.
  • Compared brain volumes between children with and without COVID-19, and by anosmia status.

Main Results:

  • Children with COVID-19 exhibited smaller amygdala, hippocampus, parahippocampal gyrus, insula, and total cortical volumes.
  • Medial orbitofrontal cortex volumes were larger in children with COVID-19.
  • Anosmia was associated with smaller hippocampus, insula, and cingulate cortex volumes.

Conclusions:

  • COVID-19-related anosmia in children is linked to reduced hippocampal volume.
  • These changes may have lasting effects on odor, emotion, and memory processing.
  • Healthcare providers should be aware of potential complications and implement preventive strategies.