Multimodal MRI analysis of COVID-19 effects on pediatric brain

Мультимодальный МРТ-анализ влияния COVID-19 на головной мозг детей
Ying Lin, Lin Zhang, Guoqiang Cheng, Ting Peng, Chaowei Zhang, Pingping Xie, Zuozhen Lan, Mingwen Yang, Xianghui Huang, Jungang Liu
2025-04-05

cortical metricsglymphatic functionmultimodal MRIpediatric COVID-19structural covariance networks
The COVID-19 pandemic has raised significant concerns regarding its impact on the central nervous system, including the brain. While the effects on adult populations are well documented, less is known about its implications for pediatric populations. This study investigates alterations in cortical metrics and structural covariance networks (SCNs) based on the Local Gyrification Index (LGI) in children with mild COVID-19, alongside changes in non-invasive MRI proxies related to glymphatic function. We enrolled 19 children with COVID-19 and 22 age-comparable healthy controls. High-resolution T1-weighted and diffusion-weighted MRI images were acquired. Cortical metrics, including thickness, surface area, volume, and LGI, were compared using vertex-wise general linear models. SCNs were analyzed for differences in global and nodal metrics, and MRI proxies, including diffusion tensor imaging along the perivascular space and choroid plexus (CP) volume, were also assessed. Our results showed increased cortical area, volume, and LGI in the left superior parietal cortex, as well as increased cortical thickness in the left lateral occipital cortex among children with COVID-19. SCN analysis revealed altered network topology and larger CP volumes in the COVID group, suggesting virus-induced neuroinflammation. These findings provide evidence of potential brain alterations in children following mild COVID-19, emphasizing the need for further investigation into long-term neurodevelopmental outcomes.
1
COVID-19 was associated with increased cortical thickness in the left lateral occipital cortex.
2
Children with COVID-19 had larger choroid plexus volumes, consistent with possible virus-related neuroinflammation.
3
Children with mild COVID-19 showed increased cortical area, volume, and local gyrification in the left superior parietal cortex.
4
Structural covariance networks displayed altered global and nodal topology in children with COVID-19 compared with healthy controls.
5
The findings indicate potential brain alterations after mild pediatric COVID-19 and support further study of long-term neurodevelopmental consequences.

The brains of children with mild COVID-19

COVID-19-associated alterations in cortical morphology, structural covariance network topology, and MRI proxies of glymphatic function

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2025-04-05
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Ying Lin
Lin Zhang
Guoqiang Cheng
Ting Peng
Chaowei Zhang
Pingping Xie
Zuozhen Lan
Mingwen Yang
Xianghui Huang
Jungang Liu
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