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HIV-Associated Microstructural Abnormalities in Default Mode, Executive Control, and Salience Networks: Insights from
Md Nasir Uddin1,2,3, Abrar Faiyaz1, Chase R Figley4
1Department of Neurology, University of Rochester, Rochester, NY 14642, USA.
Abstract:
Cognitive impairment persists in people with HIV (PWH) despite effective combination antiretroviral therapy, possibly as a result of persistent alterations in white matter microstructural abnormalities in the brain. Noninvasive tensor-valued diffusion MRI (dMRI) is sensitive to microstructural integrity; thus, it may contribute to the understanding of HIV-associated cognitive impairment. In this exploratory cross-sectional study, 31 healthy controls (HCs) and 24 PWH underwent 3T MRI and neurocognitive assessment. Tensor-valued dMRI metrics, including microscopic fractional anisotropy (µFA) and isotropic, anisotropic, and total mean kurtosis (MKi, MKa, MKt), and conventional DTI and DKI metrics (FA, MD, and MK) were evaluated across six functionally defined brain networks. Compared with HCs, PWH exhibited reduced FA, µFA, and MKa in the dorsal default mode and anterior salience networks, along with increased MKi in the salience network and decreased MKi in the executive control network, with moderate effect sizes. Compared with HCs, PWH performed significantly worse on measures of learning, memory, and language, but showed no differences in executive function, attention, or processing speed. Additionally, significant associations and interactions between dMRI metrics and HIV status were observed, particularly for MKi and attention, executive function, and processing speed across the default mode, salience, and executive control networks. These preliminary findings underscore tensor-valued dMRI as a sensitive biomarker of network-specific neurocognitive vulnerability in HIV.
Insights
People with HIV (PWH) show brain microstructural changes impacting cognition. Tensor-valued diffusion MRI (dMRI) reveals network-specific vulnerabilities in PWH, suggesting it as a biomarker for cognitive impairment.
Area of Science:
- Neuroimaging
- Neuroscience
- Infectious Disease
Background:
- Cognitive impairment persists in people with HIV (PWH) despite combination antiretroviral therapy.
- White matter microstructural abnormalities may underlie HIV-associated cognitive impairment.
- Diffusion MRI (dMRI) is sensitive to brain microstructural integrity.
Purpose of the Study:
- To investigate brain microstructural integrity using tensor-valued dMRI in PWH.
- To explore associations between dMRI metrics and neurocognitive function across brain networks.
- To identify potential biomarkers for HIV-associated cognitive impairment.
Main Methods:
- Exploratory cross-sectional study comparing 31 healthy controls (HCs) and 24 PWH.
- Utilized 3T MRI with tensor-valued dMRI and conventional DTI/DKI metrics.
- Assessed neurocognitive performance across six functionally defined brain networks.
Main Results:
- PWH showed reduced FA, µFA, and MKa in specific brain networks compared to HCs.
- PWH exhibited altered MKi in the salience and executive control networks.
- PWH performed worse on learning, memory, and language, with associations between MKi and cognitive functions.
Conclusions:
- Tensor-valued dMRI reveals network-specific microstructural alterations in PWH.
- dMRI metrics, particularly MKi, are associated with cognitive deficits in HIV.
- Tensor-valued dMRI shows promise as a biomarker for neurocognitive vulnerability in HIV.
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