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Exploring cortical activation and connectivity in infants with and without familial risk for autism during
A N Bhat1, N M McDonald2, J E Eilbott3
1Department of Physical Therapy, University of Delaware, 540 S College Ave., Newark, DE, USA; Department of Psychological & Brain Sciences, University of Delaware, 320 McKinly Lab, Newark, DE, USA; Biomechanics & Movement Science Program, University of Delaware, 540 S College Ave., Newark, DE, USA.
Insights
Infants at high risk for Autism Spectrum Disorder (ASD) show different brain activity and connectivity patterns in the first year of life. These early brain differences may predict later ASD development.
Area of Science:
- Neuroscience
- Developmental Psychology
- Pediatrics
Background:
- Autism Spectrum Disorder (ASD) behavioral signs typically emerge by age two, with diagnosis possible by age three.
- Studying high-risk infants in their first year can reveal early ASD risk indicators.
- Brain hyper-connectivity in infancy may precede later overt ASD symptoms.
Purpose of the Study:
- To investigate early functional brain activation and connectivity in infants at high risk for ASD.
- To explore potential neuroimaging markers for ASD risk using functional near-infrared spectroscopy (fNIRS).
Main Methods:
- Used fNIRS, an infant-friendly neuroimaging technique, on 9 high-risk (HR) and 6 low-risk (LR) infants (6-9 months old).
- Recorded brain activity during baseline periods and a 5-minute naturalistic social interaction.
- Analyzed oxyhemoglobin (HbO2) and deoxyhemoglobin (HHb) signals for cortical activation and functional connectivity.
Main Results:
- HR infants exhibited reduced right and left-hemispheric activation compared to LR infants.
- HR infants displayed greater functional connectivity during pre- and post-social periods.
- A notable drop in functional connectivity was observed in HR infants during social interaction.
Conclusions:
- Findings suggest early cortical activation differences in infants with familial ASD risk.
- fNIRS shows promise for identifying potential ASD risk markers during naturalistic social contexts.
- Early neuroimaging may offer insights into the developmental trajectory of ASD.
Abstract:
Behavioral signs of Autism Spectrum Disorder (ASD) are typically observable by the second year of life and a reliable diagnosis of ASD is possible by 2 to 3 years of age. Studying infants with familial risk for ASD allows for the investigation of early signs of ASD risk within the first year. Brain abnormalities such as hyper-connectivity within the first year may precede the overt signs of ASD that emerge later in life. In this preliminary study, we use functional near-infrared spectroscopy (fNIRS), an infant-friendly neuroimaging tool that is relatively robust against motion artifacts, to examine functional activation and connectivity during naturalistic social interactions in 9 high-risk (HR; older sibling with ASD) and 6 low-risk (LR; no family history of ASD) infants from 6 to 9 months of age. We obtained two 30-second baseline periods and a 5-minute social interaction period. HR infants showed reduced right and left-hemispheric activation compared to LR infants based on oxy (HbO2) and deoxy (HHb) signal trends. HR infants also had greater functional connectivity than LR infants during the pre- and post-social periods and showed a drop in connectivity during the social period. Our findings are consistent with previous work suggesting early differences in cortical activation associated with familial risk for ASD, and highlight the promise of fNIRS in evaluating potential markers of ASD risk during naturalistic social contexts.
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