Learning Disability Today
Supporting professionals working in learning disability and autism services

Study identifies autism symptoms in first months of life

Baby Met PoliceSigns of autism are present within the first few months of life, a study by US researchers has found.

Researchers at the Marcus Autism Center, Children’s Healthcare of Atlanta and Emory University School of Medicine followed babies from birth until 3 years of age, using eye-tracking technology, to measure the way infants look at and respond to social cues. Infants later diagnosed with autism showed declining attention to the eyes of other people from the age of 2 months onwards.

The study, published in the journal Nature, followed two groups of infants, one at low and the other at high risk for having autism spectrum disorders. High-risk infants had an older sibling already diagnosed with autism, increasing the infant’s risk of also having the condition by 20 fold. In contrast, low-risk infants had no first, second, or third degree relatives with autism.

“By following these babies from birth, and intensively within the first six months, we were able to collect large amounts of data long before overt symptoms are typically seen,” said Warren Jones, the study’s lead author and director of research at the Marcus Autism Center and assistant professor in the Department of Pediatrics at Emory University School of Medicine.

Co-investigator Ami Klin, director of Marcus Autism Center and chief of the Division of Autism and Related Disorders in the Department of Pediatrics at Emory University School of Medicine, added: “We found a steady decline in attention to other people’s eyes, from 2 until 24 months, in infants later diagnosed with autism.”

Potential for early intervention
Differences were apparent even within the first 6 months, which has profound implications. “First, these results reveal that there are measurable and identifiable differences present already before 6 months. And second, we observed declining eye fixation over time, rather than an outright absence,” Kiln said. “Both these factors have the potential to dramatically shift the possibilities for future strategies of early intervention.”

However, the researchers cautioned that their observations would not be visible to the naked eye, but require specialised technology and repeated measurements of a child’s development over the course of months.

“To be sure, parents should not expect that this is something they could see without the aid of technology, and they shouldn’t be concerned if an infant doesn’t happen to look at their eyes at every moment,” added Jones. “We used very specialised technology to measure developmental differences, accruing over time, in the way that infants watched very specific scenes of social interaction.”

The study shows that while attention to others’ eyes is already declining by 2 to 6 months in infants later diagnosed with autism, attention to others’ eyes does not appear to be entirely absent. If infants were identified at this early age, interventions could more successfully build on the levels of eye contact that are present. Eye contact plays a key role in social interaction and development, and in the study, those infants whose levels of eye contact diminished most rapidly were also those who were most disabled later in life. This early developmental difference also gives researchers a key insight for future studies.

“The genetics of autism have proven to be quite complex. Many hundreds of genes are likely to be involved, with each one playing a role in just a small fraction of cases, and contributing to risk in different ways in different individuals,” said Jones. “The current results reveal one way in which that genetic diversity may be converted into disability very early in life. Our next step will be to expand these studies with more children, and to combine our eye-tracking measures with measures of gene expression and brain growth.”

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