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FeaturesJuly 16, 2015

WASHINGTON -- New research suggests it may be possible to predict which preschoolers will struggle to read -- and it has to do with how the brain deciphers speech when it's noisy. Scientists are looking for ways to tell, as young as possible, which children are at risk for later learning difficulties so they can get early interventions...

By LAURAN NEERGAARD ~ Associated Press
This undated handout photo shows scalp electrodes designed to pick up how children's brains react to sounds such as speech in a noisy background. (Auditory Neuroscience Lab, Northwestern University via AP)
This undated handout photo shows scalp electrodes designed to pick up how children's brains react to sounds such as speech in a noisy background. (Auditory Neuroscience Lab, Northwestern University via AP)

WASHINGTON -- New research suggests it may be possible to predict which preschoolers will struggle to read -- and it has to do with how the brain deciphers speech when it's noisy.

Scientists are looking for ways to tell, as young as possible, which children are at risk for later learning difficulties so they can get early interventions.

There are some simple pre-reading assessments for preschoolers.

But Northwestern University researchers went further and analyzed brain waves of children as young as 3.

How well youngsters' brains recognize specific sounds -- consonants -- amid background noise can help identify who is more likely to have trouble with reading development, the team reported Tuesday in the journal PLOS Biology.

If the approach pans out, it may provide "a biological looking glass," said study senior author Nina Kraus, director of Northwestern's Auditory Neuroscience Laboratory.

"If you know you have a 3-year-old at risk, you can as soon as possible begin to enrich their life in sound so that you don't lose those crucial early developmental years."

Connecting sound to meaning is a key foundation for reading.

For example, preschoolers who can match sounds to letters earlier go on to read more easily.

Auditory processing is part of that pre-reading development.

If your brain is slower to distinguish a "D" from a "B" sound, for example, recognizing words and piecing together sentences could be affected, too.

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What does noise have to do with it?

It stresses the system, as the brain has to tune out competing sounds to focus selectively in just fractions of milliseconds.

And consonants are more vulnerable to noise than vowels, which tend to be louder and longer, Kraus explained.

"Hearing in noise is arguably one of the most computationally difficult things we ask our brain to do," she said.

The new study used an EEG to directly measure the brain's response to sound, attaching electrodes to children's scalps and recording the patterns of electric activity as nerve cells fired.

The youngsters sat still to watch a video of their choice, listening to the soundtrack in one ear while an earpiece in the other periodically piped in the sound "dah" superimposed over a babble of talking.

Measuring how the brain's circuitry responded, the team developed a model to predict children's performance on early literacy tests.

Then they did a series of experiments with 112 children between the ages of 3 and 14.

The 30-minute test predicted how well 3-year-olds performed a language-development skill and how those same youngsters fared a year later on several standard pre-reading assessments, the team reported.

Time will tell how well those children eventually read.

But Kraus' team also tested older children, and the EEG scores correlated with their current reading competence in school and even flagged a small number who had been diagnosed with learning disabilities.

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