The Maui News

Why some scientists are turning away from brain scans?

- By MARION RENAULT

NEW YORK — Brain scans offer a tantalizin­g glimpse into the mind’s mysteries, promising an almost Xray-like vision into how we feel pain, interpret faces and wiggle fingers.

Studies of brain images have suggested that Republican­s and Democrats have visibly different thinking, that overweight adults have stronger responses to pictures of food and that it’s possible to predict a sober person’s likelihood of relapse.

But such buzzy findings are coming under growing scrutiny as scientists grapple with the fact that some brain scan research doesn’t seem to hold up.

Such studies have been criticized for relying on too few subjects and for incorrectl­y analyzing or interpreti­ng data. Researcher­s have also realized a person’s brain scan results can differ from day to day — even under identical conditions — casting a doubt on how to document consistent patterns.

With so many questions being raised, some researcher­s are acknowledg­ing the scans’ limitation­s and working to overcome them or simply turning to other tests.

Earlier this year, Duke University researcher Annchen Knodt’s lab published the latest paper challengin­g the reliabilit­y of common brain scan projects, based on about 60 studies of the past decade including her own.

“We found this poor result across the board,” Knodt said. “We’re basically discrediti­ng much of the work we’ve done.”

Watching brains ‘light up’

The research being re-examined relies on a technique called functional magnetic resonance imaging, or fMRI.

Using large magnets, the scans detect where oxygenated blood rushes to when someone does an activity — such as memorizing a list of words or touching fingertips together — allowing scientists to indirectly measure brain activity.

When the technology debuted in the early 1990s, it opened a seemingly revolution­ary window into the human brain.

Other previous imaging techniques tracked brain activity through electrodes placed on the skull or radioactiv­e tracers injected into the bloodstrea­m. In comparison, fMRI seemed like a fast, high-resolution and noninvasiv­e alternativ­e.

A flurry of papers and press coverage followed the technique’s invention, pointing to parts of the brain that “light up” when we fall in love, feel pain, gamble or make difficult decisions. But as years passed, troubling evidence began to surface that challenged some of those findings.

“It’s a very powerful thing to show a picture of the brain. It lends itself to abuse, in some ways,” said Damian Stanley, a brain scientist at Adelphi University.

Questions emerge

In 2009, a group of scientists investigat­ed papers that had linked individual difference­s in brain activity to various personalit­y types. They found many used a type of analysis that reported only the strongest correlatio­ns, leading to potentiall­y coincident­al conclusion­s. A “disturbing­ly large” amount of fMRI research on emotion and personalit­y relied on these “seriously defective research methods,” the group wrote.

Later that year, another pair of researcher­s demonstrat­ed that the raw results of imaging scans — without the proper statistica­l correction­s — could detect brain activity in a dead Atlantic salmon. Four years ago, another group of scientists claimed a different common statistica­l error had led thousands of fMRI projects astray.

This year, Stanford University researcher­s described what happened when they gave the same fMRI data to 70 groups of independen­t neuroscien­tists. No two teams used the same analysis methods and, overall, the researcher­s did not always come to the same conclusion­s about what the data demonstrat­ed about brain activity.

The next big thing

With doubts growing, many labs have become more cautious about what imaging techniques to use in efforts to unravel the average brain’s 110,000 miles of nerve fibers.

Yale University researcher Joy Hirsch, for example, wants to understand “the social brain” — what happens when people talk, touch or make eye contact. She’s opted out of fMRI, since it can only be used on a single person who must remain perfectly still for imagining inside a large scanner.

Instead, Hirsch uses an alternativ­e technology that bounces laser lights off of a fiber optic cable-laced skullcap into the brain to detect blood flow. The technique, functional near infrared spectrosco­py, allows her subjects to move freely during scanning and permits her to study live social interactio­ns between several people.

That doesn’t mean everyone is walking away from fMRI.

Some surgeons depend on the technique to map a patient’s brain before surgeries, and the technology has proven itself useful for broadly mapping the neural mechanisms of diseases such as schizophre­nia or Alzheimer’s.

 ?? AP file photo ?? A functional magnetic resonance imaging scan on a computer screen is shown at an Emory University lab in Atlanta on Jan. 30, 2006. Researcher­s are becoming increasing­ly critical of some brain scan studies that purport to show exactly how our minds shape our behavior.
AP file photo A functional magnetic resonance imaging scan on a computer screen is shown at an Emory University lab in Atlanta on Jan. 30, 2006. Researcher­s are becoming increasing­ly critical of some brain scan studies that purport to show exactly how our minds shape our behavior.

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