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VWN News: Specialized Brain Cells Predict Intentions as Well as Define Actions
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 Specialized Brain Cells Predict Intentions as Well as Define Actions

This story is from the category The Brain
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Date posted: 23/02/2005

A study by UCLA neuroscientists featuring functional magnetic resonance imaging has for the first time found evidence that mirror neurons help people understand the intentions of others.

In addition to expanding knowledge of how the brain functions, the findings support a growing body of evidence that imitation-based forms of treatments in patients with autism and similar disorders may help stimulate the function of these neurons, helping these patients improve their ability to understand the intentions of others and empathize with their thoughts and feelings.

"Understanding the intentions of others while watching their action is a fundamental building block of social behavior," said principal investigator Dr. Marco Iacoboni, an associate professor in-residence of psychiatry and biobehavioral sciences at the UCLA Neuropsychiatric Institute's Ahmanson Lovelace Brain Mapping Center and the David Geffen School of Medicine at UCLA. "Our findings show for the first time that intentions behind actions of others can be recognized by the motor system using a mirror mechanism in the brain. The same area of the brain responsible for understanding behavior can predict behavior as well."

Twenty-three research subjects underwent functional MRI while alternately viewing three stimuli presented in the form of short videos:
1) a hand grasping a cup without context;
2) a tea service stocked with food and drink before use and after use, or context only.
3) the grasping of a tea cup within each of the two contexts, signaling intent either to drink or to clean.

Actions embedded in context, increased blood flow in the brain's inferior frontal gyrus, in the area important for grasping control, and in the adjacent sector of the ventral premotor cortex, where hand actions are represented. Increased blood flow is an indicator of increased neural activity.

Credit: Marco Iacoboni/Ahmanson-Lovelace Brain Mapping Center at UCLA
The same part of the brain activates whether performing or observing an action.
Activity increases (red in brain model) when the context of an observed action reveals intention.


See the full Story via external site: newsroom.ucla.edu



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