Game changer: New 7T MRI elevates Auburn University research
How does information between billions of neurons flow within this cerebral superhighway? What functional details impact decision-making or even clinical disorders such as autism or Alzheimer's?
Now, he can.
The recently approved
"3T scanners are standard in clinical practice today, and you get a fairly good view of what's happening in the brain — but you miss a lot of the details," said Deshpande, a professor of electrical and computer engineering, who specializes in signal/image processing. "Because the brain is such a complex organ with billions of neurons and trillions of connections, the devil is in the details. As researchers, we want to have as much detailed depiction, with high-resolution images, as possible."
For
"The university is sitting on a gold mine in terms of data and capabilities," said
Denney said updated scanners like this are fitted with parallel transmit technology and sodium imaging capability.
"With our old 7T, if we did an MRI scan of the brain in certain regions, you wouldn't receive uniform coverage of the brain," Denney said. "That's because we had only one transmit channel — like a flashlight inside a large room with only one beam. By comparison, our new Terra.X 7 provides us with eight beams of light that illuminate the brain and provide a more uniform image. Sodium imaging technology is important because it can measure how much sodium is in your brain regionally and identify abnormalities."
Denney noted that
Meredith Reid , assistant professor in electrical and computer engineering, is exploring post-traumatic stress disorder biomarkers in senior adults via spectroscopy.Jennifer Robinson , professor in psychological sciences, compares brain connectivity between healthy populations and those with mental illness, focusing on cognition and emotions.Adil Bashir , associate professor in electrical and computer engineering, is studying muscle and brain energy production capacity on the cells and determining mitochondrial metabolic homeostasis using phosphorus spectroscopy.Doug Martin , director of the Scott-Ritchey Research Center and professor of anatomy, physiology and pharmacology at the College of Veterinary Medicine, is using MRI and spectroscopy to measure the effect of gene therapy for Tay-Sachs disease in animal models.
"I dreamed of building an MRI research program here at
People like Deshpande.
"MRI research has come a long way — and it will continue to evolve," Deshpande said. "I'm proud that Auburn University is a leading player in this field as my colleagues and myself continue to explore the unexplored, explain the unexplained and provide impactful research to improve the quality of life for all."
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SOURCE Auburn University
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