UF McKnight Brain Institute

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The Evelyn F. and William L. McKnight Brain Institute of the University of Florida is dedicated to a multidisciplinary approach to neuroscience research and education.

Our latest MBI Researcher Highlight features Dr. Tracy Centanni Rosen. Her research aims to better understand the root causes of dyslexia and spur the brain’s ability to adapt using noninvasive vagus nerve stimulation to improve reading and language skills.

MBI Researcher Highlight: Dr. Tracy Centanni Rosen » McKnight Brain Institute » University of Florida

Her research aims to better understand the root causes of dyslexia and spur neural plasticity, or the brain’s ability to adapt, using noninvasive vagus nerve stimulation to improve reading and languag...

mbi.ufl.edu

The COVID-19 mRNA-based vaccines developed during the pandemic could spark the immune system to fight cancer, according to new research published in @nature.com. Christiano Marconi, a researcher in MBI investigator Dr. Elias Sayour’s lab, explains in @us.theconversation.com.

COVID-19 mRNA vaccines could unlock the next revolution in cancer treatment – new research

The researchers found that mRNA-based COVID-19 vaccines could potentially help patients whose tumors don’t respond well to traditional immunotherapy.

theconversation.com

The lab of Dr. Alfonso Martin Peña investigates the neural circuits and genetic pathways that link sleep sensitivity to cognitive function, motivated behaviors and the deficits associated with dementias such as Alzheimer's, Lewy body dementia, FTLD and Parkinson's. #MBI_Labs

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In Nature Neuroscience, MBI researcher Dr. Karim Oweiss & collaborators devised a high-tech way to map wiring between neurons in the living brain of mice, w/ broad implications for tracking changes in Parkinson’s & Alzheimer’s before behavioral symptoms manifest.

High-throughput synaptic connectivity mapping using in vivo two-photon holographic optogenetics and compressive sensing - Nature Neuroscience

Using two-photon optogenetics, electrical recordings and sparse signal reconstruction, the authors demonstrate in vivo synaptic connectivity mapping in the mouse visual cortex.

nature.com