The Importance of Neurological Research in Everyday Life 

The brain controls everything we do and think, and we’re only starting to understand how it works. While neurological research may not be as exciting as cutting-edge smartphone technology, it’s absolutely vital to the pursuit of knowledge and treating diseases such as Alzheimer’s, Parkinson’s, or multiple sclerosis (MS). Learn more about neurological research below.

What Is Brain Research?

Brain research (or neurological research as it’s commonly referred to) is a broad term for medical, scientific, and technological studies that advance our understanding of how and why our brains function. These studies include neurological disorders like Alzheimer’s disease, autism spectrum disorder, or Multiple Sclerosis; psychiatric disorders like anxiety or depression; sensory issues like hearing loss or (removed color) blindness; neurodegenerative conditions like Parkinson’s disease or Huntington’s disease; and traumatic brain injuries.

Types of Brain Research Programs

Here at BRF, we fund a broad scope of brain research programs through our Seed Grants and our annual Scientific Innovations Award. 

The funding has been used to make some amazing discoveries about the brain, from how it works, to the links between lifestyle and disorders, and important findings about medical treatment and how the brain reacts to it. 

How Can You Get Involved with Funding Neuroscience Research?

There are a number of ways to support BRF in our work and continue funding for essential research programs that will aid both medical and academic methodology in the future.

Whether making a donation on our website or attending one of our events, you can be assured that the money raised by BRF goes directly to studies performed by both researchers and institutes working on the latest neurological advances. 

Our Successes

Aimee Kao, M.D., Ph.D.
BRF Accelerates a Lab and Career
Dr. Aimee Kao generates human cell lines to model neurodegenerative disorders The BRF Seed Grant was crucial in establishing us as a lab that is leading the work on neuroregeneration…
Ravi Allada, M.D.
Sleep Disorders and Neurodegenerative Diseases
Ravi Allada, M.D., Professor of Neurobiology at Northwestern University, is interested in the molecular mechanisms underlying circadian rhythms and their links to various clinical disorders, including insomnia, depression and even…
Dr. Krishnan, Ph.D.
High Impact
“The BRF Scientific Innovations Award allowed us to do bold, transformative work for which there was no precedent. I am grateful that BRF takes risks on innovation.”
Dr. Nicholas Hatsopoulos
From the Lab to the Patient
In 2002 Dr. Nicholas Hatsopoulos, Department of Organismal Biology and Anatomy at The University of Chicago, was awarded his first $25,000 seed grant. His lab set out to understand the…

Our Grants

Brain Research Foundation
Rebekah C. Evans, Ph.D., Georgetown University
In Vivo and Ex Vivo Dissection of Midbrain Neuron Activity During Exercise
Exercise is important for the health of the body and the mind. Exercise promotes learning and reduces symptoms of brain-related diseases such as Parkinson’s disease and Alzheimer’s disease. However, it…
Brain Research Foundation
William J. Giardino, Ph.D. Stanford University
Deciphering the Neuropeptide Circuitry of Emotional Arousal in Narcolepsy
This research project aims to investigate the neural mechanisms of a specific type of brain cell called neuropeptide neurons within a region of the brain’s amygdala network called the bed…
Brain Research Foundation
Howard Gritton, Ph.D., University of Illinois
Attention Mechanisms Contributing to Auditory Spatial Processing.
Our world is composed of a rich mixture of sounds. We often process sounds including speech in the presence of many other competing auditory stimuli (e.g., voices in a crowded…
Brain Research Foundation
Nora Kory, Ph.D., Harvard University
Elucidating the Fates and Functions of Lactate in the Brain
The human brain requires significant energy to function. Despite accounting for only 2% of our body weight, the brain consumes a substantial 20% of the body’s energy, relying on a…

Innovation Awards

Brain Research Foundation
Chaolin Zhang, Ph.D., Columbia University
Human-specific Alternative Splicing, Brain
Development, and Ciliopathies
Like movie frames needing to be edited to tell an engaging story, pieces of genetic information stored in DNA for each gene need to be sliced and rejoined, through a…
Brain Research Foundation
Jason Shepherd, Ph.D. University of Utah
Virus-like Intercellular Signaling Underlying Autoimmune Neurological Disorders
Dr. Shepherd’s lab discovered that a brain gene critical for memory and cognition, Arc, has biochemical properties like retroviruses such as HIV. Arc protein can form virus-like protein capsids that…
Brain Research Foundation
Yuki Oka, Ph.D., California Institute of Technology
Molecular Mechanisms of Osmolality Sensing in the Mammalian Brain
Animals constantly detect and process sensory signals to react appropriately. External sensory information (e.g., light and sound) serves as prominent environmental cues to guide behavior. On the other hand, our…
Brain Research Foundation
Angelique Bordey, Ph.D., Yale University
The Role of Ribosomes in Synaptic Circuit Formation and Socio-Communicative Deficits
Dr. Bordey and her lab’s proposal aims at identifying a molecular mechanism responsible for autism-like socio-communicative defects in the developmental disorder, tuberous sclerosis complex (TSC). TSC is a genetic disorder…

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The brain controls everything we do and think, and we’re only starting to understand how it works. While neurological research may not be as exciting as cutting-edge smartphone technology, it’s…