Pranathi Dandu

Pranathi Dandu received both her BSPH in biostatistics and her BS in neuroscience, with a minor in chemistry, from the University of North Carolina at Chapel Hill. She graduated with distinction and honors as both a Carolina Research Scholar and as a Buckley Public Service Scholar, and recently completed her MS in physiology from North Carolina State University. Her academic and research interests focus on the neural mechanisms underlying sensory processing and predictive coding, and their implications for neurological and developmental disorders, particularly autism spectrum disorder. Given her background in public health and experiences in rural India, Pranathi is interested in understanding how gaps in healthcare access and literacy can create barriers to receiving effective medical care. She is especially interested in the role cross-cultural and global health perspectives can play in shaping more accessible and equitable care.

At UNC Chapel Hill, Pranathi worked as a research assistant in Dr. Hiroyuki Kato’s lab in the Department of Psychiatry, investigating the neural circuits underlying predictive coding in the auditory cortex. Her work involved neural tracing and imaging to study how the brain filters and adapts to sensory information. During her time there, she completed an honors thesis examining topographic projections from the orbitofrontal cortex to the auditory cortex; she also coauthored publications. Outside of research, she served as a copresident for the Biostatistics Student Association and was involved with the American Mock World Health Organization as a DAIS codirector. Pranathi also cofounded SPROUT Nutrition, a community initiative focused on providing nutrition education and support for underserved families, for which she received the Robert E. Bryan Fellowship. She hopes to pursue a career as a physician dedicated to translating neuroscience research into accessible, culturally informed interventions for children with neurodevelopmental conditions.

For children with autism spectrum disorder, ordinary sounds like traffic can be overwhelming and disrupt daily life, yet effective interventions remain underdeveloped. Motivated by this gap, Pranathi’s Fulbright-Nehru project is investigating whether structured auditory training can improve sensory adaptation in autistic children, reducing sensory distress. Working with the Indian Institute of Technology Delhi, she is developing and piloting a low-cost, tablet-based intervention and collecting neurophysiological data to assess its efficacy in reducing sensory hypersensitivity and improving adaptive functioning. The findings aim to inform scalable interventions for autism in low-resource settings while advancing our understanding of sensory processing in neurodevelopmental disorders.