Research Symposium

25th annual Undergraduate Research Symposium, April 1, 2025

Kara Lane-Lightfoot Poster Session 2: 10:45 am - 11:45 am/ Poster #36


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BIO


I am a transfer student here at FSU. I am in my Junior year of biochemistry. This is the research I hope to one day explore more possibilities and discover the implications. I am excited to see what roads of research I travel next.

INVESTIGATION OF THE POTENTIAL FOR ​NEURAL INFLAMMATION INDUCED BY ​CONTINUOUS PERIPHERAL NERVE STIMULATION

Authors: Kara Lane-Lightfoot, Shinho Cho
Student Major: Biochemistry and FSU-Teach
Mentor: Shinho Cho
Mentor's Department: National High Magnetic Field Lab
Mentor's College: National High Magnetic Field Lab
Co-Presenters:

Abstract


Peripheral nerve stimulation is used for chronic pain management, rehabilitation, and studying nerve responses and regeneration mechanisms. However, continuous high-frequency stimulation can overactivate the brain's somatosensory areas, potentially inducing or worsening neural inflammation. Despite its widespread use, the effects of stimulation intensity, frequency, duration, and current characteristics on neural networks like the somatosensory cortex and thalamus are not well understood.
This study aims to investigate how electrical stimulation of the rat's whisker area and forepaw affects the somatosensory cortex and thalamus. Utilizing high-speed, high-resolution functional MRI at 21.1 Tesla, we will explore how different stimulation parameters influence neural activity and the potential for inflammation. Specifically, we'll examine functional and structural changes in sensory processing networks.
We hypothesize that such stimulation activates neuroinflammatory mechanism, detectable through changes in T2-weighted images and molecular markers of inflammation. Anticipated results may show that peripheral electrical stimulation contributes to inflammation in targeted cortical regions. This study could provide insights into the mechanisms linking sensory stimulation to neuroinflammatory processes and aid in modeling or evaluating treatments for neurological conditions like neural inflammation, nerve damage, and nerve regeneration.

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Keywords: Stimulation nerve inflammation