Arianna Ortega Sanabria
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Also affiliated: Florida International University (2020–2021)
Formerly Arkansas Doctoral Fellow, University of Arkansas through 2026.
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Arianna Ortega Sanabria's research focuses on the bioelectronic properties of biological materials and their applications in diagnostic medical devices. Her work investigates the electrical behavior of DNA, proteins, and cells, exploring their potential for medical diagnostics. Sanabria has also published research on selective nerve activation and conduction block using intrafascicular electrodes, with a specific interest in kilohertz-frequency neural stimulation. This work aims to understand and control neural signals for therapeutic or diagnostic purposes. Additionally, she has developed models for estimating the effective active area of neuro-electrodes, contributing to quality control in the development of neurostimulation devices. Her scholarship includes six publications, with an h-index of 1 and 26 total citations. Sanabria has collaborated with researchers James J. Abbas and Anil K. Thota at the University of Arkansas at Fayetteville on multiple publications.
Metrics
- h-index: 1
- Publications: 6
- Citations: 26
Positions
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Doctoral Fellow 2022–2026University of Arkansas Biomedical Engineering ORCID
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phD Student - RA 2018–2021Florida International University Biomedical Engineering ORCID
Selected Publications
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Selective activation of nerve fiber subpopulations with intrafascicular stimulation (2026)
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Fascicle-selective kilohertz-frequency neural conduction block with longitudinal intrafascicular electrodes (2025)
Collaboration Network
Top Collaborators
- Fascicle-selective kilohertz-frequency neural conduction block with longitudinal intrafascicular electrodes
- Selective activation of nerve fiber subpopulations with intrafascicular stimulation
- Fascicle-selective kilohertz-frequency neural conduction block with longitudinal intrafascicular electrodes
- Selective activation of nerve fiber subpopulations with intrafascicular stimulation
- Fascicle-selective kilohertz-frequency neural conduction block with longitudinal intrafascicular electrodes
- Selective activation of nerve fiber subpopulations with intrafascicular stimulation
- Fascicle-selective kilohertz-frequency neural conduction block with longitudinal intrafascicular electrodes
- Selective activation of nerve fiber subpopulations with intrafascicular stimulation
- Fascicle-selective kilohertz-frequency neural conduction block with longitudinal intrafascicular electrodes
- Selective activation of nerve fiber subpopulations with intrafascicular stimulation
- Fascicle-selective kilohertz-frequency neural conduction block with longitudinal intrafascicular electrodes
- Selective activation of nerve fiber subpopulations with intrafascicular stimulation
- Fascicle-selective kilohertz-frequency neural conduction block with longitudinal intrafascicular electrodes
- Fascicle-selective kilohertz-frequency neural conduction block with longitudinal intrafascicular electrodes
- Fascicle-selective kilohertz-frequency neural conduction block with longitudinal intrafascicular electrodes
- Selective activation of nerve fiber subpopulations with intrafascicular stimulation
- Selective activation of nerve fiber subpopulations with intrafascicular stimulation
- Selective activation of nerve fiber subpopulations with intrafascicular stimulation
- Selective activation of nerve fiber subpopulations with intrafascicular stimulation
- Selective activation of nerve fiber subpopulations with intrafascicular stimulation
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