Pedro P. Irazoqui
Neuroscience · Purdue University West Lafayette
Publications
153
Citations
4,526
Est. group size
~1
Recurring co-author estimate
Active years
22
Publishing since 2005
Pedro P. Irazoqui's research focuses on developing implantable and wearable electronic devices that interact with the nervous system, including neurostimulation devices for conditions like epilepsy and its life-threatening complications, vagus nerve stimulation for controlling blood pressure and inflammation, and wireless power systems to run these implants without batteries. The work also extends to using sensors, eye-tracking, and machine learning to detect signs of neurodegenerative diseases like Alzheimer's. Overall, this research combines electrical engineering, neuroscience, and signal processing to build tools for monitoring and treating neurological disorders.
Publication output has been relatively steady over the past decade, with modest year-to-year fluctuations (roughly 4-9 papers annually) and no strong sustained growth or decline trend.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Data and code associated with the publication: Implantation of a passive electrical neurostimulation device achieves inflammatory modulation in rodents
Open MIND · 2026
- Implantation of a passive electrical neurostimulation device achieves inflammatory modulation in rodents
Communications Biology · 2026
- High density probes reveal medullary seizure and rapid medullary shutdown in a model of fatal apnea in seizure
bioRxiv (Cold Spring Harbor Laboratory) · 2025
- High density probes reveal medullary seizure and rapid medullary shutdown in a model of fatal apnea in seizure
Epilepsy Research · 2025
- Plasticity induced loss of apnea alarm through repeated apneas: A proposed mechanism for respiratory sudden death
Epilepsy & Behavior · 2025
- Deep Stroop: Integrating eye tracking and speech processing to characterize people with neurodegenerative disorders while performing neuropsychological tests
Computers in Biology and Medicine · 2024
- Time Scale Network: An Efficient Shallow Neural Network for Time Series Data in Biomedical Applications
IEEE Journal of Selected Topics in Signal Processing · 2024
- Label-free functional imaging of vagus nerve stimulation-evoked potentials at the cortical surface
npj Biosensing · 2024
- Label-Free Functional Imaging of Vagus Nerve Stimulation-Evoked Potentials at the Cortical Surface
Research Square · 2024
- Multimodal Analysis of Behavior During Stroop Test for Characterization of Alzheimer's Disease Signs
Alzheimer s & Dementia · 2024
- Multimodal Analysis of Behavior During Stroop Test for Characterization of Alzheimer’s Disease Signs
Alzheimer s & Dementia · 2024
- Temporal interference current stimulation in peripheral nerves is not driven by envelope extraction
Journal of Neural Engineering · 2023
- Neuromuscular implants: Interfacing with skeletal muscle for improved clinical translation of prosthetic limbs
Muscle & Nerve · 2023
- Design and validation of a low-cost photomodulator for in vivo photoactivation of a mGluR5 inhibitor
Biomedical Engineering Letters · 2023
- Sudden Deaths: A Failure of Feedback Control
Handbook of Neuroengineering · 2023
- Journal of Neural Engineering×4
- Epilepsy & Behavior×4
- bioRxiv (Cold Spring Harbor Laboratory)×4
- IEEE Transactions on Biomedical Engineering×3
- Wireless Power Transfer×3
- Roy Lycke
Neuroscience · Purdue University West Lafayette
- Ming Yin
Neuroscience · Purdue University West Lafayette
- Kevin J. Otto
Neuroscience · Purdue University West Lafayette
- Ken Yoshida
Neuroscience · Purdue University West Lafayette
- Brandon S. Coventry
Neuroscience · Purdue University West Lafayette
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 20, 2026.
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