John P. Seymour, Ph.D.

Institution:
University of Michigan, Ann Arbor, Ann Arbor, MI
Area:
systems electrophysiology, electrodes
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"John Seymour"
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SNBCP

Parents

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Daryl Kipke grad student 2009 University of Michigan
 (Advanced polymer-based microfabricated neural probes using biologically driven designs.)
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Publications

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Yan D, Jiman AA, Bottorff EC, et al. (2022) Ultraflexible and Stretchable Intrafascicular Peripheral Nerve Recording Device with Axon-Dimension, Cuff-Less Microneedle Electrode Array. Small (Weinheim An Der Bergstrasse, Germany). e2200311
Welle EJ, Woods JE, Jiman AA, et al. (2021) Sharpened and mechanically durable carbon fiber electrode arrays for neural recording. Ieee Transactions On Neural Systems and Rehabilitation Engineering : a Publication of the Ieee Engineering in Medicine and Biology Society
Sperry ZJ, Na K, Jun J, et al. (2021) High-density neural recordings from feline sacral dorsal root ganglia with thin-film array. Journal of Neural Engineering
Jiman AA, Ratze DC, Welle EJ, et al. (2020) Multi-channel intraneural vagus nerve recordings with a novel high-density carbon fiber microelectrode array. Scientific Reports. 10: 15501
Na K, Sperry ZJ, Lu J, et al. (2020) Novel diamond shuttle to deliver flexible neural probe with reduced tissue compression. Microsystems & Nanoengineering. 6: 37
Kim K, Vöröslakos M, Seymour JP, et al. (2020) Artifact-free and high-temporal-resolution in vivo opto-electrophysiology with microLED optoelectrodes. Nature Communications. 11: 2063
Jiman AA, Ratze DC, Welle EJ, et al. (2020) SPARC: Acute Glucose Regulation Recordings from the Rat Vagus Nerve Using Carbon Fiber Microelectrode Arrays The Faseb Journal. 34: 1-1
Welle EJ, Jiman AA, Patel PR, et al. (2020) SPARC: A Carbon Fiber Nerve Electrode Appropriate for Chronic Recording The Faseb Journal. 34: 1-1
Yan D, Bruns TM, Wu Y, et al. (2019) Ultracompliant Carbon Nanotube Direct Bladder Device. Advanced Healthcare Materials. e1900477
Kampasi K, English DF, Seymour J, et al. (2018) Dual color optogenetic control of neural populations using low-noise, multishank optoelectrodes. Microsystems & Nanoengineering. 4
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