Publications
12
Citations
41
Est. group size
~5
Recurring co-author estimate
Active years
39
Publishing since 1988
Jhon Martinez's recent work focuses on traumatic brain injury (TBI), using lab-grown neuronal networks on microfluidic chips ('TBI-on-a-chip' models) to study how concussive and blast impacts damage brain cells. This research examines how injury leads to changes in neuronal firing patterns, tau protein mislocalization, and amyloid buildup, drawing links to processes seen in Alzheimer's disease. Earlier publications from this researcher (2017-2019) covered unrelated topics in telecommunications software and nanoparticle photocatalysis, suggesting a shift in research focus over time.
Publication output was sparse and irregular in the early-to-mid part of the decade but has become more frequent and consistent since 2023, suggesting a growing focus on the current TBI-on-a-chip research area.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Quantifying Correlogram Shape to Analyze Neuronal Firing Dynamics Recorded in TBI-on-a-Chip
Neuroinformatics · 2026
- Concussive injuries induce neuronal stress-dependent tau mislocalization to dendritic spines with acrolein and functional network alteration in TBI-on-a-chip
Lab on a Chip · 2025
- Unraveling the dynamics of seizure-like activity in neuronal networks using machine learning
Journal of Neurophysiology · 2025
- Diffusive secondary injuries in neuronal networks following a blast impact: A morphological and electrophysiological study using a TBI-on-a-Chip model
Brain Multiphysics · 2024
- Diffusive Secondary Injuries in Neuronal Networks Following a Blast Impact: A Morphological and Electrophysiological Study Using a Tbi-on-A-Chip Model
SSRN Electronic Journal · 2024
- The contribution of initial concussive forces and resulting acrolein surge to β-amyloid accumulation and functional alterations in neuronal networks using a TBI-on-a-chip model
Lab on a Chip · 2023
- Interfacing Plasmonic Nanoparticles with Ferroelectrics for Hot-Carrier-Driven Photocatalysis: Impact of Schottky Barrier Height
ACS Applied Energy Materials · 2019
- CREDENCE: A Carrier Grade Software Defined Networking control environment based on the JAIN SLEE component model
2017
- Lab on a Chip×2
- Brain Multiphysics×1
- ACS Applied Energy Materials×1
- SSRN Electronic Journal×1
- Journal of Neurophysiology×1
- Karen Crawford
Medicine · Indiana University
- Brendan K. Ball
Medicine · Purdue University West Lafayette
- Bernardino Ghetti
Medicine · Indiana University
- Adrian L. Oblak
Medicine · Indiana University
- Bernardino Ghetti
Medicine · Indiana University
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.
Claim or correct this profile