David Terman
Neuroscience · The Ohio State University
Publications
149
Citations
7,519
Est. group size
—
Recurring co-author estimate
Active years
50
Publishing since 1977
David Terman uses mathematical and computational modeling to study how brain cells and networks function, covering topics such as neuron firing patterns, oscillations in neural circuits, astrocyte (brain support cell) networks, and blood flow in brain capillaries. His work combines dynamical systems theory with neuroscience to understand phenomena like synaptic plasticity, potassium channel regulation, and how blood flow affects neuronal activity. This research is largely theoretical and simulation-based, often produced in collaboration with experimental neuroscientists.
Publication output has been fairly steady at 1-4 papers per year over the last decade, with a slight dip around 2023-2024 followed by renewed activity in 2025-2026.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- A developmental switch to facilitation shapes synaptic plasticity at neuron-OPC synapses in white matter
bioRxiv (Cold Spring Harbor Laboratory) · 2026
- Contributors
Elsevier eBooks · 2026
- Modeling the effects of superoxide production on the cerebral blood flow
Journal of Theoretical Biology · 2025
- Modeling the response of homogeneous and heterogeneous cerebral capillary networks to local changes in vessel diameters
Journal of Theoretical Biology · 2023
- Ultrastructural view of astrocyte arborization, astrocyte-astrocyte and astrocyte-synapse contacts, intracellular vesicle-like structures, and mitochondrial network
Progress in Neurobiology · 2022
- Modeling the effect of cerebral capillary blood flow on neuronal firing
Journal of Theoretical Biology · 2022
- Regulation of Rostral Nucleus of the Solitary Tract Responses to Afferent Input by A-type K+ Current
Neuroscience · 2022
- Subthalamopallidal Loop and Oscillations
Encyclopedia of Computational Neuroscience · 2022
- On the electrical passivity of astrocyte potassium conductance
Journal of Neurophysiology · 2021
- Mathematical modeling of cerebral capillary blood flow heterogeneity and its effect on brain tissue oxygen levels
Journal of Theoretical Biology · 2021
- GABA and I <sub>A</sub> Independently Regulate rNST Responses to Afferent Input
bioRxiv (Cold Spring Harbor Laboratory) · 2021
- Kv4 channel expression and kinetics in GABAergic and non-GABAergic rNST neurons
Journal of Neurophysiology · 2020
- Ultrastructural view of astrocyte-astrocyte and astrocyte-synapse contacts within the hippocampus
bioRxiv (Cold Spring Harbor Laboratory) · 2020
- Using graph theory to compute Laplace operators arising in a model for blood flow in capillary network
arXiv (Cornell University) · 2020
- Excitation and Inhibition in Oscillatory Neural Networks
2020
- Journal of Theoretical Biology×4
- bioRxiv (Cold Spring Harbor Laboratory)×4
- Journal of Neurophysiology×3
- PLoS Computational Biology×2
- Progress in Neurobiology×1
- Alexey Kuznetsov
Neuroscience · Indiana University
- William R. Holmes
Neuroscience · Indiana University
- Abolfazl Alipour
Neuroscience · Indiana University
- Leonid L. Rubchinsky
Neuroscience · Indiana University
- Arani Roy
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 19, 2026.
Claim or correct this profile