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Vassilis Cutsuridis
Computational Neuroscience
Mathematical Modeling Of Neural Circuits
Neural Circuit Reverse-Engineering
Brain Function Modeling
Biologically Inspired Artificial Systems
About
Vassilis Cutsuridis is a Professor in Computer Science and Co-Director of the Centre for Robotics and Neural Systems (CRNS) at the University of Plymouth. His academic work is situated at the intersection of computer science and biology, where he specializes in Computational Neuroscience to reverse-engineer the neural circuits of the brain. By developing mathematical and computational models of brain functions—such as memory, vision, and movement—he aims to translate biological intelligence into more robust artificial systems.
Research Performance Summary
2003-2025
Active Research Span
First Recorded Paper
Neural network modeling of eye movement behavior in the antisaccade task: validation by comparison with data from 2006 normal individuals
Year:
2003
Citations:
8
Venue:
Society for Neuroscience Conference
Latest Recorded Paper
Generative Adversarial Network for Image Reconstruction from Human Brain Activity
Year:
2025
Citations:
0
Venue:
Proceedings of the 18th International Joint Conference on Biomedical
Last 10 Years Publication Activity
This timeline shows the professor's yearly publication activity.
Publication Venues and Collaboration
Journal, Conference, and Book Publication Breakdown
Top Coauthors
Cutsuridis
Graham
Cobb
Research Impact by Period
Papers
3
Citations
1
Avg. Citations / Paper
0.3
H-Index
1
Papers
18
Citations
288
Avg. Citations / Paper
16
H-Index
7
Papers
23
Citations
261
Avg. Citations / Paper
11.3
H-Index
9
Papers
37
Citations
961
Avg. Citations / Paper
26
H-Index
14
Papers
30
Citations
491
Avg. Citations / Paper
16.4
H-Index
11
Papers
2
Citations
8
Avg. Citations / Paper
4
H-Index
1
Contact and Professional Links
Detected Research Keywords
Model Decision Making
Spike Timing Dependent
Timing Dependent Plasticity
Decision Making Antisaccade
Perception Action Cycle
Making Antisaccade Task
Antisaccade Performance Healthy
Neural Accumulator Model
Neural Network Model
Parkinson Disease Bradykinesia