معرفی
Ludovico Minati is a multidisciplinary researcher with appointments as a Specially-Appointed Associate Professor at Tokyo Institute of Technology (Japan) and Visiting Researcher at the University of Trento's Center for Mind/Brain Sciences (CIMeC). He holds concurrent positions as Visiting Professor at the Institute of Nuclear Physics – Polish Academy of Science and serves as a contract lecturer at the Free University of Bolzano.
Education:
- PhD in Neuroscience, Brighton & Sussex Medical School (2012)
- Dr. Hab. in Physics, Institute of Nuclear Physics – Polish Academy of Science (2017)
- MSc in Applied Cognitive Neuroscience, University of Westminster (2008)
- MSc in Medical Physics, The Open University (2009)
- MSc in Science, The Open University (2006)
- BSc in Physical Science, The Open University (2009)
- BSc in Information Technology, The Open University (2004)
Research Focus:
Minati investigates emergent synchronization phenomena in nonlinear electronic and neural systems, developing bio-inspired electronic circuits to model brain dynamics. His work bridges experimental physics, neural network theory, and robotics, emphasizing chaotic oscillators, brain connectivity analogs, and hardware implementations of neural-like dynamics across multiple scales.
Publication Trends:
Recent articles (2015-2019) demonstrate consistent focus on nonlinear synchronization phenomena, experimental chaos in electronic circuits, and neural-electronic analogies. Research evolves from fundamental oscillator networks toward applications in robotics control systems and multi-scale brain modeling, with increasing complexity in hardware implementations.
Honors & Recognition:
- Chartered Engineer (CEng), UK Engineering Council
- Chartered Physicist (CPhys), UK Institute of Physics
- Chartered Scientist (CSci), UK Science Council
- IEEE Senior Member
Editorial Leadership:
Holds editorial positions for Chaos Solitons & Fractals, IEEE Access, Frontiers in Physiology, Entropy, and Complexity, contributing to special issues on nonlinear systems and neural engineering.



