51cg

Professor Ran Levi

In this section
Professor Ran Levi
Professor Ran Levi
Professor Ran Levi

BSc (Hebrew University), PhD (University of Rochester)

Chair in Mathematical Sciences

51cg
Email Address
r.levi@abdn.ac.uk
Telephone Number
+44 (0)1224 272753
Office Address

Fraser Noble 138

School/Department
School of Natural and Computing Sciences




Qualifications

  • BSc Mathematics 
    1988 - Hebrew University, Jerusalem, Israel 
  • PhD Mathematics 
    1993 - University of Rochester 

Internal Memberships

Mathematics Post Graduate Coordinator

Research

Research Overview

Algebraic Topology, Homotopy Theory of classifying spaces of finite groups, Applications of topology and geometry to science and particularly neuroscience, Classical Homotopy Theory, Representation Theory of finite groups and interactions with homotopy theory

Current Research

Combinatorial Topology. Combinatorial constructions have played a major role in algebraic since the beginning of the subject. With the growing interest in real world applications of algebraic topology, there is an ever growing interest in the interaction between combinatorics and topology. I am spefically interested in constructions such as polyhedral products, configuration spaces, complexes of injective words and stochastic topology.

Neuoro-topology: The geometry and topology of neural systems. Mathematics has played a central role in neuroscience since its inception. More recently, particularly with the  emergence of extremely powerful computational models of the brain (for instance the EPFL's Blue Brain Project),  new mathematical approaches to neuroscience are emerging, which are analogous to the highly productive feedback loop between topology and physics. The methods of algebraic and geometric topology are perfectly suited for modelling, analysing, and predicting structures that arise in neuroscience, which in turn inspire new directions for research within topology. Indeed, topology is already both providing significant insight in current research and contributing to shaping future research in neuroscience.  Moreover it is probable that major questions of neuroscience could inspire the creation of new and exciting topological concepts that could then provide powerful new tools for neuroscience. 

In a collaboration with the Blue Brain Project, we address the following challenges:

  • Describe possible approaches for applying topology to neuroscience, both conceptually and computationally. 
  • Explore new ways of applying topological and computational techniques to the identification, analysis and development of modelled neural structures.
  • Build a theoretical framework for neuroscience that is based on the topology, geometry and category theory that naturally emerge when studying neural systems.
  • Explain mechanisms by which major questions of neuroscience could inspire the creation of new and exciting topological concepts that, in turn, could provide powerful tools for neuroscience.

Aberdeen Neuro-Topology Research Group

p-Local Groups. These are algebraic objects modelled on the homotopy theory associated to p-completed classifying spaces of finite groups. They enable one to relate the p-local structure of a finite group to related aspects of the homotopy theory of the resulting p-completed classifying space. The concept also allows for the construction of exotic homotopy types, i.e., spaces which behave from a homotopy theoretic point of view like a p-completed classifying space of a finite group, but in fact are not such spaces. The theory extends to the concept of p-local compact groups which is modelled on the p-local homotopy theory of classifying spaces of compact Lie groups and p-compact groups.

 

Collaborations

 

  • p-Local Groups and the homotopy theory of classifying spaces: Carles Broto (Barcelona), Bob Oliver (Paris 13), Natalia Castellana (Barcelona), Jesper Grodal (Kopenhagen) Dietrich Notbohm (Leicester), Assaf Libman (Aberdeen), Alex Gonzalez (Barcelona), Emannuel Farjoun (Hebrew University, Jerusalem)
  • Neurotopology: Kathryn Hess (EPFL), Henry Markram (Blue Brain Project, EPFL), Dejan Govc (RF, Aberdeen), Janis Lazovskis (RF, Aberdeen), Henri Riihimaki (RF, Aberdeen), Jason Smith (RF, Aberdeen) 
  • Classical Homotopy Theory: Fred Cohen (Rochester), Kathryn Hess (EPFL)

Funding and Grants

EPSRC, Topological Analysis of Neural Systems 

Ecole Polytechnique Federale de Lausanne (Collaboration agreement )

Publications

Page 1 of 5 Results 1 to 10 of 44

  • Representation cohomology of a small category

    Klemetti, M., Levi, R., Riihimaki, H., Solch, D.
    Working Papers: Preprint Papers
  • Realizability of fusion systems by discrete groups

    Broto, C., Levi, R., Oliver, B.
    Transactions of the American Mathematical Society, vol. 379, no. 8, pp. 5261-5317
    Contributions to Journals: Articles
  • Discrimination of haematoma and peri-haematoma regions of sub-acute intracerebral haemorrhage using Field-Cycling Imaging at field strengths below 0.2 T

    Senn, N., Mallikourti, V., Ross, J., Levi, R., Oren, N., Broche, L., Waiter, G., Macleod, M.
    UK Stroke Forum, pp. 40
    Contributions to Journals: Abstracts
  • Directed Semi-Simplicial Learning with Applications to Brain Activity Decoding

    Lecha, M., Cavallo, A., Dominici, F., Levi, R., Bue, A. D., Isufi, E., Morerio, P., Battiloro, C.
    Working Papers: Preprint Papers
  • Realizability of fusion systems by discrete groups: II

    Broto, C., Levi, R., Oliver, B.
    Working Papers: Preprint Papers
  • Heterogeneous and higher-order cortical connectivity undergirds efficient, robust, and reliable neural codes

    Egas Santander, D., Pokorny, C., Ecker, A., Lazovskis, J., Santoro, M., Smith, J. P., Hess, K., Levi, R., Reimann, M. W.
    iScience, vol. 28, no. 1, 111585
    Contributions to Journals: Articles
  • Modeling and Simulation of Neocortical Micro- and Mesocircuitry. Part I: Anatomy

    Reimann, M. W., Bolaños-Puchet, S., Courcol, J., Egas Santander, D., Arnaudon, A., Coste, B., Delalondre, F., Delemontex, T., Devresse, A., Dictus, H., Dietz, A., Ecker, A., Favreau, C., Ficarelli, G., Gevaert, M., Herttuainen, J., Isbister, J. B., Kanari, L., Keller, D., King, J., Kumbhar, P., Lapere, S., Lazovskis, J., Lu, H., Ninin, N., Pereira, F., Planas, J., Pokorny, C., Riquelme, J. L., Romani, A., Shi, Y., Smith, J., Sood, V., Srivastava, M., Van Geit, W., Vanherpe, L., Wolf, M., Levi, R., Hess, K., Schürmann, F., Muller, E. B., Markram, H., Ramaswamy, S.
    eLife, vol. 13, 99688
    Contributions to Journals: Articles
  • Realizability of fusion systems by discrete groups

    Broto, C., Levi, R., Oliver, B.
    Working Papers: Preprint Papers
  • Detection of haematoma and peri-haematomal regions of intracerebral haemorrhage using lowfield field-cycling imaging – preliminary study results

    Macleod, M. J., Senn, N., Malikourti, V., Ross, J., Levi, R., Oren, N., Guttierez, G. G., Waiter, G., Broche, L.
    8th World Intracranial Hemorrhage Conference (WICH 2023), OP-10
    Contributions to Journals: Abstracts
  • Polyhedral products over finite posets

    Kishimoto, D., Levi, R.
    Kyoto Journal of Mathematics, vol. 62, no. 3, pp. 615-654
    Contributions to Journals: Articles
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Chapters in Books, Reports and Conference Proceedings

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