Dr Marcus Kaiser
  • Male
  • Newcastle-upon-Tyne
  • United Kingdom
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Dr Marcus Kaiser's Colleagues

  • Roberto C Sotero
  • Alexander Khobotov
  • Haleh Farahbod
  • Barry Bentley
  • Ed Bullmore
  • Thetis Sammons
  • Craig Breuwet
  • Cornelis [Kees] Jan Stam
  • Dietmar Plenz
  • Jennifer Simonotto
  • Peter Andras
  • Claus C. Hilgetag
  • Luciano da F. Costa
  • Richard Tomsett
  • Stephen Coombes

Dr Marcus Kaiser's Groups

 

Dr Marcus Kaiser's Page

Latest Activity

Concepción Padilla favorited Dr Marcus Kaiser's group Structure and Dynamics of Brain Connectivity Networks
Jan 7
Dawn Rivard joined Dr Marcus Kaiser's group
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Structure and Dynamics of Brain Connectivity Networks

This group discusses methods for generating and analyzing brain connectivity data (the "connectome") and how to simulate development and dynamics on anatomicially realistic neural networks. It can also be used to announce jobs, events, and CFP's.
Jul 10, 2013
Dawn Rivard favorited Dr Marcus Kaiser's group Structure and Dynamics of Brain Connectivity Networks
Jul 4, 2013
Kazi Ahsan Jamil favorited Dr Marcus Kaiser's group Structure and Dynamics of Brain Connectivity Networks
May 4, 2013
Jennifer L joined Dr Marcus Kaiser's group
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Structure and Dynamics of Brain Connectivity Networks

This group discusses methods for generating and analyzing brain connectivity data (the "connectome") and how to simulate development and dynamics on anatomicially realistic neural networks. It can also be used to announce jobs, events, and CFP's.
Apr 19, 2013
Ana González Ledesma joined Dr Marcus Kaiser's group
Thumbnail

Structure and Dynamics of Brain Connectivity Networks

This group discusses methods for generating and analyzing brain connectivity data (the "connectome") and how to simulate development and dynamics on anatomicially realistic neural networks. It can also be used to announce jobs, events, and CFP's.
Feb 12, 2013
Shweta Soni joined Dr Marcus Kaiser's group
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Structure and Dynamics of Brain Connectivity Networks

This group discusses methods for generating and analyzing brain connectivity data (the "connectome") and how to simulate development and dynamics on anatomicially realistic neural networks. It can also be used to announce jobs, events, and CFP's.
Jan 15, 2013
maryline couette favorited Dr Marcus Kaiser's group Structure and Dynamics of Brain Connectivity Networks
Nov 26, 2012
Ilknur icke joined Dr Marcus Kaiser's group
Thumbnail

Structure and Dynamics of Brain Connectivity Networks

This group discusses methods for generating and analyzing brain connectivity data (the "connectome") and how to simulate development and dynamics on anatomicially realistic neural networks. It can also be used to announce jobs, events, and CFP's.
Nov 21, 2012
Onder Gurcan joined Dr Marcus Kaiser's group
Thumbnail

Structure and Dynamics of Brain Connectivity Networks

This group discusses methods for generating and analyzing brain connectivity data (the "connectome") and how to simulate development and dynamics on anatomicially realistic neural networks. It can also be used to announce jobs, events, and CFP's.
Nov 5, 2012
Ernesto Pereda De Pablo joined Dr Marcus Kaiser's group
Thumbnail

Structure and Dynamics of Brain Connectivity Networks

This group discusses methods for generating and analyzing brain connectivity data (the "connectome") and how to simulate development and dynamics on anatomicially realistic neural networks. It can also be used to announce jobs, events, and CFP's.
Sep 7, 2012
Domokos Meszéna joined Dr Marcus Kaiser's group
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Structure and Dynamics of Brain Connectivity Networks

This group discusses methods for generating and analyzing brain connectivity data (the "connectome") and how to simulate development and dynamics on anatomicially realistic neural networks. It can also be used to announce jobs, events, and CFP's.
Aug 20, 2012
Alessandro Torcini commented on Dr Marcus Kaiser's group Structure and Dynamics of Brain Connectivity Networks
"Two fully funded PhD fellowships in Computational Neuroscience 1. Emergence of collective dynamics in scale-free neuronal networks (ESR14) 2. Measures of spike train synchrony    (ESR15) within the Marie Curie Initial Training…"
Jul 16, 2012
Alessandro Torcini joined Dr Marcus Kaiser's group
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Structure and Dynamics of Brain Connectivity Networks

This group discusses methods for generating and analyzing brain connectivity data (the "connectome") and how to simulate development and dynamics on anatomicially realistic neural networks. It can also be used to announce jobs, events, and CFP's.
Jul 16, 2012
Luka Tomšič Ahčin joined Dr Marcus Kaiser's group
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Structure and Dynamics of Brain Connectivity Networks

This group discusses methods for generating and analyzing brain connectivity data (the "connectome") and how to simulate development and dynamics on anatomicially realistic neural networks. It can also be used to announce jobs, events, and CFP's.
May 21, 2012
M. Page-Lieberman joined Dr Marcus Kaiser's group
Thumbnail

Structure and Dynamics of Brain Connectivity Networks

This group discusses methods for generating and analyzing brain connectivity data (the "connectome") and how to simulate development and dynamics on anatomicially realistic neural networks. It can also be used to announce jobs, events, and CFP's.
Mar 29, 2012

Profile Information

Main areas of research:
Neuroinformatics
Computational Neuroscience
Network Science

Our lab works on the simulation of the dynamics and development of neural networks using Neuroinformatics and network analysis tools. We aim to understand the link between structure and dynamics (e.g. for epilepsy or other network diseases) and to find structural correlates of robustness and functional compensation.
Interests/keywords:
Brain Connectivity (Connectome) analysis
Simulating neural dynamics
Understanding neural network development
Current affiliation/employer:
Newcastle University
Personal or laboratory homepage:
http://www.biological-networks.org
Publications:
Selected publications (see website for a full list):

Varier S, Kaiser M (2011). Neural development features: Spatio-temporal development of the C. elegans neuronal network. PLoS Computational Biology 7:e1001044

Roopun AK, Simonotto JD, Pierce ML, Jenkins A, Schofield IS, Whittaker RG, Kaiser M, Whittington MA, Traub RD, Cunningham MO (2010). A nonsynaptic mechanism underlying interictal discharges in human epileptic neocortex. Proc. Natl. Acad. Sci. USA 107:338-343

Kaiser M, Hilgetag CC, van Ooyen A (2009). Random outgrowth and spatial competition generate realistic connection length distributions and filling fractions. Cerebral Cortex

Roopun A, Kramer M, Carracedo L, Kaiser M, Davies C, Traub R, Kopell N, Whittington M (2008). Temporal interactions between cortical rhythms. Frontiers in Neuroscience 2,2:145-154

Kaiser M, Martin R, Andras P, Young MP (2007). Simulation of robustness against lesions of cortical networks. European Journal of Neuroscience 25:3185-3192

Kaiser M, Hilgetag CC (2006). Nonoptimal Component Placement, but Short Processing Paths, due to Long-Distance Projections in Neural Systems. PLoS Computational Biology 2:e95

Sporns O, Chialvo DR, Kaiser M, Hilgetag CC (2004). Organization, Development and Function of Complex Brain Networks. Trends in Cognitive Sciences 8:418-425

Kaiser M, Lappe M (2004) Perisaccadic mislocalization orthogonal to saccade direction. Neuron 41:293-300


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